View clinical trials related to Virus Diseases.
Filter by:The purpose of this study is to determine the absolute bioavailability of 150 mg oral dose of BMS-791325 relative to 100 µg IV infusion of [13C]-BMS-791325.
Patients enrolled on this study will have received a stem cell transplant. After a transplant, while the immune system grows back the patient is at risk for infection. Some viruses can stay in the body for life and if the immune system is weakened, like after a transplant, they can cause life threatening infections. Patients enrolled on this study will have had an infection with one or more of the following viruses - Epstein Barr virus (EBV), cytomegalovirus (CMV), BK virus, JC virus, adenovirus or HHV6 (Human Herpes Virus 6). Investigators want to see if they can use a kind of white blood cell called T cells to treat infections of these viruses after a transplant. Investigators have observed in other studies that treatment with specially trained T cells has been successful when the cells are made from the transplant donor. However as it takes 1-2 months to make the cells, that approach is not practical when a patient already has an infection. Investigators have now generated multivirus-specific T cells (VSTs) from the blood of healthy donors and created a bank of these cells. Investigators have previously successfully used frozen multivirus-specific T cells from healthy donors to treat virus infections after bone marrow transplant and now have improved the production method to make it safer and target more viruses. In this study, investigators want to find out if they can use these banked VSTs to fight infections caused by the viruses mentioned above.
The aim of the present trial is to evaluate whether the conversion of immunosuppression from tacrolimus to cyclosporine A induces changes in (i) hepatitis C-virus load, (ii) parameters of hepatic function and (iii) parameters of glucose tolerance in hepatitis C-positive renal transplant recipients.
Influenza poses a heavy burden to our health service. The WHO estimates that seasonal influenza causes 250,000-500,000 deaths worldwide each year. Various strategies including intradermal vaccination and new vaccine adjuvants have been shown to improve immunogenicity. Recently, imiquimod, a synthetic Toll-like receptor 7 (TLR7) agonist useful for the treatment of DNA virus infection, have been shown to improve vaccine immunogenicity against influenza virus in mouse model. The objective of this prospective double-blind randomized controlled trial is to evaluate the effect and safety of topical treatment with imiquimod immediately before intradermal influenza vaccination in healthy young adults.
This study is designed to compare the antiviral effect of ALS-008176 compared to a placebo control in the respiratory syncytial virus challenge model.
The purpose of this study is: • To obtain additional data on therapeutic efficacy of Anaferon for children in the treatment of influenza and acute respiratory viral infections in children
The primary aim of the project is to increase human papillomavirus (HPV) vaccine receipt rates among low-income, ethnic minority adolescents (girls and boys 11-17 years of age) in Los Angeles County. We will accomplish this goal by implementing and rigorously evaluating interventions in multiple venues that serve our target population, including the Los Angeles County Department of Public Health (LACDPH) and two large Federally Qualified Health Centers (FQHCs). Our hypotheses are: Primary hypothesis: 1. The intervention group will have a higher rate of HPV vaccine initiation at follow-up compared to the control group. Secondary hypothesis: 2. The intervention group will have higher vaccine completion rates (3 doses) at follow-up compared to the control group.
The objective is to evaluate the safety and tolerability of a single-ascending oral dose of UV-4B in healthy subjects and to determine pharmacokinetic parameters describing absorption and elimination following a single dose of UV-4B in healthy subjects.
The purpose of the study was to assess the efficacy and safety of telbivudine at a dose of 20 mg/kg up to a maximum of 600 mg q.d. in compensated pediatric HBeAg-positive and negative CHB patients aged 2 to <18 years with the indication of antiviral CHB treatment. This study was part of the commitments of the pediatric development plan for telbivudine in Europe and US.
In this research study, the investigators want to learn more about the use of donor-derived viral specific T-cells (VSTs) to treat viral infections that occur after allogeneic stem cell transplant. A viral specific T cell is a T lymphocyte (a type of white blood cell) that kills cells that are infected (particularly with viruses). Allogeneic means the stem cells come from another person. These VSTs are cells specially designed to fight the virus infections that can happen after a bone marrow transplant. The investigators are asking people who have undergone or will undergo an allogeneic stem cell transplant to enroll in this research study, because viral infections are a common problem after allogeneic stem cell transplant and can cause significant complications including death. Stem cell transplant reduces a person's ability to fight infections. There is an increased risk of getting new viral infections or reactivation of viral infections that the patient has had in the past, such as cytomegalovirus (CMV), Epstein-Barr virus (EBV), adenovirus (ADV), BK virus (BKV), and JC virus. There are anti-viral medicines available to treat these infections, though not all patients will respond to the standard treatments. Moreover, treatment of viral infections is expensive and time consuming, with families often administering prolonged treatments with intravenous anti-viral medications, or patients requiring prolonged admissions to the hospital. The medicines can also have side effects like damage to the kidneys or reduction in the blood counts, so in this study the investigators are trying to find an easier way to treat these infections.