View clinical trials related to Carcinoma, Hepatocellular.
Filter by:The purpose of this study is to determine whether BAY73-4506 treatment is safe and can shrink or delay the growth of tumors in patients with unresectable liver cancer.
The main purpose of the study is to establish a safe dose of AZD8055 in patients with mild or moderate liver disease by providing information on any potential side effects this drug may cause and collecting data about how hepatocellular carcinoma responds to the drug.
This is a global randomized, placebo-controlled, double-blinded Phase 2 study designed to compare treatment of ARQ 197 versus placebo in patients with unresectable HCC who had radiographic disease progression after systemic first line therapy or were unable to tolerate the therapy.
The purpose of this study is to determine whether recombinant human arginase (PEG-BCT-100) is safe and effective in the treatment of advanced hepatocellular carcinoma (HCC).
This study is to evaluate the safety, appropriate dose, and efficacy of BIBF 1120 in liver cancer patients
This trial is a phase I, open-label, dose-escalating study of the safety or percutaneous intra-tumoral injection of TG4023 (MVA-FCU1) combined with systemic administration of 5-fluorocytosine in patients with primary or secondary hepatic tumors.
In this study the investigators will be studying the effects of proton beam radiation therapy. This is a very accurate kind of treatment that has been shown to affect less normal tissue than a photon radiation beam. The accuracy allows the investigators to more safely increase the amount of radiation delivered to eliminate cancer. This accuracy will potentially reduce side effects that participants would normally experience using photon radiation therapy. The purpose of this study is to determine if radiation using proton beam therapy will kill the cancer cells in the participants liver.
This phase I trial is studying the safety and best dose of GC33 and Sorafenib in combination in patients with advanced or metastatic liver cancer.
Liver resection and liver transplantation are the acceptable treatment of Hepatocellular Carcinoma (HCC). But the long-term survival is unsatisfactory as a result of high rate of intra and extra hepatic recurrences. Microvascular invasion (MVI) is the most significant risk factor affecting recurrence-free survival in patients following liver resection and liver transplantation. Tumor hypoxia (lack of adequate blood supply) is the single most important factor that predict MVI and post surgical prognosis. Blood Oxygen Level Dependent (BOLD) MRI is a non-invasive diagnostic method of assessing tumor hypoxia by detecting signal changes secondary to changes in blood flow and oxygenation. BOLD MRI assessment of tumor hypoxia in HCC has never been correlated with pathological confirmation of MVI, the gold standard to assess MVI in HCC. In this study, the investigators propose to assess the ability of BOLD MRI to provide a discriminating quantitative threshold of intratumoral oxygenation predictive of MVI.
This is a phase 1b, open-Label study of sorafenib with BIIB022 in subjects with advanced hepatocellular carcinoma.