Showing posts with label Sorafenib. Show all posts
Showing posts with label Sorafenib. Show all posts

December 3, 2013

Phase I study investigating everolimus combined with sorafenib in patients with advanced hepatocellular carcinoma

J Hepatol. 2013 Dec;59(6):1271-7. doi: 10.1016/j.jhep.2013.07.029. Epub 2013 Aug 6.

Finn RS, Poon RT, Yau T, Klümpen HJ, Chen LT, Kang YK, Kim TY, Gomez-Martin C, Rodriguez-Lope C, Kunz T, Paquet T, Brandt U, Sellami D, Bruix J.

University of California Los Angeles, Los Angeles, CA, United States. Electronic address: rfinn@mednet.ucla.edu.

Abstract

BACKGROUND & AIMS: Sorafenib is the only therapy shown to improve overall survival in advanced hepatocellular carcinoma (HCC). Combination therapy targeting multiple signaling pathways may improve outcomes. This phase I study was designed to determine the maximum tolerated dose (MTD) of everolimus given with sorafenib 400mg twice daily in patients with advanced HCC of Child-Pugh class A liver function who were naive to systemic therapy.

METHODS: Everolimus was initiated at 2.5mg once daily and increased per a Bayesian sequential dose-escalation scheme based on the dose-limiting toxicities experienced within the first 28days of treatment. Adverse events were assessed continuously. Efficacy was evaluated using the best overall response rate per RECIST.

RESULTS: Thirty patients were enrolled; 25 were evaluable for MTD determination. One out of 12 patients treated with everolimus 2.5mg once daily and 6 out of 13 patients treated with everolimus 5.0mg once daily experienced a dose-limiting toxicity, most commonly thrombocytopenia (n=5). All patients experienced ⩾1 adverse event, most commonly diarrhea (66.7%), hand-foot skin reaction (66.7%), and thrombocytopenia (50.0%). Best overall response was stable disease (62.5% and 42.9% in the 2.5-mg and 5.0-mg cohorts, respectively). Median time to progression and overall survival in the 2.5-mg cohort were 4.5months and 7.4months, respectively, and 1.8months and 11.7months, respectively, in the 5.0-mg cohort.

CONCLUSIONS: In patients with advanced HCC, the everolimus MTD in combination with standard-dose sorafenib was 2.5mg once daily. The inability to achieve a biologically effective everolimus concentration at the MTD precluded phase II study of this combination.

Copyright © 2013 European Association for the Study of the Liver. Published by Elsevier B.V. All rights reserved.

KEYWORDS: AE, AST, BCLC, BID, Barcelona Clinic Liver Cancer, C(max), C(min), CI, DCR, DLT, Dose-finding, ECOG, Eastern Cooperative Oncology Group, Everolimus, HBV, HCC, Hepatocellular carcinoma, MTD, Mammalian target of rapamycin, OS, PDGFR, QD, RCC, RDI, RECIST, Response Evaluation Criteria in Solid Tumors, SD, SHAR, Sorafenib, Sorafenib HCC Assessment Randomized Protocol, TTP, ULN, VEGFR, adverse event, aspartate aminotransferase, confidence interval, disease control rate, dose-limiting toxicity, hepatitis B virus, hepatocellular carcinoma, mTOR, mammalian target of rapamycin, maximum blood concentration, maximum tolerated dose, minimum blood concentration, once daily, overall survival, platelet-derived growth factor receptor, relative dose intensity, renal cell carcinoma, standard deviation, time to progression, twice daily, upper limit of normal, vascular endothelial growth factor receptor

PMID: 23928403 [PubMed - in process]

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November 10, 2013

New drug combo causes cancer cells to 'eat themselves'

PTI Nov 6, 2013, 03.59PM IST

WASHINGTON: A new drug combination therapy could effectively kill colon, liver, lung, kidney, breast and brain cancer cells without affecting the healthy cells, scientists say.

The results from a recent preclinical study at Virginia Commonwealth University Massey Cancer Center lays the foundation to plan a future phase 1 clinical trial to test the safety of the therapy in a small group of patients.

"It is still too premature to estimate when a clinical trial will open to further test this drug combination therapy, but we are now in the planning phase and encouraged by the results of these laboratory experiments," said Andrew Poklepovic, assistant professor in the Division of Hematology, Oncology and Palliative Care at VCU School of Medicine.

The study led by Paul Dent demonstrated that the drugs sorafenib and regorafenib synergise with a class of drugs known as PI3K/AKT inhibitors to kill a variety of cancers.

Sorafenib and regorafenib work by blocking the production of enzymes called kinases, which are vital to the growth and survival of cancer cells.

Sorafenib is currently approved by the FDA to treat kidney and liver cancers, and regorafenib is currently approved for the treatment of colorectal cancer.

However, sorafenib and regorafenib do not directly affect PI3K and AKT kinases, which are also very active in promoting cancer cell survival.

The addition of a PI3K/AKT inhibitor to the combination of sorafenib and regorafenib dramatically increased cell death and was even effective against cells with certain mutations that make one or the other drug less effective.

"We know that there are certain cellular processes that are frequently dysregulated in cancers and important to cell proliferation and survival, but if you shut down one, then cells can often compensate by relying on another," said Dent.

"We are blocking several of these survival pathways, and the cancer cells are literally digesting themselves in an effort to stay alive," Dent said.

Results showed that the combination therapy killed the cells by physically interacting with molecules to block the survival pathways and induce a toxic effect known as autophagy.

Autophagy is a protective process where cells metabolise themselves when starved of the resources needed to survive.

The study was published in the journal Molecular Pharmacology.

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September 18, 2013

Dermatologic side effects from sorafenib linked to better HCC survival

Provided by Healio

September 18, 2013

Patients with hepatocellular carcinoma who experienced dermatologic side effects while treated with sorafenib had improved survival in a study presented at the International Liver Cancer Association Annual Conference in Washington, DC.

Researchers evaluated data from 147 patients with hepatocellular carcinoma treated with sorafenib for a median of 6.7 months between October 2007 and July 2011. Clinical and laboratory evaluations were performed monthly, with tumor staging after 4 weeks followed by every 8 weeks, for a median follow-up of 11.6 months. Ninety-seven percent of participants had cirrhosis, and 46% were HCV-positive.

Overall, the median time to progression (TTP) was 5.1 months for the cohort; median overall survival was 12.7 months. Dermatologic adverse events that occurred within 60 days of treatment (AED60) were observed in 79 patients, 37 of whom required a sorafenib dose modification.

Although dose modifications were significantly more common among AED60 patients (three modifications vs. two; P=.006), median time to progression (8.1 months vs. 3.9 months; P=.02) and overall survival (18.16 months vs. 10.1 months; P=.009) were better among these participants compared with those who did not experience AED60. No other evaluated categories of early adverse events were associated with treatment outcomes.

Multivariate analysis indicated a significant association between improved survival and any grade of AED60 (P=.039). When cases of early death were excluded from analysis, this association was upheld for incidence of AED60 that required sorafenib dose modification (above grade 1in severity) (P=.03).

“Development of dermatologic adverse events within 60 days of sorafenib initiation is associated with better survival,” the researchers concluded. “Therefore, this should not … discourage treatment maintenance. Likewise, second-line clinical trials should be designed and/or evaluated considering this information to avoid significant bias.”

Disclosure: Researchers Maria Reig, MD, and Alejandro Forner, MD, reported serving as consultants for Bayer Pharmaceuticals.

For more information:

Reig M. O-033: Dermatologic Adverse Events Within the First 60 Days of Sorafenib Treatment Are Associated with Better Overall Survival in Patients with Hepatocellular Carcinoma. Presented at: The International Liver Cancer Association Annual Conference 2013; Sept. 13-15, Washington, DC.

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June 10, 2013

Sorafenib: from literature to clinical practice

Ann Oncol (2013) 24 (suppl 2): ii30-ii37. doi: 10.1093/annonc/mdt055 This article appears in: Current issues in the management of hepatocellular carcinoma

V. Di Marco1,*, F. De Vita2, J. Koskinas3, D. Semela4, P. Toniutto5 and C. Verslype6

+ Author Affiliations

  1. 1Sezione di Gastroenterologia & Epatologia, Dipartimento Biomedico di Medicina Interna e Specialistica (Di.Bi.M.I.S.), University of Palermo, Palermo
  2. 2Oncologia Medica, Seconda Università di Napoli, Naples, Italy
  3. 3Department of Medicine, Medical School of Athens, Hippokration General Hospital, Athens, Greece
  4. 4Division of Gastroenterology and Hepatology, Cantonal Hospital St. Gallen, St. Gallen, Switzerland
  5. 5Medical Liver Transplant Unit, Department of Medical Sciences Clinical and Experimental, University of Udine, Udine, Italy
  6. 6Hepatology, University Hospital Gasthuisberg, Leuven, Belgium
  7. *Correspondence to: Prof. Vito Di Marco, Sezione di Gastroenterologia & Epatologia, Dipartimento Biomedico di Medicina Interna e Specialistica (Di.Bi.M.I.S.), University of Palermo, Piazza delle Cliniche 2, 90127 Palermo, Italy. Tel: +39-091-6552106; Fax: +39-091-6552156; E-mail: vito.dimarco@unipa.it

Abstract

Sorafenib is considered the standard systemic therapy for hepatocellular carcinoma (HCC), in patients with well-preserved liver function (Child-Pugh A class) and advanced-stage HCC (BCLC-C) or in patients with HCC progressing after locoregional therapies, with a high grade of recommendation. The approval of sorafenib for this indication was grounded on the efficacy and the safety results reported by two international randomized, controlled trials, the SHARP and the Asia-Pacific studies. In addition, the efficacy and the safety of sorafenib in clinical practice are addressed by several field-practice experiences, including the multinational GIDEON study and the SOFIA study. Finally, further research on sorafenib is ongoing to optimize the use of this molecule. This review aims to provide an overview of the most relevant clinical data on the efficacy and the safety of sorafenib in patients with HCC.

Key words adverse events, clinical practice, observational studies, randomized clinical trials, sorafenib
introduction

Hepatocellular carcinoma (HCC) represents a global health problem and the incidence of this cancer in patients with cirrhosis is still increasing in several countries. The prognosis and the treatment options for HCC are generally related to the tumor stage at presentation. Surgical resection, transplantation and percutaneous ablation offer a high probability of complete response in patients with early HCC. In asymptomatic patients with multifocal HCC without vascular invasion or extrahepatic spread, chemoembolization can provide survival benefit.

Sorafenib, an oral multikinase inhibitor with activity against Raf-1, B-Raf, VEGFR2, PDGFR and c-Kit receptors, has a potent antiangiogenic and proapoptotic activity and therefore presents a marked antitumoral effect [1].

The improvement of survival in patients treated with sorafenib is supported by the highest level of evidence, and according to the recent guidelines by the European Association for the Study of Liver (EASL) and by the European Society for Molecular Oncology (ESMO)/European Society of Digestive Oncology (ESDO), sorafenib is considered the standard systemic therapy for HCC, in patients with well-preserved liver function (Child-Pugh A class) and advanced-stage HCC (BCLC-C) or in patients with HCC progressing after locoregional therapies, with a high grade of recommendation (Figure 1) [2,3].

F1_medium

Figure 1. Representation of the EASL recommendations for treatment according to levels of evidence. Reproduced with permission from European Association for the Study of the Liver, European Organisation for Research and Treatment of Cancer [2].

Sorafenib was approved for the treatment of patients with advanced HCC on the basis of the efficacy and the safety results reported by two international randomized, controlled trials (RCTs), the SHARP (Sorafenib HCC Assessment Randomized Protocol) and the Asia-Pacific trials [4,5]. In addition, the efficacy and the safety of sorafenib in clinical practice are addressed by several field-practice experiences, including the multinational GIDEON study and the SOFIA study [6,7]. Finally, further research on sorafenib is ongoing to optimize the use of this molecule, and particularly, the efficacy of sorafenib in patients with Child-Pugh B cirrhosis, the possibility of modifying the dosing regimen and the potential existence of laboratory and/or genetic biomarkers of response are currently being explored.

This review aims to provide an overview of the most relevant clinical data on the efficacy and the safety of sorafenib in patients with HCC.

randomized, controlled trials

efficacy

The SHARP trial, conducted in Western countries, was a multicenter, phase III, double-blind, placebo-controlled study, in which 602 HCC patients (95% with Child-Pugh A cirrhosis and 82% with BCLC-C) who had not received any previous systemic treatment were assigned to receive sorafenib 400 mg bis in die (bid) or placebo [4]. The primary outcomes of the trial were overall survival (OS) of patients and the time to symptomatic progression, whereas the secondary outcomes included the time to radiologic progression (TTP) and safety. The study was stopped at the second planned interim analysis, due to a significantly shorter survival in the placebo arm. In detail, the median OS was 10.7 months in the sorafenib group versus 7.9 months in the placebo group [hazard ratio (HR): 0.69; 95% CI: 0.55–0.87; P < 0.001]. Although there was no difference in the median time to symptomatic progression, a significant advantage for sorafenib over placebo was reported for TTP (5.5 versus 2.8 months; P < 0.001).

The second trial with a similar design was conducted in the Asia-Pacific region, where chronic infection by hepatitis B virus (HBV) represents the more common etiological factor of chronic liver disease [5]. In total, 226 patients with HCC were randomized to receive sorafenib 400 mg bid or placebo with a 2:1 ratio (150 and 76 patients, respectively). The wide majority of patients were classified as Child-Pugh A (97%) and BCLC-C (95%). The efficacy of sorafenib was overall similar to that reported in the SHARP trial. The median OS was 6.5 months in the sorafenib group, compared with 4.2 months in the placebo group, with an HR similar to that observed in the SHARP trial (HR: 0.68; 95% CI: 0.50–0.93; P = 0.014), whereas the median TTP was 2.8 months in the sorafenib group compared with 1.4 months in the placebo group (P = 0.0005).

It must be observed that the two trials have enrolled different populations: patients included in the SHARP trial were mostly of Caucasian ethnicity and had a high prevalence of hepatitis C virus infection; conversely, patients observed in the Asia-Pacific trial were more largely infected by HBV and presented a more advanced stage of HCC and a worse liver function. These differences can explain the difference in OS observed between the two trials; however, the HR for survival, which can be regarded to as a measure of sorafenib efficacy, was similar (0.69 and 0.68, respectively).

safety

In both the SHARP and the Asia-Pacific trials, sorafenib was generally well tolerated, but, like other drugs of the same class, it caused a range of adverse events (AEs). In the SHARP trial, the incidence of serious AEs was 52 and 54% in treated and placebo groups, respectively [4]. However, grade 3 drug-related AEs were more common in the sorafenib group and included diarrhea (8%), hand–foot skin reaction (HFSR) (8%), hypertension (2%) and abdominal pain (2%). The rate of patients who discontinued treatment was similar in the two groups (38 and 37%, respectively), but treatment was permanently discontinued due to toxicity in 11% of sorafenib-treated patients versus 5% of placebo patients. In the Asia-Pacific trial, the most frequent grade 3/4 drug-related AEs in the sorafenib group were HFSR (10.7%), diarrhea (6.0%) and fatigue (3.4%) [5]. The most common AEs resulting in dose reductions were HFSR (11.4%) and diarrhea (7.4%), but these AEs were overall manageable and rarely led to discontinuation of treatment.

clinical practice studies

RCTs provide the highest level of evidence for the rigorous design, the application of strict selection criteria for the inclusion of patients, and the precise evaluation of the efficacy and the safety in a well-defined population. However, patients enrolled in RCTs often do not closely represent the clinical practice, due to the necessary absence of potential confounding factors like concomitant diseases or other treatments [7,8]. Observational studies can complement findings from RCTs, as they assess treatment effectiveness in patients encountered in day-to-day clinical practice [8]. Therefore, results from well-designed observational studies can expand upon the outcomes of RCTs, thanks to the observation of the large cohort of patients who present co-morbidities and receive concomitant medications. Furthermore, observational studies can identify clinically important differences among therapeutic options and provide data on drug efficacy and safety over a longer-term follow-up than RCTs.

At present, the results of two real clinical experiences conducted on sorafenib are available: the GIDEON study (Global Investigation of therapeutic DEcisions in hepatocellular carcinoma and Of its treatment with sorafeNib), conducted on a very large population of HCC patients in more than 40 countries [6], and the SOFIA (SOraFenib Italian Assessment) study, conducted in Italy [7]. These two studies reported the clinical outcomes of patients on treatments and, particularly, addressed the management of sorafenib-related AEs in daily clinical practice.

the GIDEON study

The GIDEON study, still ongoing, is a global phase IV, international, prospective, open-label, multicentre, non-interventional post-marketing study of patients with advanced-stage HCC receiving sorafenib under real-life conditions [6]. A very large cohort of 3275 patients have been recruited from Europe, Latin America, the USA and the Asia-Pacific regions. The main goal of the study was to evaluate the safety and efficacy of sorafenib in different patient subgroups, especially in subjects with Child-Pugh B cirrhosis, where data were limited. Additional aims of this study were to compile a large database and to analyze potential local, regional and global differences in baseline characteristics, disease etiology, treatment, practice patterns and treatment outcomes. The study completion is expected by 2013.

The second preplanned interim analysis available has been presented at the Annual Congress of the American Association for the Study of Liver Diseases (AASLD) in November 2011 [9]. The interim analysis reported the efficacy and safety data of sorafenib in clinical practice in two subgroups of patients: a group who started the treatment with the standard dose of 800 mg/day and a group who started the treatment with 400 mg/day or other doses.

In total, 1571 patients had valid data for the safety evaluation and 1612 patients for the efficacy evaluation. At baseline, 61% of patients had a Child-Pugh A and 23% a Child-Pugh B cirrhosis, 54% of patients had a BCLC-C and 19% a BCLC-B, 40% of patients had a performance status (PS) 0 and 43% a PS 1 and 55% of patients received a previous locoregional treatment. In most cases (75%), patients initiated sorafenib at the recommended dose of 800 mg/day. The remaining patients received 400 mg/day (22%) or other dosages (3%). The two groups were comparable for the Child-Pugh score, BCLC stage, PS and rate of patients who received a previous surgery or locoregional treatment.

The interim analysis showed a trend toward more evident benefits for sorafenib at the recommended dose, when compared with the lower dose of 400 mg/day. In particular, patients who initiated sorafenib at the dose of 800 mg/day tended to stop treatment later than patients who started sorafenib with a dose of 400 mg/day (12.3 versus 9.7 weeks) and present a longer OS (9.3 versus 7.1 months) and TTP (4.5 versus 3.6 months) [9].

The most commonly reported AEs in both dose groups were diarrhea, HFSR and fatigue, and these AEs were in most cases mild (grade 1/2). No significant differences in the type and the incidence of AEs between the recommended dose group and the 400 mg/day dose group were reported [9]. This analysis suggests that initiating sorafenib treatment at the full recommended dose of 800 mg/day may be associated with some advantages in terms of duration of therapy, OS and TTP versus a 400 mg/day starting dose, without any relevant worsening of the safety profile of the molecule [9].

the SOFIA study

The SOFIA study was a smaller multicenter, investigator-driven, observational, non-interventional study conducted in six referral Italian centers with the aim to assess sorafenib safety in clinical practice and to evaluate treatment efficacy in terms of OS, early radiologic response and TTP [7]. In total, 296 consecutive patients (88% Child-Pugh A) with advanced-stage HCC (75%) or intermediate-stage HCC and/or not eligible to or who failed ablative therapies (25%) were enrolled. At the initiation of therapy, sorafenib was administered at dose of 800 mg/day in all patients and treatment was down-dosed or interrupted according to the drug label. Grade 3/4 AEs, deterioration of liver function and radiologic or symptomatic progression of HCC were criteria for dose modification or interruption.

The median duration of treatment was 3.8 months, 90 patients (30%) were treated for more than 6 months and 41 patients (14%) were treated for more than 12 months.

The overall incidence of AEs was 91%, and 45% of them were of grade 3/4. Fatigue (25%), HFSR (9%), arterial hypertension (7%), weight loss (6%) and diarrhea (6%) were the most frequent severe AEs.

Treatment was down-dosed in 161 (54%) patients (in 133 because of AEs and in 28 because of liver function worsening) and was permanently discontinued in 233 (79%) patients (40% for AEs and 60% for severe liver function deterioration or HCC progression).

Regarding the effectiveness of sorafenib, the SOFIA study reported a median OS of 10.5 months, a finding consistent with the survival observed in patients treated with sorafenib [3, 6]. The OS reported in the 74 BCLC-B patients was longer than that observed in the 222 BCLC-C patients (20.6 versus 8.4 months; P < 0.0001). OS was 21.6 months in the 77 patients treated for more than 70% of the time with a half dose versus 9.6 months in the 219 patients treated for more than 70% of the time with a full dose (P = 0.0006).

The results reported by the SOFIA study, although retrieved in a smaller population respect the global GIDEON study, confirm the safety and effectiveness of sorafenib in a real-life scenario, even with a reduced dose. The effectiveness of half-dose sorafenib might have some implications for clinical practice, especially for a tailored therapy in patients who do not tolerate full-dose treatment. However, the authors of the SOFIA study pointed out the existence of two main caveats for this study, namely the post hoc nature of the analysis of the effectiveness of full- versus half-dose sorafenib and the lack of stratification before treatment of survival predictors.

management of AEs in clinical practice

Sorafenib appeared well-tolerated in both the GIDEON and the SOFIA studies [6, 7]; however, in both real-life studies, a number of AEs were reported. The underlying liver disease and, in particular, its complications can negatively affect the tolerability and the efficacy of sorafenib in HCC patients.

The most frequent sorafenib-associated AEs are dermatological lesions, cancer-related fatigue and diarrhea. Conversely, treatment-related liver AEs are overall less frequently reported. Grade 3/4 liver dysfunction has been reported in the same percentage (3%) of patients assuming sorafenib or placebo in the supplementary appendices of the SHARP trial [4] and in 1% of patients taking sorafenib in the GIDEON study [10].

dermatological lesions

Dermatological lesions, mainly represented by HFSR, are one of the most frequent AEs associated with multi-kinase inhibitors and represent a major cause of dose reductions and/or treatment interruptions. In addition, they determine relevant physical and psychological distress to patients. The early detection of symptoms is crucial and, when possible, preventive measures should be taken in patients with high risk of developing HFSR. Although not tested in clinical trials, some preventive measures are believed to reduce pain, risk of infection and patient discomfort and to avoid the dose reduction or discontinuation of sorafenib (Table 1) [11]. Once established, HFSR can be relieved by symptomatic treatment (Table 1) [11]. As shown in the SHARP study and according to clinical experience, treatment of HFSR may require sorafenib dose reduction or interruption according to the severity of the skin lesions (Table 2) (http://www.accessdata.fda.gov/drugsatfda_docs/label/2011/021923s012lbl

Table 1. Techniques identified from the literature for preventing and managing HFSR (reproduced from Edmonds et al. [11], with permission)

  • Prophylactic management
  • Advise patients to have a manicure and pedicure before and during treatment
  • Stress the importance of identifying and reporting skin reactions
  • Advise patients on the frequent prophylactic use of over-the-counter skin emollients
  • Avoid constrictive footwear and excessive friction
  • Wear thick cotton gloves/socks and shoes with padded insoles
  • Symptomatic management
  • Treatment with topical urea singly or plus tazarotene/fluorouracil results in ≥2 grade improvement in the majority of patients
  • Avoid hot water
  • Use thick, intense moisturizing products and anti-itch products (containing 1% dimethicone, 0.1% camphor). Apply creams at least five times a day and any time after hands or feet get wet
  • Dose interruptions at grade 3/4 may be necessary
  • During treatment advise patients to wear comfortable shoes, use shock absorbers for pressure points and relieve pressure on the affected parts
  • Advise patients to avoid excessive sport (e.g. avoid pressure and friction to the affected areas)
  • Advise patients to take cooling hand or foot baths
  • Advise patients to wear two pairs of cotton socks, a thick padded pair as the inner layer and a thinner pair as the outer layer and wear soft shoes and padded insoles
  • Advise patients to wear gloves at night after applying urea- and/or salicylate-containing creams
  • Use non-fragranced products and shower gels instead of soaps
  • Light/topical analgesics may be prescribed for pain relief

Table 2. Dose modifications for skin toxicity (available at http://www.accessdata.fda.gov/drugsatfda_docs/label/2011/021923s012lbl.pdf).

Skin toxicity grade Occurrence Suggested dose modification
Grade 1: Numbness, dysesthesia, paresthesia, tingling, painless swelling, erythema or discomfort of the hands or feet which does not disrupt the patient's normal activities Any occurrence Continue treatment with NEXAVAR and consider topical therapy for symptomatic relief
Grade 2: Painful erythema and swelling of the hands or feet and/or discomfort affecting the patient's normal activities First occurrence Continue treatment with NEXAVAR and consider topical therapy for symptomatic relief.
If no improvement within 7 days, see below
No improvement within 7 days or second or third occurrence Interrupt NEXAVAR treatment until toxicity resolves to grade 0–1
When resuming treatment, decrease NEXAVAR dose by one dose level (400 mg daily or 400 mg every other day)
Fourth occurrence Discontinue NEXAVAR treatment
Grade 3: Moist desquamation, ulceration, blistering or severe pain of the hands or feet or severe discomfort that causes the patient to be unable to work or perform activities of daily living First or second occurrence Interrupt NEXAVAR treatment until toxicity resolves to grade 0–1
When resuming treatment, decrease NEXAVAR dose by one dose level (400 mg daily or 400 mg every other day)
Third occurrence Discontinue NEXAVAR treatment
cancer-related fatigue

Cancer-related fatigue is a multifactorial condition that affects cancer patients before the beginning of therapy, increases during therapy and can persist thereafter. In patients with HCC, the fatigue can be related to liver cirrhosis and cancer. Moreover, treatment-related fatigue may require dose modifications or treatment interruptions. However, the management strategies for preventing or reducing the severity of targeted therapy-related fatigue described in literature were experience-based rather than evidence-based.

Some of the recommendations for managing fatigue are based on ruling out or treating hypothyroidism, anemia, depression and malnutrition. In addition to a possible benefit for treatment-related fatigue, prevention of malnutrition is particularly important in cirrhotic patients with HCC during sorafenib treatment, since reducing the risk of hypoalbuminaemia and muscle catabolism prevents the appearance of ascites and encephalopathy. Treatment-free intervals and dose reductions may be considered in case of grade 3/4 fatigue.

diarrhea

It is important to educate patients on the occurrence and presentation of diarrhea during sorafenib therapy, since an early recognition of this AE may prevent severe diarrhea and its complications.

Sorafenib-induced diarrhea is usually treated with loperamide, based on experience and analogy with chemotherapy-induced diarrhea rather than on clinical studies. In addition to general measures to improve diarrhea such as a low-fiber diet and increased liquid assumption, in cirrhotic patients, lactulose should be stopped, if taken. Dehydration and electrolyte disturbances must be rapidly corrected to avoid the appearance of ascites, renal insufficiency and encephalopathy in cirrhotic patients. For grade 2–4 diarrhea, treatment-free intervals and/or dose reductions may be necessary [4].

sorafenib in patients with Child-Pugh B cirrhosis

It is widely accepted that the natural history of HCC is markedly related to liver function, with a median survival of untreated HCC ∼2.5 times lower in patients with Child-Pugh B cirrhosis versus those with Child-Pugh A cirrhosis [12]. Moreover, liver function may alter the safety of systemic treatments, thereby diminishing the clinical benefit of treated cirrhotic patients [13].

In the SHARP and the Asia-Pacific trials, more than 95% of patients were classified as having Child-Pugh A cirrhosis [4, 5] and the potential benefits of sorafenib in Child-Pugh B patients could not be investigated in those trials. On these bases, a deeper evaluation of the clinical outcomes of Child-Pugh B patients with advanced HCC treated with sorafenib has been advocated [14,15].

Four main studies reported data on patients with Child-Pugh B cirrhosis [12, 1619].

Hollebecque et al. [13] reported the results of a prospective experience on sorafenib efficacy in 120 patients with advanced HCC and 20 of them had Child-Pugh B cirrhosis. The OS in the cohort was 11.1 months with a significantly longer median survival in Child-Pugh A patients than Child-Pugh B patients (13 versus 4.5 months, P = 0.0008). However, statistical analysis did not disclose any correlation among Child-Pugh class and TTP, frequency of AEs and discontinuation of sorafenib. The authors suggested that the shorter OS in Child-Pugh B patients could be attributed, at least in part, to poorer liver function.

Similar results were reported by Kim et al. [16] in an Asian cohort of 225 patients with HCC evaluated according to Child-Pugh score (68 with Child-Pugh B). The disease control rate was higher in patients with Child-Pugh A than Child-Pugh B cirrhosis, but did not differ among patients with Child-Pugh score B7 and those with Child-Pugh score B8 or B9. No differences in the rate of grade 3/4 AEs were reported among patients with different Child-Pugh classes. The authors concluded that patients with Child-Pugh score B7 can be included in future clinical trials, in order to collect further and robust evidence on the treatment with sorafenib in this group of patients. Similar figures on the tolerability were observed by Ozenne et al. [17] in a small cohort of 50 patients with HCC that included 17 patients with a Child-Pugh B cirrhosis.

In the second interim analysis of the GIDEON study, 368 (23%) of 1571 analyzed patients were classified in Child-Pugh B class and 35 patients (2%) in Child-Pugh C class [18]. Overall, sorafenib demonstrated a comparable safety profile in Child-Pugh A and Child-Pugh B patients (Table 3), with the exception of a greater percentage of Child-Pugh B patients who discontinued sorafenib for AEs (38 versus 24%) or who experienced severe AEs (15 versus 8%). In addition, on-treatment deaths were more frequent in Child-Pugh B patients (34 versus 16%), but this finding is likely to be related to severity of liver disease in Child-Pugh B patients.

Table 3. Overview of treatment-emergent safety data by Child-Pugh status in the second interim analysis of the GIDEON study [16]a, reproduced with permission

% of n
Totalb (n = 1571) Child-Pugh A (<7) (n = 957) Child-Pugh B (7–9) (n = 367) Child-Pugh C (>9) (n = 35)
AEs (all grades) 83 82 89 86
Drug-related AEs (all grades) 64 67 63 46
AEs (grade 3/4) 30 29 31 34
Drug-related AEs (grade 3/4) 23 24 22 23
SAEsb 37 29 56 63
Drug-related SAEsc 9 8 15 6
AEs resulting in permanent discontinuation of sorafenibd 28 24 38 51
Deathse 22 16 34 37

aData at study entry.

bChild-Pugh status missing or not evaluable for 56 patients.

cA SAE is defined as any AE occurring at any dose that results in any of the following outcomes: death, life-threatening, hospitalization or prolongation of existing hospitalization, persistent or significant disability/incapacity, congenital anomaly/birth defect and medically important event.

dAny AE.

eTreatment-emergent deaths occurring up to 30 days after last sorafenib dose.

AEs, adverse events; SAEs, serious adverse events.

Pressiani et al. [19] have reported the clinical outcomes obtained in a population of 300 consecutive patients with either Child-Pugh A or Child-Pugh B treated with sorafenib. For patients with Child-Pugh A versus B status, progression free survival was 4.3 versus 2.1 months, TTP was 4.2 versus 3.8 months and OS was 10.0 versus 3. 8 months, and the AE profile was similar in the two groups: these findings suggest that patients with Child-Pugh B liver function can tolerate treatment and may still benefit from sorafenib [19].

As a whole, data collected on the safety of sorafenib in Child-Pugh B patients seem to suggest the potential feasibility of this treatment in this population, taken into account that poorer clinical outcomes are to be expected due to worse liver function. However, more robust studies are necessary before confirm or discard the use of sorafenib in this subset of patients.

dose escalation/reduction with sorafenib

The potential efficacy of sorafenib dose escalation has been reported by the research group of Santoro [20]. In this phase II, randomized trial, 101 patients (selected from the previously described population of 300 patients [19]) with progression of HCC after sorafenib treatment at standard dose (400 mg bid) were assigned to increased-dose sorafenib (600 mg bid) plus best supportive care or to best supportive care alone. Overall, increased-dose sorafenib showed a trend toward an improved progression-free survival (HR: 0.67, 95% CI: 0.43–1.06, P = 0.089), TTP (HR: 0.59, 95% CI: 0.33–1.05, P = 0.070) and OS (HR: 0.71; 95% CI: 0.47–1.08, P = 0.107) versus best supportive care alone, although the results did not reach statistical significance. No differences in the safety profile and in the incidence of AEs were reported between the two arms. According to these results, the authors suggested that increased or standard dose of sorafenib beyond progression should be tested in larger phase II–III trials.

In another preliminary experience on 42 HCC patients, conducted in a clinical-practice setting, Sacco et al. [21] have applied a ‘rump-up’ dosing strategy, which consisted in the administration of sorafenib at a starting dose of 400 mg/day; in the absence of toxicity, this dosage was gradually increased to 800 mg/day after 3 weeks. Despite the number of patients treated with this strategy was limited (n = 13), the clinical outcomes observed following the rump-up administration of sorafenib were comparable with those reported in the overall population, and no grade 3/4 AEs were observed in the rump-up group.

search for biomarkers of response

Biomarkers able to predict patient prognosis or response to therapy may represent a major advance toward a more personalized, tailored treatment in cancer patients [22]. However, HCC is a highly heterogeneous disease and the identification of biomarkers is complex and has been poorly explored so far [22]. The recent EASL-EORTC Clinical Practice Guidelines pointed out that further research in this field is necessary [2].

Llovet et al. [23] have recently reported the results of the analysis on 10 plasma biomarkers potentially implicated in the pathogenesis of HCC and in the response to sorafenib treatment conducted in 491 patients at baseline and in 305 after 12 weeks of treatment in the SHARP trial. The results documented a significant correlation between two angiogenesis biomarkers, Ang2 and VEGF, and survival. In fact, the median survival of patients assigned to sorafenib with low- and high-baseline Ang2 concentrations was 14.1 and 6.3 months, respectively, and the median survival of patients with low- and high-baseline VEGF concentrations was 10.6 and 6.2 months, respectively. None of the plasma biomarkers tested reached statistical significance in predicting response to sorafenib, although a trend toward an enhanced survival benefit from sorafenib was observed in patients with high s-c-KIT or low hepatocyte growth factor concentrations at baseline.

The lack of significant predictors of response to sorafenib was confirmed in another subanalysis of the SHARP trial published by Raoul et al. [24]. In this post hoc analysis, 602 patients were grouped by baseline concentrations of alanine aminotransferase/aspartate aminotransferase, α-fetoprotein (AFP) and bilirubin. Overall, all these markers were associated with a shorter OS in both the sorafenib and the placebo arm, and no differences in the safety profiles were observed among patients with normal versus elevated concentrations of any of these biomarkers. These findings suggest that sorafenib is safe and effective regardless of baseline alanine aminotransferase/aspartate aminotransferase, AFP or bilirubin concentrations. A similar subset analysis of the Asia-Pacific trial reached the same result [25].

Personeni et al. [26] have investigated the prognostic usefulness of a serum AFP response, defined as a >20% decrease in AFP during 8 weeks of treatment with sorafenib and compared it with the RECIST criteria. In total, 32 of 85 patients (37.6%) were classified as AFP responders, whereas 58 of 82 patients (70.7%) achieved disease control according to the RECIST criteria. Statistical analysis showed that only AFP response (HR = 0.52; P = 0.009) and Cancer of the Liver Italian Program dichotomized stage (HR = 0.42; P = 0.002) are prognostic factors of survival. According to these findings, authors concluded that the assessment of AFP response may be considered as an alternative to RECIST to monitor sorafenib activity in HCC [26].

conclusions

Sorafenib was the first agent that demonstrated a benefit on survival of patients with advanced HCC and is currently the standard treatment of this disease.

Despite the robustness of the results collected in randomized clinical trials, which represent the basis for the evaluation of efficacy and safety for each new drug, the importance of observational studies and clinical practice experience is increasing in the current scientific debate. In fact, observational studies offer a chance to unravel the safety and toxicity of a given drug in clinical practice and are able to expand upon the findings of phase III trials.

The main clinical practice studies conducted so far, namely the GIDEON and SOFIA studies, confirm the benefit of sorafenib on OS, which was previously observed in RCTs. The safety profile of sorafenib was similar, although a slightly higher rate of AEs and need for dose reduction was reported when compared with the landmark phase III trials. However, this finding may be attributed, at least in part, to the presence of multiple concomitant conditions in patients included in the observational experiences. In addition, a proper management of sorafenib-associated AEs reduces the risk of dose reductions and/or treatment interruptions, thus optimizing the clinical benefits associated with this molecule.

The results of the global GIDEON study, albeit still preliminary, suggest that whenever possible, full dose of sorafenib should be maintained. However, if severe AEs occur, dose could be reduced without decreasing effectiveness, as documented in the SOFIA study. It will be of great interest to identify the clinical, laboratory and genetic characteristics of these patients.

New indications and treatment modalities of sorafenib are being explored by current research. In particular, the effectiveness and safety of this molecule in Child-Pugh B patients deserve, in our opinion, further investigations. The results collected show poorer outcomes in patients with Child-Pugh B cirrhosis treated with sorafenib, when compared with patients with Child-Pugh A cirrhosis. However, this finding can be likely attributed to a more severe liver dysfunction and more compromised conditions of these patients and not to an effect of the drug itself. Noteworthy, available evidence is consistent in showing that the safety profile of sorafenib is comparable in Child-Pugh A and Child-Pugh B patients. An alternative treatment approach could be the administration of increased-dose sorafenib in patients with HCC progression, but this therapeutic scheme has been investigated only in one trial, and therefore, we believe that additional research on its efficacy and safety is advisable.

Lastly, the results of subset analyses of the registrative trials consistently show that the efficacy and safety of sorafenib are maintained irrespective of several biochemical parameters observed at baseline. This result supports the use of sorafenib in different classes of liver disease severity. However, we think that, in the future, the identification of biomarkers predicting prognosis of HCC and/or response to sorafenib or other treatments for this condition may facilitate a more personalized treatment of oncological patients. Further investigation on the potential use of sorafenib in the adjuvant setting is ongoing (the STORM study; NCT00692770), and it will provide new information on the use of sorafenib after surgical resection or local ablation.

funding

Editorial assistance was provided by Luca Giacomelli, PhD, on behalf of inScience Communication, Springer Healthcare; this assistance was funded by Bayer Italy.

disclosure

CV has received research funding from Bayer. Other authors declare no conflict of interest directly relevant to this paper.

references

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May 7, 2013

TACE, sorafenib improve survival among patients with infiltrative HCC

Mehta N. Clin Gastroenterol Hepatol. 2013;11:572-578.

May 7, 2013

Patients with infiltrative hepatocellular carcinoma experienced prolonged survival when treated with transarterial chemoembolization or sorafenib in a recent retrospective cohort study.

Researchers evaluated data from 155 patients with infiltrative hepatocellular carcinoma (iHCC) seen at the University of California, San Francisco Medical Center between 2002 and 2010. Participants had a median age of 60 years, MELD score of 13, maximum tumor diameter of 11.3 cm and alpha-fetoprotein level of 347 ng/mL.

Nearly all patients (95.5%) had died as of Sept. 2011. The survival rate was 63% of patients at 3 months, 30% at 6 months and 8% at 12 months, with a median survival of 4.0 months across the cohort. Median survival was longer among patients who underwent treatment, including transarterial chemoembolization (TACE, 6.0 months), sorafenib (7.5 months) or radiofrequency ablation with or without TACE (9.2 months), than patients who did not receive treatment (3 months).

Survival rates were significantly higher among patients treated with sorafenib (n=11, 73% at 6 and 36% at 12 months) and those who underwent transarterial chemoembolization (TACE, n=18, 45% and 17%) than participants who received no therapy (n=109, 17% and 2%) (P<.01 for all comparisons). No significant difference in survival was observed between those treated with sorafenib or TACE (P=.267).

Multivariate analysis indicated associations between mortality at 6 months and several factors, including: cirrhosis of Child-Pugh class B (HR=2.61, 1.36-4.8 vs. class A) or C (HR=6.12, 2.74-13.76 vs. class A); not having received sorafenib, radiofrequency ablation or transarterial chemoembolization (HR=2.79, 1.60-4.88); MELD score (HR=1.07, 1.03-1.12 per one-point increase); tumor size (HR=1.05, 1.01-1.10 per 1-cm increase) and an alfa-fetoprotein level above 1,000 ng/mL (HR=2.47, 1.56-3.84) (95% CI for all).

“iHCC is a radiographically distinct and advanced form of HCC,” the researchers wrote. “The majority of patients with iHCC have extensive tumor burden as well as macrovascular invasion. … The prognosis of patients who are diagnosed with iHCC is grim, with a median survival of only 4 months. Nonetheless, our results suggest that some patients may still derive survival benefit from liver-directed therapy and/or systemic therapy with sorafenib.”

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September 17, 2012

Jennerex Presents Positive Clinical Data from Phase 2 Trial of JX-594 in Sorafenib-Refractory Liver Cancer Patients

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Key Clinical Endpoints Met: JX-594 can be Safely and Efficiently Delivered Through Systemic Route, and Standard-of-Care Sorafenib Can Be Safely Administered Sequentially After JX-594, Opening Door to New Clinical Perspectives

BERLIN, Sept. 17, 2012 /PRNewswire/ -- Jennerex, Inc., a private, clinical-stage biotherapeutics company focused on the development and commercialization of first-in-class targeted oncolytic immunotherapies, presented Phase 2 clinical data of JX-594 delivered first intravenously and subsequently through intra-tumoral route demonstrating safety as well as disease control and tumor responses in patients with hepatocellular carcinoma (liver cancer, HCC). The data were presented in an oral presentation at the International Liver Cancer Association (ILCA) Annual Meeting in Berlin, Germany, by Mong Cho, M.D., from Pusan National University Yangsan Hospital, South Korea.

Twenty five Asian patients with advanced HCC, 20 of whom were refractory to sorafenib, were treated with an initial intravenous dose of JX-594, and the majority of patients then received sequential intra-tumoral doses of JX-594 at week one and three. The majority of patients subsequently received treatment with sorafenib.

The primary objective of this study was to determine the safety of JX-594 followed by sorafenib in patients with advanced HCC. The sequential treatment regimen was well tolerated with transient flu-like symptoms and transient leukopenia being the most common side effects related to JX-594. The sorafenib side effects observed were consistent with the expected toxicity profile of this product.

Secondary endpoints included the effect of the sequential treatment of JX-594 followed by sorafenib on disease control and tumor response. Evidence of antitumor activity was observed in both sorafenib-naive and sorafenib-refractory patients.

Importantly, this trial also demonstrated the feasibility of the systemic administration of the product (through intravenous injection).

"Our ability to deliver JX-594 intravenously to liver cancer tumors, further confirmed by these encouraging data, is a key attribute that sets it apart from other therapies in the class of oncolytic immunotherapies," stated David H. Kirn, M.D., founder, chief medical officer and president of R&D of Jennerex. "In the Phase 2 trial presented at ILCA, JX-594 demonstrated its ability to selectively target and destroy tumors following intravenous infusion. This finding confirms the ability of JX-594 to target both primary and metastatic, or distant, tumors which we believe is important in this HCC patient population and most cancers."

"We have treated more than 160 patients with JX-594 to date and are actively enrolling a multinational Phase 2b study in second line treatment of liver cancer patients, a Phase 2 all-IV trial in first line HCC patients, and a Phase 2 study in colorectal cancer. The data presented today build on the growing body of promising clinical data showing that JX-594 has a direct anti-tumor effect and can stimulate an immune response killing cancer cells," stated Laurent Fischer, M.D., president and chief executive officer of Jennerex. "We are excited with the progress we are making in our JX-594 program and believe it has the potential to advance patient care across multiple types of cancer."

The abstract (#2012-1304) entitled "Phase 2 Trial Of JX-594, A Targeted Multi-Mechanistic Oncolytic Vaccinia Virus, Followed By Sorafenib In Patients With Advanced Hepatocellular Carcinoma (HCC)" was presented at the International Liver Cancer Association Annual Meeting in Berlin.

About this Trial:

Twenty five Asian patients with advanced HCC, 20 of whom were refractory to sorafenib, were treated with an initial intravenous dose of JX-594, and the majority of patients then received sequential intratumoral doses of JX-594 at week one and three. The majority of patients subsequently received treatment with sorafenib.

Following treatment with JX-594 alone at four weeks, 62 percent of patients had disease control as measured by modified RECIST (tumor burden measurement). Tumor biopsies of four patients following intravenous infusion showed four of four patients had local infection of JX-594 in tumor tissue while normal liver tissue was not affected, providing further evidence of JX-594's tumor selectivity and the ability to administer JX-594 intravenously. Furthermore, after six or 12 weeks, 59 percent of patients had disease control as measured by modified RECIST and 75 percent of patients had objective responses by Choi criteria. 85 percent of patients had disease control by mRECIST and /or Choi response.

JX-594: A Multi-Mechanistic Approach To Targeting Cancer
JX-594 is a proprietary, engineered oncolytic immunotherapy designed to selectively target and destroy cancer cells through three diverse mechanisms of action: 1) the lysis of cancer cells 2) the stimulation of an immune response against cancer cells, (i.e., active immunotherapy), and 3) the shutdown of the blood supply to tumors. Phase 1 and Phase 2 clinical trials in multiple cancer types to date have shown that JX-594, delivered either directly into tumors or intravenously, induces tumor shrinkage and/or necrosis and is well-tolerated (over 160 patients treated to date). Objective tumor responses have been demonstrated in a variety of cancers including liver, colon, kidney, lung cancer and melanoma. JX-594 has had a favorable, predictable and generally mild safety profile to date which includes flu-like symptoms that resolve in 24 to 48 hours.

JX-594 takes advantage of the natural attributes of poxviruses and was engineered to target and destroy solid tumors both systemically and locally. The vaccinia virus backbone of JX-594 has been used safely in millions of people as part of a worldwide vaccination program. This strain naturally targets cancer cells due to common genetic abnormalities in cancer cells. JX-594 was engineered to enhance this cancer-selectivity by inactivating its thymidine kinase (TK) gene and encode the immunogenic GM-CSF gene, to enhance the immune response against cancer cells.

Hepatocellular Carcinoma: A Global Unmet Need
Hepatocellular carcinoma is the fifth most common cancer worldwide and the third leading cause of cancer death, with over 600,000 new cases diagnosed annually resulting in more than 90 percent mortality. The annual incidence rate in the U.S., Europe, Japan and China are estimated to be 20,000, 55,000, 40,000 and 350,000 patients, respectively. The only treatment approved for HCC is sorafenib. There is no treatment approved for patients who fail sorafenib.

About Jennerex's Partners for JX-594
Transgene (NYSE Euronext Paris: FR0005175080), a bio-pharmaceutical company specialized in the development of immunotherapeutic products, holds an exclusive license to develop and commercialize JX-594 in Europe and neighboring countries. Green Cross Corporation, a leading company in the development, manufacturing, and commercialization of viral vaccines and other biological products, holds an exclusive license to develop and commercialize JX-594 in South Korea, and Lee's Pharmaceutical Ltd. holds an exclusive license to develop and commercialize JX-594 in China.

Transgene, a member of the Institut Merieux Group, is a publicly traded French biopharmaceutical company dedicated to the development of therapeutic vaccines and immunotherapeutic products in oncology and infectious diseases, and has five compounds in clinical development: TG4010 and JX-594 (TG6006) having completed initial phase II trials, TG4001 in phase IIb trial, TG4040 in phase II trial and TG4023 in phase I trial. Transgene has concluded strategic agreements for the development of two of its immunotherapy products, an option agreement with Novartis for the development of TG4010 to treat various cancers, and an in-licensing agreement with U.S.-based Jennerex Biotherapeutics, Inc., to develop and market JX-594 (TG6006), an oncolytic product. Transgene has bio-manufacturing capacities for viral-based products. Additional information about Transgene is available on the internet at www.transgene.fr

Green Cross Corp. is a publicly traded and leading Korean biopharmaceutical company specialized in development and commercialization of vaccines, plasma-derivatives, recombinant proteins and therapeutic antibodies in oncology and infectious diseases. Green Cross Corp. has been collaborating with Jennerex in Korea since 2006 to jointly conduct the Phase 1 and 2 clinical trials in patients with liver cancer. Additional information about Green Cross Corp. is available on the internet at www.greencross.com.

Lee's Pharmaceutical Holdings Limited is a public biopharmaceutical company with over 16 years operation in China's pharmaceutical industry. It is fully integrated with solid infrastructures in drug development, clinical development, regulatory, manufacturing, sales and marketing in China with global perspectives and currently markets nine products. Lee's Pharma focuses on several different areas such as cardiovascular and infectious diseases, dermatology, oncology, gynecology and others. It has more than 30 products under different development stages stemming from both internal R&D as well as from the recent acquisition of licensing and distribution rights from various U.S. and European companies. The mission of Lee's is to become a successful biopharmaceutical group in Asia providing innovative products to fight diseases and improve health and quality of life. Additional information about Lee's Pharma is available on the internet at www.leespharm.com.

About Jennerex
Jennerex, Inc. is a clinical-stage biotherapeutics company focused on the development and commercialization of first-in-class, breakthrough targeted oncolytic immunotherapy products for cancer. The Company's lead product JX-594 is currently in an international, randomized Phase 2b clinical trial (TRAVERSE) in patients with advanced primary liver cancer who have failed sorafenib therapy. In addition, JX-594 is being tested in the same patient population in combination with sorafenib. JX-594 is also in a Phase 1/2 clinical trials in patients with treatment-refractory colorectal cancer. Published studies designed to establish optimal dose levels and the safety profile of JX-594 have shown its ability to selectively target and cause destruction of a variety of common solid tumor types and trigger a potent immune response. JX-594 and other product candidates under development are designed to attack cancer tumors through three diverse mechanisms of action: the lysis of cancer cells through targeted viral replication, the ablation of the blood supply to tumors and the stimulation of the body's immune response against the cancer. Jennerex is headquartered in San Francisco and has related research and development operations in Ottawa, Canada and Pusan, South Korea. For more information about Jennerex, please visit www.jennerex.com. For studies evaluating JX-594 please visit www.clinicaltrials.gov.

SOURCE Jennerex, Inc.

RELATED LINKS
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March 28, 2012

Tumor response assessment to sorafenib in patients with advanced hepatocellular carcinoma: do we need new criteria?

March 28, 2012 4:37 pm

Tumor response assessment to sorafenib in patients with advanced hepatocellular carcinoma: do we need new criteria?

By Dr Mohmed Bouattour

Sorafenib, an oral multi-tyrosine kinase inhibitor, is the first and so far the only drug that has shown overall survival benefit in patients with advanced hepatocellular carcinoma (HCC) in two large multicenter, double-blind, placebo-controlled randomized phase III trials [1-2]. Despite the survival benefit in this population, sorafenib has been infrequently associated with changes in tumors dimensions, challenging standard RECIST criteria [3]. Tumor shrinkage and dimensional change, usually assessed to define tumor response of cytotoxic drugs based on the morphological RECIST criteria, was observed in less than 5% of patients. Furthermore, changes in tumor angiogenesis are observed such as decrease in the number of vessels in tumor masses and the appearance of large areas of intratumor necrosis (Figure 2). This feature is acknowledged to reflect the antitumor activity of antiangiogenic drugs that does not always translate into changes in the diameter of the tumor, making the radiological evaluation of efficacy using standard RECIST criteria often inappropriate [4].

In the phase II study evaluating sorafenib [5], among 11 patients strictly evaluated for intratumor necrosis appearance in addition to RECIST criteria, several tumors had size increasing and as well as increasing tumor necrosis. Before treatment, the mean diameter of these tumors was 6.4 cm (interval 2.5 to 14.2 cm) and the mean proportion of tumor necrosis was 9.8% (interval 0.4% to 33.5%). After treatment, the mean diameter of these tumors was 7.2 cm (interval 1.7 to 16.0 cm) and the mean proportion of tumor necrosis was 27% (interval 0.7 to 75%) [5]. Similar observations were shown with sunitinib [6] and bevacizumab [7].

Given this context, experts have suggested new response criteria based on changes in tumor vascularization and density. The modified RECIST criteria (mRECIST) were an amendment of the RECIST criteria; they take into account dimension changes in the tumor arterial enhancement [8]. Choi criteria [9] where composite criteria, covering tumor size and tumor density in CT scan, have been proposed to evaluate response to sunitinib, another potent antiangiogenic agent, in HCC patients [10].

We recently showed in the American Association for the Study of Liver Disease meeting (AASLD) 2011 at San Francisco, interesting results about the relevance of theses criteria in patients with advanced HCC and treated with sorafenib [11]. In our study, 60 patients were evaluated according to those criteria by CT-scan performed within 3 months of treatment. At the first tumor evaluation,we observed that only 2 patients (3.3%) experienced a decrease ≥ 30% of the largest diameter. The majority of patients (51.6%) had no significant changes in tumor size. This confirms the low response rates by RECIST criteria observed with sorafenib. According to mRECIST, 12 patients (21.4%) were categorized as early responder with 2 complete response (3.3%) and 10 partial response (16.7%). When we apply the Choi criteria, we noticed that 27 patients (45%) were considered as partial responders and 14 patients (23.3%) had tumor stabilization. Interestingly, these new criteria were able to identify responders with better overall survival. In fact, responder patients according to mRECIST had better OS than progressive patients (> 14.4 months vs. 5.8 months, respectively, p = 0.0008). Moreover, Choi criteria can predict overall survival in patients with HCC treated by sorafenib since the median OS in the group of responder patients was > 14.4 months compared to the median OS of 6 months in the group of progressive patients (p= 0.0012) [11]. Our results were comparable to another published study [12] in which the best tumor response rates of 53 patients were assessed by RECIST and mRECIST. In this cohort, the rates of objective response, stable disease were 2% and 79% respectively according to RECIST and 23% and 57% respectively by mRECIST. Similar to our results, response according mRECIST criteria can predict survival, since the median OS in the group of responder patients was 18 months compared to the median OS of 8 months in the group non-responder patients (p= 0.013) [12].

Taken together, those results stress the need to evaluate behind tumor size changes, vascular modification and disturbance observed with sorafenib and other antiangiogenic agents in patients with HCC. Further robust studies should take into account those criteria to validate them clinical practice.

References

1. Llovet J, Ricci S, Mazzaferro V, Hilgard P, Gane E, Blanc JF, et al. Sorafenib in advanced hepatocellular carcinoma. N Engl J Med 2008; 359: 378-90.
2. Cheng AL, Kang YK, Chen Z, Tsao CJ, Qin S, Kim JS, et al. Efficacy and safety of sorafenib in patients in the Asia-Pacific region with advanced hepatocellular carcinoma: a phase III randomised, double-blind, placebo-controlled trial. Lancet Oncol 2009; 10: 25-34.
3. Therasse P, Arbuck SG, Eisenhauer EA, Wanders J, Kaplan RS, Rubinstein L, el al. New guidelines to evaluate the response to treatment in solid tumors. European Organization for Research and Treatment of Cancer, National Cancer Institute of the United States, National Cancer Institute of Canada. J Natl Cancer Inst. 2000;92:205-16.
4. Bouattour M, Dreyer C, Faivre S, Raymond E. Evaluation of antiangiogenic effects: biomarkers and functional imaging. International Oncology Updates: Present and future for antiangiogenic therapies in cancer. Permalyer Barcelona, 2010: 63-84.
5. Abou-Alfa GK, Schwartz L, Ricci S, Amadori D, Santoro A, Figer A, et al. Phase II study of sorafenib in patients with advanced hepatocellular carcinoma. J Clin Oncol 2006; 24: 4293-300.
6. Faivre S, Bouattour M, Dreyer C, Raymond E. Sunitinib in hepatocellular carcinoma: redefining appropriate dosing, schedule, and activity endpoints. J Clin Oncol 2009; 27: 248-50.
7. Siegel AB, Cohen EI, Ocean A, Lehrer D, Goldenberg A, Knox JJ, et al. Phase II trial evaluating the clinical and biologic effects of bevacizumab in unresectable hepatocellular carcinoma. J Clin Oncol 2008;26:2992-98.
8. Lencioni, R. & Llovet, J. M. Modified RECIST (mRECIST) assessment for hepatocellular carcinoma. Semin. Liver Dis. 30, 52–60 (2010).
9. Choi H, Charnsangavej C, Faria SC, Macapinlac HA, Burgess MA, Patel SR, et al. Correlation of computed tomography and positron emission tomography in patients with metastatic gastrointestinal stromal tumor treated at a single institution with imatinib mesylate: proposal of new computed tomography response criteria. J Clin Oncol. 2007 ;25:1753-9.
10. Faivre S, Zappa M, Vilgrain V, Boucher E, Douillard JY, Lim HY, et al. Changes in tumor density in patients with advanced hepatocellular carcinoma treated with sunitinib. Clin. Cancer Res. 2011; 17, 4504–12.
11. Bouattour M, Wassermann J, Bruno O, et al. Blinded independent centralresponse assessment using RECIST, modified RECIST, and Choi criteria in patients treated with sorafenib for advanced advanced hepatocellular carcinoma. Oral communication presented at ILCA 2011 in Hong Kong and at AASLD 2011 in San Francisco. Hepatology; 2011 54(S1) (A 270).
12. Edeline J, Boucher E, Rolland Y, Vauléon E, Pracht M, Perrin C,et al. Comparison of tumor response by Response Evaluation Criteria in Solid Tumors(RECIST) and modified RECIST in patients treated with sorafenib for hepatocellular carcinoma. Cancer. 2012;118(1):147-56.

About the Author

Dr-Mohamed-Bouattour-150x150

Dr Mohamed Bouattour

Mohmed Bouattour is a Clinical physician in the department of Oncology and Hepatology at Beuajon Hospital in France. Dr. Mohamed Bouattour received his Gastroenterology Hepatology training at the Faculty of medicine of Sfax and Tunis in Tunisia. He completed and achieved his fellow at the department of Hepatology and Oncology in Beaujon Hospital in Paris France. He is currently a practitioner in Beaujon Hospital at these departments.

His interests go toward the field of Hepatology to study liver disease, hepatic malignancies and clinical trials to evaluate new agents in hepatocellular carcinoma.

Dr. Mohamed Bouattour is a peer reviewer for several scientific journals and has authored and co-authored more than 20 publications as well as book chapters. He is an active member of the European Association for the Study of the Liver (EASL), the American Association for the Study of Liver (AASLD) and The American Society of Clinical Oncology (ASCO).

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February 3, 2012

New Study of Primary Liver Cancer Seeks to Enroll 400 French Patients

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PRESS RELEASE

Feb. 3, 2012, 2:00 a.m. EST

PARIS, February 3, 2012 /PRNewswire via COMTEX/ -- 'SARAH' - a French national collaborative randomized controlled trial of radioembolization with yttrium-90 resin microspheres versus sorafenib in advanced hepatocellular carcinoma is now open for recruitment

The start of SARAH, a new randomized controlled trial to directly compare the effectiveness of radioembolization with yttrium-90 resin microspheres (SIR-Spheres® microspheres; Sirtex Medical Limited, Australia) versus sorafenib (Nexavar®, Bayer HealthCare Pharmaceuticals, Germany), a systemic therapy that is the current standard of care for patients with non-surgical advanced hepatocellular carcinoma (HCC), was announced today by the principal investigator, Professor Valérie Vilgrain MD, PhD, Department of Radiology, Beaujon Hospital, Assistance Publique - Hôpitaux de Paris, Clichy and Université Paris Diderot, Sorbonne Paris Cité, France.

SARAH (SorAfenib versus Radioembolization in Advanced Hepatocellular carcinoma)is a Phase III multi-centre prospective randomized open-labelled trial, which aims to recruit 400 patients in France with advanced HCC (Barcelona Clinic Liver Cancer stage C) with or without portal vein thrombosis and no extrahepatic spread, who are ineligible for surgical resection, liver transplantation or radiofrequency ablation; or whose disease has progressed or recurred after previous therapies.[1]

The primary goal of the study will be to assess if radioembolization with yttrium-90 resin microspheres provides an increased survival benefit compared to sorafenib in patients with advanced HCC.

Professor Vilgrain said: "Around 20 specialist cancer centres throughout France will be involved in this trial. SIR-Spheres microspheres were selected for the test arm of this collaborative trial, which is being promoted by the 'Assistance Publique - Hôpitaux de Paris'."

In patients with advanced HCC, sorafenib is now the standard treatment. Its use is associated with an increased median overall survival (from 8 to 11 months in the SHARP trial) but 80% of patients also experience treatment-related adverse events.

Selective Internal Radiation Therapy (SIRT), also known as radioembolization, is a novel treatment for inoperable liver cancer that delivers high doses of radiation directly to the site of tumours. It is a minimally-invasive treatment, in which millions of radioactive SIR-Spheres microspheres (diameter between 20-60 microns) are infused via a catheter into the liver, where they selectively target liver tumours with a dose of internal radiation up to 40 times higher than conventional radiotherapy, while sparing healthy tissue. There is a growing interest in radioembolization using yttrium-90 resin microspheres in this patient population, based on a substantial number of open-label single-group studies as well as a large multi-centre European analysis[2] of the long-term outcomes related to survival and safety of radioembolization using SIR-Spheres microspheres in patients with inoperable HCC. In 13 open-label single-group studies totalizing 400 patients with advanced HCC, the combined estimation of the median overall survival after radioembolization with yttrium-90 microspheres was of 15 months (min-max:7 to 27 months).

SIR-Spheres microspheres are approved for use in Australia, the European Union (CE Mark), New Zealand, Switzerland, Turkey and several other countries including in Asia (e.g. India, Korean, Singapore and Hong Kong) for the treatment of unresectable liver tumours. SIR-Spheres microspheres are also indicated in the U.S. for the treatment of non-resectable metastatic liver tumours from primary colorectal cancer in combination with intra-hepatic artery chemotherapy using floxuridine.

Professor Vilgrain said that: "The SARAH trial is testing the hypothesis that radioembolization using yttrium-90 resin microspheres can increase the median overall survival with fewer side effects and/or a better quality of life in comparison with sorafenib. We hope that the results of this study will help improve the prognosis for these difficult to treat patients".

About Hepatocellular Carcinoma

Hepatocellular carcinoma (HCC) occurs in people whose livers have become severely damaged or cirrhotic, due to conditions such as hepatitis and alcoholism. It is one of the ten most-common cancers in the world, with nearly 750,000 cases diagnosed annually, and the third-leading cause of cancer deaths.[3] It occurs with greatest frequency in regions where viral hepatitis B or C aremost often diagnosed, such as in Asia Pacific and Southern Europe.

Hepatocellular cancer can be cured by surgery, either by resecting the diseased parts of the liver, or by transplantation with a liver from a healthy donor. These interventions, however, are inappropriate for the great majority of patients, whose survival may range from a few months to two or more years depending largely on the state of their liver at the time of their diagnosis and the extent of tumour invasion.

References:

SorAfenib versus Radioembolization in Advanced Hepatocellular carcinoma (SARAH): http://clinicaltrials.gov/ct2/show/NCT01482442.

Sangro B, Carpanese L, Cianni R et al on behalf of European Network on Radioembolization with yttrium-90 resin microspheres (ENRY). Survival after [90]Y resin microsphere radioembolization of hepatocellular carcinoma across BCLC stages: A European evaluation. Hepatology 2011; 54: 868-878.

GLOBOCAN. Liver Cancer Incidence and Mortality Worldwide in 2008. http://globocan.iarc.fr/factsheets/cancers/liver.asp accessed 28 June 2011.

SOURCE Sirtex Medical Limited

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