View clinical trials related to Carcinoma, Hepatocellular.
Filter by:Global prevalence of Non Alcoholic Fatty Liver Diseases (NAFLD) ranges from 22% to 28%.The spectrum of these hepatic abnormalities extends from isolated steatosis to steatohepatitis (Non Alcoholic Steato-Hepatitis, NASH) and steatofibrosis leading to cirrhosis and hepatocellular carcinoma. NAFLD is one of the main causes of cirrhosis and increases the risk of liver-related death and hepatocellular carcinoma (developed in patients with or without cirrhosis). Despite this major public health concern, apart from lifestyle changes, treatment of NAFLD is still elusive as there is lack of efficacious pharmacological treatment. Alcoholic liver diseases are also frequent in Western countries. Alcoholic liver diseases and NAFLD share common pathological lesions and molecular pathways. This is illustrated by the emerging role of abnormalities of the microbiota (dysbiosis) in these 2 diseases leading to the concept of " liver-gut axis ". Whereas the molecular mechanisms responsible for the progression from a "safety" state to NASH or to a severe alcoholic steato-hepatitis are still unclear, hepatic inflammation is a key factor involved in the progression of NAFLD and alcoholic liver disease. The hypothesis is that cellular and molecular abnormalities and gut dysbiosis could be present in patients with simple steatosis or with steato-hepatitis and could be responsible for the occurrence of hepatocellular carcinoma particularly without cirrhosis. The main objective is to compare cellular and inflammatory pathways in liver with and without hepatocellular carcinoma in patients with alcoholic or non-alcoholic fatty liver diseases.
[18F] FMISO Positron Emission Tomography (PET) to determine hypoxia in patients with HCC treated with TACE.
A single arm, open-label pilot study is designed to determine the safety, efficacy and cytokinetics of CAR T cells in patients with malignant tumors with positive antigen targets. CAR T cells are genetically engineered to express single-chain variable fragment (scFv) targeting indication-specific antigens. The investigational CAR T cells and proposed indications are as follows: CAR-CD19 T cells for B cell leukaemia/lymphoma; CAR-BCMA T cells for myeloma; CAR-GPC3 T cell for hepatocellular carcinoma; CAR-CLD18 T cells for pancreatic carcinoma and adenocarcinoma of esophagogastric junction.
The focus of the study is to identify viral factors and host immune responses that differentiate HBV-related HCC patients from HBV patients who have not progressed to HCC. To that end, the investigators will compare gene expression levels between HCC patients and non-HCC patients categorized into high and low risk profiles. The investigators will perform ANOVA to compare three groups (HCC, high risk, low risk). Multiple comparison corrections will be performed using Benjamini and Hochberg False Discovery Rate (FDR) with a 90% confidence that the discovery lists will contain no more than 5% false positives (FDR<0.05) (PMID: 12584122, 11682119). A p-value <0.05 is considered statistically significant using this multiple comparison correction approach. Post-hoc Student-Newman-Keuls or Tukey tests will be used following ANOVA for comparisons of HCC patients with high risk and low risk. If data are not normally distributed when log-transformed, then Kruskall-Wallis tests will be used. ANCOVA will be used to adjust for the effects of covariates, such as age, gender, and HBV genotype (B or C). Further, the investigators often use an additional 2-fold change criterion for significance because the investigators consider a fold change of this magnitude to be biologically significant. Hierarchical clustering analyses and principal component analyses will be used to visualize how well the genes separate the groups, or to discover new subgroups. For the analysis of SNVs, the exact binomial test will be performed and p-values will be adjusted by the Benjamini-Hochberg correction.
This pilot clinical trial studies how well contrast-enhanced ultrasound in diagnosing patients with liver cancer who are undergoing Yttrium-90 radioembolization. Contrast-enhanced ultrasound may provide detailed imaging of the tumor arteries after the injection of a contrast-agent consisting of microbubbles, and may predict how much Yttrium-90 will deposit in the tumor.
The proposed study is an open-label, single institution, single arm phase 1b study of neoadjuvant cabozantinib plus nivolumab in patients with locally advanced HCC.
The purpose of this study is to evaluate the safety and efficacy of Radiopaque Microsphere (T-ACE Beads with doxorubicin) interventional therapy for patients with liver cancer
This is a randomized, open-label, multi-center, global, Phase III study to assess the efficacy and safety of durvalumab plus tremelimumab combination therapy and durvalumab monotherapy versus sorafenib in the treatment of patients with no prior systemic therapy for unresectable HCC. The patients cannot be eligible for locoregional therapy
This retrospective, multinational, single-arm study will be conducted in at least 8 sites. An interim analysis will be conducted with data from 100 patients with up to 10 well defined HCC tumor(s) and with at least one tumor ≥3 cm. Normal tissue absorbed dose using pre-procedural 99mTc MAA SPECT or SPECT/CT imaging will be measured to allow the mean absorbed normal tissue dose corresponding to a ≤15% probability of CTCAE grade 3 or higher hyperbilirubinemia (in the absence of disease progression) to be calculated. Total bilirubin will be recorded and graded according to CTCAE version 4.02. All dose-related SAEs at 3 months follow-up will be followed until resolution, death or lost-to-follow-up. AEs related to disease progression will not be considered related to TheraSphere.
All study objectives will be assessed in HCC patients or colorectal cancer patients with secondary metastases in the liver, respectively.