View clinical trials related to Carcinoma, Hepatocellular.
Filter by:The aim of the study was to evaluate the safety and efficacy of using the new formulation (Lipiodol-cisplatin suspension) for TACE in the treatment of HCC as compared to the conventional formulation (Lipiodol-cisplatin emulsion). This is a prospective, parallel-group, open-label randomized, phase II study that is conducted in accordance to the Declaration of Helsinki and international standards of Good Clinical Practice, and approved by the institutional review board. Eligible patients were randomized into either a treatment arm of Lipiodol-cisplatin suspension or a control arm of Lipiodol-cisplatin emulsion with a 1:1 ratio.
Hepatocellular carcinoma (HCC) is the 6th most common cancer in the world but the 2nd most important cause of cancer death. Because of its highly heterogeneous nature, the current approach to identifying druggable targets have not delivered efficacious therapies in HCC and is a main reason for the high case fatality. Even when surgical resection is potentially curative in early disease, tumor recurrence remains high and long term survival poor because of the absence of useful adjuvant therapy. To address these unmet needs, the investigators bring together internationally recognized scientists from genomics and immunology and established clinician investigators in a synergistic team. This TCR capitalizes on recent collaborative advances made by the PIs in the consortium. The investigators have shown through multi-region sampling of freshly resected HCC and phylogenetic analysis, that significant intra-tumoral heterogeneity exists and have identified the specific positions of known clonal drivers. Simultaneously the investigators have analyzed the immune landscape of the tumor microenvironment with deep immune-phenotyping and found unique inter-patient immune landscapes predictive of clinical trajectory. This TCR is a prospective study that samples resected HCC from multi-ethnic sites within the established Asia-Pacific Hepatocellular Carcinoma (AHCC) Trials Group, which has enrolled approximately 1000 patients through 6 multi-center trials in 35 centers in the region. Clinical trajectories are tracked and genomic and immunological studies are repeated when tumors recu r, to confirm clonally dominant driver mutations and immunological processes that are targetable. Concurrently, representative pre-clinical models will be developed from the tissues sampled. The investigators aim to combine these approaches to overcome the challenges posed by genomic heterogeneity and to guide the development of therapeutics and precision medicine in HCC.
This pilot clinical trial studies how well Walking for Recovery from Surgery works in improving quality of life in older adults with lung or gastrointestinal cancer and their family caregivers. A walking program, such as Walking for Recovery from Surgery may help support overall well-being as a caregiver, and may help improve family member or friend's recovery from surgery.
Hepatocellular carcinoma (HCC) is unique regarding diagnosis because the clinical diagnosis without pathology proof is accepted. The dynamic image, including contrast-enhanced computed tomography (CECT) and contrast-enhanced magnetic resonance image (CEMRI) were recognized in many guidelines for diagnosing the HCC. In contrast to the CT and MRI, ultrasound (US) with/without contrast is suggested by several societies as the sufficient surveillance modality. The contrast-enhanced ultrasound (CEUS) has aroused more attentions regarding the rapid improvement of contrast medium. In this study, the investigators conducted a prospective, single-center, open-label trial to compare the efficacy and safety of CEUS + CEMRI in characterizing HCC, in comparison with CECT + CEMRI.
In this phase 2 study, we aim to evaluate the effects and safety of adjuvant apatinib therapy for the patients who underwent R0 resection for hepatocellular carcinoma with portal vein tumor thrombus.
This is a multi-center, open-label phase IIA study that investigates the preliminary efficacy of Trans-arterial Tirapazamine Embolization (TATE) treatment of liver cancer followed by a PD-1 checkpoint inhibitor (nivolumab). Patients with two types of cancers will be enrolled, advanced hepatocellular carcinoma (HCC),and metastatic gastric cancer. All enrolled patients need to have liver lesions and have progressed on a prior immune checkpoint inhibitor.
This phase Ib trial studies the side effects and best dose of guadecitabine and how well it works when given together with durvalumab in treating patients with liver, pancreatic, bile duct, or gallbladder cancer that has spread to other places in the body. Guadecitabine may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Monoclonal antibodies, such as durvalumab, may block tumor growth in different ways by targeting certain cells. Giving guadecitabine and durvalumab may work better in treating patients with liver, pancreatic, bile duct, or gallbladder cancer.
In this international collaboration study, the research group will analyze somatic mutations of hepatocellular carcinoma (HCC) developed after sustained virological response (SVR) in patients treated with hepatitis C (HCV) therapy
Prospective single arm, single center observational study to evaluate Quality of Life (Qol) after stereotactic body radiotherapy for patients with hepatocellular cancer. Patients will receive work-up, treatment and follow-up exclusively as routinely done except additional quality of life measurements. Qol will be measured by standardized and validated EORTC questionaires at different time points during routine follow-up.
Meclizine hydrochloride is an antihistamine widely used for treatment of vertigo and motion sickness. In HCC it has been used for anti-emetic effects, but it is used here as a CAR (constitutive androstane receptor) inverse agonist. The hypothesis of this study is that Meclizine, CAR inverse agonist, will have beneficial therapeutic effect in patients with hepatocellular carcinoma who are candidates for surgical resection, ablation, TACE, Y90 or systemic therapy by blocking tumorigenesis and inducing apoptosis. The effects of Meclizine will be analyzed by measuring messenger RNA level of CAR target genes CYP2B6, c-Myc and FoxM1, the downstream effectors of CAR, by real time quantitative PCR.