View clinical trials related to Carcinoma, Hepatocellular.
Filter by:The purpose of this study is to evaluate the safety and efficacy of a continuous hepatic arterial infusion combination therapy with OPC-18 and 5-FU versus BST in patients with highly advanced hepatocellular carcinoma for which resection therapy or local therapy is inapplicable due to advanced vascular invasion.
We hypothesize that combination of tegafur/uracil(UFUR) and thalidomide, both of which have been shown to be active in some HCC patients,may be a highly useful regimen for the treatment of advanced HCC. There are several rationales underlying this combination. First, anti-angiogenesis therapy may improve the efficacy of chemotherapy by normalizing the abnormal vasculature in tumors, and thus improving the delivery of chemotherapeutic agents to the tumor cells. Second, chemotherapeutic drugs given in a low-dose, un interrupted, and protracted way can induce anti-tumor effect through the anti-angiogenesis activity (so-called"metronomic chemotherapy"). The efficacy of metronomic chemotherapy can be suppressed by VEGF/VEGFR signaling pathways and thus can bo further potentiated by agents blocking those survival signals of endothelial cell. In this regard, tegafur/uracil appears to be a good candidate for metronomic chemotherapy because tegafur/uracil and its metabolites bave already been shown to inhibit angiogenesis in several pre-clinical models.
Phase 2 Study of ABT-869 in Advanced Hepatocellular Carcinoma (HCC)
Laboratory studies have shown that RAD001 can prevent cells from multiplying. Consequently, the study drug is being tested in medical conditions in which excessive cell multiplication (as in cancer) needs to be stopped. The main purpose of this research study is to find the highest dose of RAD001 that can be given safely (without causing severe side effects) and to learn the effects (good or bad) RAD001 has on participants with liver cancer.
RATIONALE: Sunitinib may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth and by blocking blood flow to the tumor. PURPOSE: This phase II trial is studying how well sunitinib works in treating patients with liver cancer that cannot be removed by surgery.
This is a multi-centre, phase II study to assess the efficacy and safety of ZD6474 in patients with Child-Pugh class A, inoperable HCC. This study comprises 2 phases, the primary treatment phase and the secondary treatment phase. The primary treatment phase is a randomised, double-blind, parallel-group phase II study to assess the efficacy and safety of ZD6474 300 mg plus best support care (BSC), ZD6474 100 mg plus BSC, and placebo plus BSC. The secondary treatment phase is an open-label expanded access program of ZD6474. In the primary treatment phase, patients will be randomised in a 1:1:1 ratio to receive ZD6474 300 mg plus BSC, ZD6474 100 mg plus BSC, or placebo plus BSC, respectively. Randomisation will be stratified on the basis of Cancer of the Liver Italian Programme (CLIP) tumour staging (CLIP score 0-2 versus 3-4). The primary treatment will continue until objective disease progression, according to Response Evaluation Criteria in Solid Tumours (RECIST) criteria, or until patients meet any other withdrawal or discontinuation criteria.The primary endpoint is tumour stabilisation rate, and the secondary endpoints are objective response rate, progression-free survival, and overall survival. The purpose of the secondary treatment phase is to expand the access of ZD6474 so that every patient who is enrolled into this study can have the chance to receive the active medicine.Once an individual patient has progressive disease in the primary treatment phase, the blind will be broken for this patient. If this patient is in the ZD6474 100 mg arm or placebo arm, the patient will be offered the secondary treatment with ZD6474 300 mg per day. If this patient is randomised to the ZD6474 300 mg arm, the study medication will be discontinued unless the patient wishes to remain the treatment, and the patient is to be followed up for survival.
The hepatocellular carcinoma (HCC) represents more than 5% of all human malignancies, with more than 500,000 deaths per year (1). In Campania region, mortality for HCC is 2 times higher than in the rest of Italy because of a higher locally prevalence of hepatitis-C virus infection. Development of HCC in liver cirrhosis is associated with increased DNA synthesis and regeneration of hepatocytes (2). Hepatocyte growth factor, the transforming growth factor-α, the fibroblast growth factor are well studied (3,4) while the insulin-like growth factor system (IGF-I, IGF-II and their binding proteins) has been less investigated. IGF-I and IGF-II modulate growth, metabolism and cell differentiation and have specific receptors in the liver (5). IGF-I levels in the upper normal range have been associated with an increased risk to develop prostate cancer (6), breast cancer (7) and colon cancer (8). Some data report increased expression of IGF-II in HCC (9,10) and others suggest a role of increased IGF-I bioavailability in HCC (11). We reported increased IGF-I/IGFBP-3 ratio in patients with HCC compared with those with cirrhosis with a similar liver function, so suggesting increased IGF-I bioavailability in HCC (12). There is no currently medical treatment for patients with advanced HCC which has a very poor prognosis (survival <6 months). Because of limited liver function, classical chemotherapy cannot be applied (13). In patients with HCC without cirrhosis, surgery is possible only in 5% while in those with cirrhosis first-line treatment is still questioned as survival is <50% three years after operation. Patients suitable for local resection of HCC are only those with Child-Pugh's "hyper A" liver function class, who are a minority (14-16). Percutaneous resection treatments may treat approximately 70%-90% of tumors with maximal diameters of <3 cm (15,17-19). Somatostatin analogues are indicated in patients with neuroendocrine tumors expressing somatostatin receptors type 2 and 5 and has excellent safety profile. In advanced HCC, some studies demonstrated beneficial effects (20,21) while some others did not (22,23). Only a few data are available on somatostatin receptor expression in HCC (24,25). Somatostatin analogues have also a clear-cut inhibitory effect on circulating IGF-I levels with a potential additional effect in delaying HCC progression.
Clinical trial of BAY43-9006 in patients with hepatocellular carcinoma.
The purpose of this study is to provide supervised access to treatment with TheraSphere® to eligible patients with primary and metastatic cancer and evaluate response to treatment, survival and toxicity. The study has the following objectives: - Provide supervised access to treatment with TheraSphere to eligible patients with primary and metastatic cancer to the liver. - Evaluate patient experience and toxicities associated with TheraSphere treatment - Evaluate predisposing factors that may influence results and toxicity
The purpose of this study is to evaluate efficacy, safety, and patient reported outcomes (PRO) of different regimens of transarterial chemoembolization (TACE) in patients with hepatocellular carcinoma (HCC).