View clinical trials related to Carcinoma, Hepatocellular.
Filter by:This is a Phase 1, open-label, first-in-human (FIH) study designed to evaluate the safety, tolerability, pharmacokinetics (PK), pharmacodynamics (PD), and preliminary antineoplastic activity of fisogatinib (formerly known as BLU- 554) administered orally in patients with FGF19 IHC+ hepatocellular carcinoma (HCC). The study consists of 3 parts, a dose-escalation part (Part 1), an expansion part (Part 2) exploring a once daily (qd) dosing schedule at the recommended Phase 2 dose (RP2D), and a Part 3 expansion of the qd dosing schedule at the RP2D in TKI naive patients.
This pilot clinical trial studies stereotactic body radiation therapy (SBRT) and transarterial chemoembolization (TACE) in treating patients with liver cancer that cannot be removed by surgery. SBRT is a specialized radiation therapy that delivers a high dose of radiation directly to the tumor and may kill more tumor cells and cause less damage to normal tissue. Chemoembolization kills tumor cells by carrying drugs directly into blood vessels near the tumors and then blocking the blood flow to allow a higher concentration of the drug to reach the tumor for a longer period of time. SBRT may make TACE more beneficial by increasing blood flow to the tumor, which may allow more of the TACE chemotherapy to enter the tumor. Giving SBRT with TACE may work better in treating patients with liver cancer that cannot be removed by surgery.
To Calculate the amount radiation the lung receives in patients receiving Yttrium-90 for Liver Cancer.
Dr Rajan is investigating a new method to improve local treatment of liver cancer. There is evidence that a drug, norepinephrine (NE), has the ability to shrink down normal liver blood vessels, but leave tumor vessels wide open. In patients with primary liver cancer, NE will be injected directly in the artery that nourishes the liver and the tumor. Real time blood flow will be measured using an advanced CT scanner to demonstrate the NE effect on blood vessels. If Dr Rajan's hypothesis is confirmed, this drug has great potential to benefit patients during local delivery of chemotherapy in the liver artery, diverting it away from normal liver and towards the tumor, resulting in less complications and improved tumor kill.
Background: - Treatment for liver cancer can include surgery, transplant, and chemotherapy. It can also include other minimally invasive tumor treatments such as transarterial chemoembolization (TACE). TACE treatment for liver cancer helps control the cancer but is not considered a cure. Researchers want to learn more about the effects of TACE on liver tumors and surrounding tissue. To do this, they will use a positive emission test (PET) and a radioactive tracer called [18F] FMISO. Objectives: - To see if [18F] FMISO is useful for evaluating what happens to liver tumors and surrounding tissue after TACE. Eligibility: - People age 18 and older with liver cancer who have been approved to have TACE. Design: - Participants will meet with a study researcher to see if they can take part in the study. - Participants will have TACE under a separate NCI protocol or at a hospital other than the NIH Clinical Center. - Before and after TACE, participants will have a CT and MRI of the abdomen. For these scans, they will lie in a machine that takes pictures of their body. They will also have blood tests and a physical exam. - The [18F] FMISO imaging study will be performed at NIH only. - Participants will have an intravenous catheter placed in their arm (if they do not have one). The [18F] FMISO tracer will be injected. - Participants will have PET-CT scans. Each scan will take about 30 minutes. - Some participants will also have [18F] FMISO and PET-CT scans before TACE. - As part of standard care for TACE, participants will have CT and MRI scans at regular intervals. This will evaluate tumor response.
This is a pilot single arm study with the primary endpoints of feasibility and preliminary estimates of safety and efficacy. This protocol builds on over 25 years of experience with high dose liver RT (Radiation Therapy), and in particular adaptive RT aimed at adjusting the global radiation dose based on a patient's measured sensitivity to treatment. This current protocol uses functional imaging and specialized radiation planning techniques to spare highly functional portions of the liver to preserve function. The investigators feel this will further improve the safety and efficacy of RT for all patients by customizing treatments to each. If this approach is promising, the investigators will proceed to a phase II randomized study of standard versus spatially and dosimetrically adapted RT.
The purpose of this study is to evaluate the safety and efficacy of nano drug(Gemzar® mix with Compound Glycyrrhizin Injection) interventional therapy using digital subtraction angiography(DSA) for liver cancer.
This single-centered phase II clinical study is to obtain preliminary information on 1-year recurrence-free survival rate, recurrence-free survival and safety profile of thalidomide in combination with tegafur-uracil in hepatocellular carcinoma after hepatectomy and explore biomarkers(VEGF/bFGF) for thalidomide response.
Abdominal surgery, including hepatic resection for hepatocellular carcinoma (HCC), is inevitably followed by an episode of gastrointestinal hypomotility. A delayed return of gastrointestinal function, defined as postoperative ileus (POI), has a great impact on patient comfort, morbidity and recovery. POI often results in a prolonged hospital stay and contributes significantly to healthcare costs. Some prospective studies have revealed that gum chewing can improve the return of gastrointestinal function after colorectum surgery, gynaecology and obstetrics, and urinary system surgery. Moreover, some retrospective studies also revealed that simo decoction may improve the return of gastrointestinal function after hepatic resection of HCC. Therefore, the present study compared the effect of gum chewing and simo decoction after hepatic resection of HCC on POI, surgical complications, and length of hospital stay.
The purpose of this study is to evaluate the safety and efficacy of ramucirumab in participants with hepatocellular carcinoma (HCC) and elevated baseline alpha-fetoprotein. Participants will be randomized to ramucirumab or placebo in a 2:1 ratio (Main Global Cohort and China Maximized Extended Enrollment [MEE] Cohort). Participants may also receive ramucirumab if eligible to be enrolled in Open-Label Expansion (OLE) Cohort.