View clinical trials related to Carcinoma, Hepatocellular.
Filter by: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.
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.
To evaluate the early detection of HCC in patients Taking Sofosbuvir and Daclatasvir.
This is a Phase IIb, multicohort, open-label multicenter study of combination immunotherapies in patients who have previously received treatment with PD-1/PD-L1 immune checkpoint inhibitors. All patients in Cohorts 1-4 will receive the combination treatment of PD-1/PD-L1 checkpoint inhibitor plus N-803 for up to 17 cycles. Each cycle is six weeks in duration. Some patients who experience disease progression while on study in Cohorts 1-4 may roll over into Cohort 5 and receive combination therapy with a PD-1/PD-L1 checkpoint inhibitor, N-803, and PD-L1 t-haNK cellular therapy for up to an additional 17 cycles. Each cycle is six weeks in duration. All patients will receive N-803 once every 3 weeks. Patients will also receive the same checkpoint inhibitor that they received during their previous therapy. Radiologic evaluation will occur at the end of each treatment cycle. Treatment will continue for up to 2 years, or until the patient experiences confirmed progressive disease or unacceptable toxicity, withdraws consent, or if the Investigator feels it is no longer in the patient's best interest to continue treatment. Patients will be followed for disease progression, post-therapies, and survival through 24 months past administration of the first dose of study drug.
The purpose of this study is to determine the feasibility and safety of the Surefire Infusion System (SIS) for delivery of Drug Eluting Beads Transcatheter Chemoembolization (DEB-TACE) in the HCC population. This study will allow us to determine the effectiveness of SIS for HCC in terms of disease response.
This phase Ib/II trial studies how well sorafenib tosylate and pembrolizumab work in treating patients with liver cancer that has spread to other parts of the body. Sorafenib tosylate may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Monoclonal antibodies, such as pembrolizumab, may interfere with the ability of tumor cells to grow and spread. Giving sorafenib tosylate and pembrolizumab may work better in treating patients with liver cancer.
This phase II trial studies how well perflutren protein-type A microspheres and contrast-enhanced ultrasound work in improving response to radioembolization therapy in patients with liver cancer. Ultrasound contrast agents, such as perflutren protein-type A microspheres, use gas microbubbles to improve image quality. Using contrast-enhanced ultrasound imaging will "pop" these microbubbles and cause tumors to become more sensitive to radiation therapies.
Many patients have cancers that have increased activity of a protein called STAT3 that contributes critically to the development and growth of their cancer. Despite our knowledge of STAT3's importance to cancer, scientists and doctors have not developed a drug that targets it and that patients can take to treat their cancer more effectively than treatments that are now available. Tvardi Therapeutics, Incorporated has developed a compound, TTI-101, which can be given by mouth and acts as a direct inhibitor of STAT3. Administration of TTI-101 to mice demonstrated that it blocked growth of cancers of the breast, head and neck, lung, and liver and it was safe when administered at high doses to mice, rats, and dogs. In this application, Tvardi is proposing to further develop TTI-101 for treatment of solid tumors for which the prognosis is dismal. The investigators will determine how safe it is when administered to patients with cancer, determine whether an adequate dose can be administered to patients with cancer that will block STAT3 in their cancer, and determine whether treatment with TTI-101 leads to reduced growth of their cancer.
To evaluate a novel technique—ultrasound guided percutaneous abaltion of tumor feeding artery before RFA for liver malignancy.
This first time in human study is intended for men and women between 18 and 75 years of age who have advanced liver cancer which has grown or returned after being treated or another AFP expressing tumor. Those who did not tolerate or refused other therapies may also participate. The purpose of this study is to test the safety of genetically changed T cells that target alpha-fetoprotein (AFP) and find out what effects, if any, they have in subjects with liver cancer or other AFP expressing tumor types. This study is for subjects who have a blood test positive for appropriate HLA-A*02 P Group and have adequate AFP protein in blood or tumor, and whose noncancerous liver tissue has very little AFP protein (Liver only). The study will take the subject's T cells, which are a natural type of immune cell in the blood, and send them to a laboratory to be modified. The changed T cells used in this study will be the subject's own T cells that have been genetically changed with the aim of attacking and destroying cancer cells. The manufacturing of T cells takes about 1 month to complete. The T cells will be given back to the subject through an intravenous infusion after 3 days of chemotherapy. The study will evaluate three different cell dose levels in order to find out the target cell dose. Once the target cell dose is determined, additional subjects will be enrolled to further test the safety and effects at this cell dose. Subjects will be hospitalized for at least 1 week after receiving their T cells back and then seen frequently by the Study Physician for the next 6 months. After that, subjects will be seen every three months. If subjects have disease progression or withdraw from the study, they will then be entered into a long-term follow up for safety monitoring. In long-term follow up, subjects will be seen every 6 months by their Study Physician for the first 5 years after the T cell infusion and annually for the next 10 years.