View clinical trials related to Carcinoma, Hepatocellular.
Filter by:The purpose of this study is to discuss the prognostic value of CEPH among HCC patients underwent TACE treatment, its impact on overall survival, and try to stratify patient cohorts for a better treatment strategy.
This study is being done to analyze the safety, tolerability, and efficacy of treatment using combination of SAM and anti-PD-1/PDL1 antibodies for patients with advanced hepatocellular carcinoma.
The goal of this research study is to evaluate the safety and tolerability of tremelimumab and durvalumab with or without Selective Internal Yttrium-90 Radioembolization (SIRT) in participants with resectable hepatocellular carcinoma (HCC) who will undergo liver surgery. The names of the interventions involved in this study are: - Durvalumab (a type of immunotherapy) - Tremelimumab (a type of immunotherapy) - Selective Internal Yttrium-90 Radioembolization (SIRT) (a type of radiation microsphere bead)
This prospective multicenter study aimed to compare the diagnostic performance of non-contrast abbreviated MRI in detecting recurrent HCC after curative treatment to that of contrast-enhanced liver CT.
Single centre prospective evaluation of 68Gallium(Ga68)-FAPI-46 PET/MRI in patients diagnosed with Hepatocellular Carcinoma (HCC). 68Gallium-FAPI-46 PET/MRI and standard contrasted multiphasic MRI imaging will be acquired in patients with radiological or histological diagnosis of HCC. The PET scan results will be compared to standard imaging to evaluate its role in lesion detection, characterisation and staging in patients with HCC.
The goal of this observational study is to compare the recommendations of the artificial intelligence clinical decision support system 'ADBoard', with the recommendations of physicians by tumor conferences in patients with hepatobiliary tumors. The main questions it aims to answer are: Can ADBoard achieve a high level of similar recommendations as physicians' tumor conferences? Can ADBoard consider a more complete set of patient-related data than in physicians' tumor conferences? Can ADBoard reduce the time between the first time the patient is discussed at the tumor conference and the start of the recommended treatment plan? Participants will have their hepatobiliary tumor treatments determined by either tumor conference with ADBoard, or tumor conference without ADBoard.
This is a single arm study to evaluate the safety and biodistribution of 18F-labeled RD2 PET/CT Imaging in patients with small liver carcinoma.
In summary, with the help of single-cell sequencing technology, this study aims to focus on elucidating the influence of HBV-induced hepatocellular carcinoma cell metabolic changes on microenvironment remodeling. With the help of hepatocellular carcinoma microenvironment changes, this study provide a more accurate diagnosis and treatment method for HBV-induced hepatocellular carcinoma.
The objective of this study is to evaluate the safety/tolerability efficacy of oncolytic virotherapy combined with Tislelizumab plus lenvatinib as second-line or later therapy in patients with advanced hepatocellular carcinoma.
Pain is the main complication after TACE(Transcatheter Arterial Chemoembolization) for hepatocellular carcinoma, and its pathogenesis is not clear.The pain may be related to partial liver tissue swelling after blocking the tumor blood supply artery embolization agent, transient hepatic swelling causing tension or strain on the liver capsule, and chemical irritation by the anticancer drug-Lipiodol mixture,the inadvertent embolization of normal organs and individual sensitivity to pain. Ketamine produces anesthetic and analgesic effects mainly by inhibiting NMDA receptor(N-methyl-D-aspartic acid receptor), and previous studies have shown that low concentrations of ketamine have obvious analgesic effects. Not only that, ketamine also produces analgesic effects by inhibiting opioid receptors via G-protein coupling. In addition, ketamine can bind to monoaminergic receptors in the central and peripheral nervous system, showing an anticholinergic effect and producing an antispasmodic effect. Ketamine also inhibits inflammatory pain by reducing nitric oxide production by inhibiting nitric oxide synthase. Esketamine is about three to four times more potent than ketamine. Therefore,esketamine requires a lower dose, about half the dose of ketamine, to produce anesthetic and analgesic effects, with fewer side effects.