View clinical trials related to Liver Cirrhosis.
Filter by:This phase II trial tests epigallocatechin gallate (EGCG) for its efficacy and safety in preventing development of hepatocellular carcinoma (HCC) in patients with liver cirrhosis.
The goal of this observational study is to learn about the changes in coagulation factor VIII and IX levels in patients undergoing liver transplantation to help guide future management of coagulation factor replacement in patients with hemophilia and liver disease. The question we aim to answer is: should the recommendations for factor replacement in patients with hereditary bleeding disorders be altered in the setting of end stage liver cirrhosis? Participants will be asked to provide two blood samples, one at the beginning of their liver transplant, and one after their liver transplant.
This is a single-site prospective study to describe efficacy endpoints of single agent memantine in patients with unresectable, locally advanced, or metastatic HCC otherwise not deemed candidates for intensive systemic therapy. In addition to the primary endpoint and multiple secondary efficacy endpoints, we will describe changes in quality of life on treatment over time.
Conduct a community intervention study that will 1) validate a screening approach to identify patients at risk for advanced NAFLD in the obese or T2DM population, and 2) test whether semaglutide treatment is effective for the management of significant fibrosis due to NAFLD in high-risk patients.
The goal of this pilot, randomized, single-blind clinical trial is to estimate the effect size of a high and low mean arterial pressure (MAP)-target algorithm among cirrhosis patients hospitalized with acute kidney injury. The main aims to answer are: • Does an algorithm that has low (<80 mmHg) and high (≥80) MAP-targets lead to significant differences in mean arterial pressure? • Are there any serious adverse events (e.g., ischemia) in a high blood pressure algorithm as compared to a low blood pressure algorithm? • Are there any differences in the incidence of AKI reversal in the high v. low MAP-target groups? Participants will be: 1) Randomized to a clinical algorithm that will either target a low (<80 mmHg) or high (≥80 mmHg) MAP. 2) Depending on their group, investigators will titrate commonly used medications to a specific MAP target. Researchers will compare the high and low MAP-target groups to see if these algorithms lead to significant changes in MAP, if they have any impact on AKI reversal, and if there are any adverse events in the high MAP-target group.
The goal of this observational study is to test the efficacy of glyphozines (SGLT-2 inhibitors) in the control of ascites in patients with liver cirrhosis in class A6-B9, according to the Child-Pugh classification, and type 2 diabetes mellitus. The investigators will compare patients belonging to the intervention group (A), who will be given SGLT-2 inhibitors according to diabetology indications in addition to standard medical therapy for 6, with patients of the control group (B), who will, instead, continue with the standard medical therapy for 6 months. Standard medical therapy will include dietary sodium restriction, treatment with diuretics (furosemide and spironolactone), hypoglycemic therapy (metformin, insulin, or both) and other supportive care. The main questions aims of this study are: 1. Compare the efficacy and safety of a therapeutic approach based on the administration of SGLT-2 inhibitors in addition to optimal medical therapy (MRA and loop diuretic) compared to traditional diuretic therapy only, in cirrhotic patients with saline retention and diabetes. 2. Demonstrate better control of the glycemic profile in cirrhotic diabetic patients using SGLT-2 inhibitors.
The goal of this clinical trial is to evaluate whether early integration of palliative care in the care of hospitalized patients with advanced liver disease (AdvLD) can improve patients' quality of life, physical symptoms, mood, and serious illness communication. Palliative care is a medical specialty focused on lessening (or "palliating") symptoms and assisting in coping with serious illness.
Detection of cholangiocellular and hepatocellular carcinomas can be challenging in both radiologic imaging and during surgical resection. Therefore, radioactive seed-guided resection of these tumors, analogously to breast cancer, could be an interesting approach. The investigators present two cases of cirrhotic patients where this method of tumor labelling was used.
This clinical trial is a Phase 1, multiple administration, dose-escalasion clinical trial of human umbilical cord-derived mesenchymal stem cells for the treatment of decompensated cirrhosis. The primary objective of this study is to assess the safety of intravenous infusion of human umbilical cord-derived mesenchymal stem cells in patients with decompensated cirrhosis.
This study aims to investigate the effects of 12 weeks of resistance or endurance exercise on patients with cirrhosis. Cirrhotic patients are prone to muscle loss (sarcopenia) and ammonia build up due to liver dysfunction. The liver which in healthy patients is able to process ammonia through ureagenesis is unable to do so in cirrhosis and ammonia is taken up either by the brain causing confusion or the skeletal muscle causing muscle loss or sarcopenia. Primary sarcopenia occurs in older individuals and can be mitigated by exercise. Secondary sarcopenia occurs in response to disease such as cancer, chronic kidney disease, multiple sclerosis, and cirrhosis of all etiologies. Resistance exercise is an excellent stimulator for muscle protein synthesis and is widely used to build muscle mass and strength but has little benefit to cardiovascular function. Endurance exercise has shown to be safe in cirrhosis however there is no set prescription for cirrhosis as there is for other disease. Endurance exercise is known to promote improved cardiovascular health, improve fatigue, and generates less ammonia build up than resistance exercise. In patients with low muscle mass it is possible that endurance exercise alone will be enough to improve muscle mass. There have been few studies on exercise and cirrhosis, those that exist have shown benefits with endurance exercise. However there are even more limited studies on resistance exercise and few to no studies on the molecular mechanisms behind exercise in cirrhosis. Study visits are described fully in the protocol and consent form. After passing a screening visit patients will undergo a maximal exercise/fitness test (pre-baseline test) and other body composition measurements. After the screening and pre-baseline visit randomization will occur (2:2:1 endurance, resistance, or SOC) arrangements will be made to have the appropriate exercise equipment given to patients. Once the exercise equipment has arrived a baseline study visit will occur. After the baseline visit the endurance exercise group will cycle 3 days per week for 60 minutes under the supervision of the study team. The resistance exercise group will perform a whole body resistance workout 2 days per week for approximately 60 minutes under the supervision of a study team member. Patients in all groups will have the fitness test repeated at weeks 4, 8 and 12. After the 12 weeks of exercise the baseline visits will be repeated and after 2 weeks patients will complete one final fitness test to examine the effects of de-training.