View clinical trials related to Hepatitis.
Filter by:A total of 2000 chronic hepatitis B (CHB) patients with liver biopsy performed at least 1 year after antiviral therapy are enrolled. All the patients will receive original antiviral treatment for the following 10 years. Patients will be assessed at baseline and at every six months for blood count, liver function test, alpha fetoprotein (AFP), prothrombin time, liver ultrasonography, liver stiffness measurement (LSM), Hepatitis B virus (HBV) DNA and HBV serological markers. HBV-related endpoint events, including cirrhosis decompensations (ascites, esophageal variceal bleeding and hepatic encephalopathy), hepatocellular carcinoma (HCC), liver transplantation and liver-related death, will be collected during follow-up.
A community-based "test and treat" intervention integrating point-of-care HCV RNA testing, non-invasive liver disease assessment and linkage to care will lead to a reduction in HCV prevalence among people attending Aboriginal health services.
The main risk factor for development of hepatocellular carcinoma (HCC) is cirrhosis of any etiology, with an annual incidence risk between 1-6%; currently the leading cause of death in patients with cirrhosis and the 2nd cause of death by cancer worldwide. Chronic hepatitis C (HCV) is the first single cause associated to cirrhosis and HCC in the Western world. With the advent of new direct antiviral agents (DAA) of chronic HCV infection, virological cure generally exceeds 90% of the cases. Previous studies have shown that the incidence of HCC is lower in patients with virologic cure after treatment with pegINF schemes. However, recently published data, open up more controversy regarding the incidence of HCC after virologic cure with DAA. An increasing incidence of HCC after virologic cure in patients treated with DAA has been observed, opening a paradox yet unexplained. This project proposes to answer the following clinical research question: in patients with HCV cirrhosis treated with DAA, is there a change in the incidence of hepatocellular carcinoma? To answer this question a prospective longitudinal cohort study of patients with Child Pugh A-B cirrhosis will be held at 3 years minimum follow-up. A minimum of 210 patients will be included with clinical or histological or non-invasive diagnosis of cirrhosis Child Pugh A or B, with HCV treated with DAA and without hepatocellular carcinoma at the time of enrollment. From this cohort, patients who develop HCC during follow-up will be identified. Routine screening will be done through ultrasound every 6 months in all subjects enrolled and the diagnosis of HCC will be according to recommendations of European and American guidelines.
Alcoholic hepatitis (AH) is a florid presentation of alcoholic liver disease characterized by liver failure in the context of recent and heavy alcohol consumption. The condition carries a high fatality risk; patients with severe AH have a 30% mortality rate at 90 days after presentation. Currently there is no effective treatment for severe alcoholic hepatitis. Based on our current understanding of the disease pathogenesis IL-1 (interleukin) is a key mediator of hepatic inflammation responsible for metabolic disturbances, fibrogenesis stellate cell activation and consequently portal hypertension. Canakinumab is a licensed monoclonal antibody inhibitor of IL-1 and may consequently reverse the adverse effects of the cytokine in patients with this disorder. Therefore, the main objective of the ISAIAH trial is to explore the potential benefits of the IL-1β antibody, Canakinumab (solution for injection), in the treatment of alcoholic hepatitis. ISAIAH is a multicentre, double blind, randomized (1:1), placebo controlled trial. The trial will follow patients up for 90 days and will be conducted in centres across the United Kingdom. Twenty-six patients will be recruited to each arm of the trial: total 52 patients.
DCR-HBVS will be evaluated for safety and efficacy in healthy volunteers and chronic hepatitis B patients.
Due to the occult nature of hepatitis C virus (HCV), it is estimated that less than 5% of people with chronic hepatitis C (CHC) infection knowing their status. The major challenges are that awareness is lacking, reliable diagnostics and testing services are not sufficiently available, and laboratory capacity is weak. In the context of major tertiary hospitals, the well-functioning laboratories would ensure the high-quality HCV testing, which facilitate the identification of inpatients who are unaware of HCV infection. However, given the preliminary data, diagnostic rate of inpatients from non-infectious (non-ID) departments is disturbingly low. A recent study from a major hospital in Jilin province of China showed that 3.36% of inpatients were anti-HCV positive; however, HCV RNA confirmatory testing was not further performed in this study. From the retrospective cohort in non-ID departments of a tertiary hospital of Jiangsu during 2016 to 2017, only 25.9% (71/273) of patients with anti-HCV antibody (Ab) further had HCV RNA confirmatory test, while 40% (29/71) were identified as CHC. The previous data indicates that insufficient anti-HCV Ab testing and insufficient follow-up of patients with positive anti-HCV Ab from non-ID departments. Indeed, compared to hospitals in Western countries, the infectious department in Chinese hospitals are relative independent from non-ID departments, meanwhile the knowledge of HCV infection is relatively lacking for non-ID physicians. Therefore, an appropriate clinical pathway for integration and linkage of non-ID department and ID departments for diagnosis and care delivery of CHC patients is urgently needed. The investigator aim to establish a feasible clinical pathway and consensus guideline to enhance HCV testing surveillance with linkage to care in non-ID departments. Moreover, the participants with anti-HCV Ab also will be enrolled in the HCV prospective cohort, in which the intervention and clinical outcome of hepatitis will be longitudinally monitored in the future study.
The study is to guide clinical cure of peginterferon alfa-2a treatment in patients with chronic hepatitis B based on the detection of interferon gene mutation (IFNA2p.Ala120Thr) and interferon-stimulated genes (ISGs) detection gene spectrum.
This is a randomized, open-label, positive-control, dose-escalation Phase 1b trial in 60 patients with chronic HBV infection to determine the safety, preliminary efficacy, and pharmacokinetics (PK) of QL-007 after administration over 28 days of multiple oral doses in a fasted state at the following planned dose levels: 200, 400, and then 600 mg.
Hepatitis C virus (HCV) infection has become the leading fatal infectious disease in the United States. Approximately 75% of individuals who have been infected with HCV are chronically infected with the virus. Untreated chronic infection will lead to severe sequelae such as cirrhosis and hepatocellular carcinoma. Even though the availability of rapid HCV antibody (HCV Ab) screening assay and highly effective antiviral treatment, most people infected with HCV are not aware of the infection status. This gap mainly comes from the current gold standard confirmatory testing for chronic HCV infection, the Polymerase Chain Reaction (PCR)-based HCV RNA viral load assay which requires an experienced trained laboratory technician to perform relatively complicated PCR assay with a turn-around-time of 1 to 2 days (from provider's order to the test resulting). The investigators' rapid HCV Screening and Linkage to Care program has demonstrated that many patients in the investigators' emergency department (ED) are unaware of patient's chronic HCV infection status due to the barriers to receive the gold standard viral load testing. Recently, a novel Xpert HCV Viral Load (VL) Finger-stick (FS) [Xpert HCV VL FS] point-of-care (POC) test (Cepheid) has been developed. In an observational cohort in Australia, HCV RNA was detected in 40% of participants (85 of 210) enrolled at 3 drug treatment clinics and 1 homelessness service. Sensitivity of the Xpert HCV VL FS assay for HCV RNA quantification in samples collected by finger-stick was 100.0% (95% Confidence Interval (CI), 93.9%-100.0%) and specificity was 100.0% (95% CI, 96.6%-100.0%). The Xpert HCV VL FS test can accurately detect active infection from a finger-stick sample in 1 hour allowing single-visit HCV diagnosis. In this protocol, the investigators seek to determine the needs and acceptability of a novel POC HCV viral load testing assay among ED HCV Ab positive patients. For this project, the investigators will identify and enroll ED patients with HCV Ab positive but without HCV viral information. The investigators will conduct a randomized study to assign eligible and consented patients to either to POC Testing Group or Standard of Care (SOC) Group. All participants will take a short survey regarding HCV care and treatment. As part of the investigators' ED HCV Screening and Linkage to Care Program, all participants will receive the standard-of-care clinical laboratory-based HCV RNA viral load testing via whole blood (i.e. patient will receive blood drawn). This standard-of-care HCV viral load testing result will be provided to participant when it is available (usually 1-2 days later). Participants in the POC Testing Group will receive the novel POC HCV RNA viral load testing and the result of the novel test will be disclosed to the patients approximately within 2 hours of the testing. Linkage to care information after the ED visit will be compared between two groups. Finally, accuracy of this POC HCV RNA viral load testing in the acute care setting will be determined as compared to the standard-of-care clinical laboratory-based HCV RNA viral load testing. The investigators will also ask all of participants to grant permission to use the remnant blood specimens for an evaluation of future in-house HCV RNA viral load assay.
This study is designed to assess the safety, tolerability, pharmacokinetics (PK) and pharmacodynamics (PD) of single and multiple ascending doses in healthy volunteers (HV) and participants diagnosed with chronic hepatitis B (CHB).