View clinical trials related to Carcinoma, Hepatocellular.
Filter by:This phase II study is to evaluate the efficacy of the adjuvant immunotherapy after curative-intent ablation for recurrent hepatocarcinoma
Considering the treatment landscape with its dynamic algorithms and new approaches of sequencing, it is important to identify patient management patterns and survival outcomes arising from the current standard of care. Based on all these considerations, this multicountry, multicentre, noninterventional, real-world, retrospective study is designed to describe the management patterns, clinical characteristics, possible predictors, and survival outcomes in patients with unresectable HCC. The results of this study might help oncologists in optimal patient selection and sequencing of the systemic therapies.
Tumor recurrence, which occurs in 70% of patients with HCC within 5 years after hepatic resection, is a major cause of post-resection-death. This recurrence can be true recurrence (intrahepatic metastases), which occurs sooner than 2 years later, or it can be due to the development of de-novo tumors at least 2 years later. Despite this high rate of tumor recurrence, no anti-recurrence adjuvant therapies are currently recommended. Imaging phenomics is the systematic, large scale extraction of imaging features for the characterization and classification of disease phenotypes. Combining imaging and tissue phenomics could be a solution to predict HCC recurrence. With the emergence of molecular therapies and immunotherapies, identifying patients with HCC at high risk of post-resection recurrence would help determine additional therapeutic and management strategies in clinical practice.
This study is a prospective, randomized controlled, multicenter clinical study. The purpose of this study is to explore the efficacy and safety of hepatic artery infusion chemotherapy (HAIC) combined with second-line regorafenib and immune checkpoint inhibitors in the treatment of transarterial chemoembolization (TACE) combined with first-line molecular targeted drugs and immune checkpoint inhibitors with low response or failure in advanced hepatocellular carcinoma.
Hepatic artery infusion chemotherapy (HAIC) have shown promising outcomes in patients with advanced hepatocellular carcinoma (HCC).In China, Oxaliplatin combined with 5-fluorouracil is commonly used in continuous hepatic arterial perfusion chemotherapy.But the 5-FU requiring a long infusion and Calcium folate is also needed to sensitize 5-FU. Moreover, 5-FU regimen was associated with a variety of adverse events, which limited its application in HAIC.Compared to 5-fluorouracil, raltetrexed is less toxic, has a stronger anti-tumor effect and can be administered in just two to three hours. However, the comparison of the two drugs in HAIC to treat advanced HCC has not been reported. In this study, we will evaluate the the progression-free survival(PFS)、objective response rate(ORR)、 disease vacancy rate(DCR)、overall survival (OS) and safety in patients with advanced hepatocellular carcinoma (Ad-HCC) who are undergoing hepatic arterial infusion (HAI) of Raltetrexed plus oxaliplatin (SALOX) compared with oxaliplatin, fluorouracil/leucovorin (FOLFOX) treatment by designing prospective, multi-center phase III clinical study.
The purpose of this study is to describe the following safety and the efficacy of Lenvima for the first-line treatment indication of participants with uHHC in the post marketing setting: (1) Serious adverse events and serious adverse drug reactions (2) Unexpected adverse events and adverse drug reactions not reflected in the precautions for use (3) Known adverse drug reactions (4) Non-serious adverse drug reactions (5) Other safety and efficacy related information.
Patients with hepatocellular carcinoma with PVTT can benefit from surgical resection and radiotherapy. As the rapid development of systematic treatment in hepatocellular carcinoma, ICIs neoadjuvant therapy is being actively explored .But there is no evidence to prove the safety and efficacy of lenvatinib and anti-PD1 antibody combined with radiotherapy neoadjuvant treatment for resectable hepatocellular carcinoma with PVTT. This study intends to supplement the evidence of benefit in such patients.
Safety Run-in Cohort (cohort 1): 10 patients will be treated with IT injection of VG161 in the cohort 1 at dose level of 1.0x10E8 PFU x 3 days. Monotherapy Cohorts (Cohort 2 and 3) Cohort 2 (HCC) This part is a single-agent, single one-dose level and single-arm design. Approximately 39 subjects will be enrolled in the study to receive VG161. In the first stage, 21 subjects will be enrolled. If there is only 1 or fewer subjects has been observed with objective response and no more than 12 (<13) subjects have PFS longer than 3 months, the trial will be stopped. Otherwise, this study will continue to enter the second stage, and 18 additional subjects will be added, and the total number of trial subjects will reach 39. Cohort 3 (ICC) This part is a single-agent, single one-dose level and single-arm design. The trial will be carried out in two periods. In the first period, a total of 20 subjects will be enrolled. If there is only 1 or fewer response case in the 20 subjects, the trial will be stopped to investigate the efficacy of the IP, otherwise, subjects will continue to enter the second period, and 13 additional subjects will be added, and the total number of trial cases will reach 33. Cohort 4 (ICC and HCC) Combination with Nivolumab Combination cohort and subjects will receive VG161 at the same schedule as the monotherapy cohorts and 240 mg of intravenous Nivolumab on days 8 and 15 of each treatment cycle. The Nivolumab dose can be changed to 480 mg every 4 weeks after cycle one based on investigator's discretion.
Though hepatectomy is the best treatment for patients with hepatocellular carcinoma (HCC), the 5-years recurrence-free survival is lower than 30%. In recent years, several immune checkpoint inhibitors have been approved in advanced HCC. No study about the safety and efficacy of adjuvant immune checkpoint inhibitors for patients with HCC after hepatectomy was reported.
This is an Open-label, Phase 1b/2 Study of the Pressure-Enabled Hepatic Artery Infusion (HAI) of SD-101, a TLR9 agonist, Alone or in Combination with Intravenous Checkpoint Blockade in Adults with Hepatocellular Carcinoma (HCC) and Intrahepatic Cholangiocarcinoma (ICC).