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EBV clinical trials

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NCT ID: NCT02080416 Terminated - Gastric Cancer Clinical Trials

Nelfinavir for the Treatment of Gammaherpesvirus-Related Tumors

Start date: July 2014
Phase: Phase 0
Study type: Interventional

The goals of this study is to determine if nelfinavir can target Epstein-Barr virus (EBV) and Kaposi sarcoma-associated herpesvirus (KSHV) in patients with certain cancers.

NCT ID: NCT02007356 Recruiting - Clinical trials for Cytomegalovirus Infections

A Study to Assess Safety and Feasibility of Direct Infusions of Donor-derived Virus-specific T-cells in Recipients of Hematopoietic Stem Cell Transplantation With Post-transplant Viral Infections Using the Cytokine Capture System®

CCS
Start date: December 2014
Phase: Phase 2
Study type: Interventional

To assess the feasibility of donor-derived interferon (IFN)-γ positive select-ed virus-specific T-cells using the cytokine capture system® (CCS) and the safety of subsequent infusion in recipients of hematopoietic stem cell transplantation (HSCT) with treatment refractory post-transplant viral infections. The CCS has already been successfully used in clinical studies in Germany and United Kingdom (UK).

NCT ID: NCT01948180 Terminated - EBV Clinical Trials

Cellular Immunotherapy Treatment Antigen-Directed for EBV Lymphoma

CITADEL
Start date: September 2014
Phase: Phase 2
Study type: Interventional

To investigate the efficacy of autologous EBV-specific T-cells for the treatment of patients with aggressive EBV positive extranodal NK/T-cell lymphoma

NCT ID: NCT01945814 Active, not recruiting - CMV Clinical Trials

Allogeneic Multivirus - Directed Cytotoxic T Lymphocytes (CTL)

Start date: February 2014
Phase: Phase 1
Study type: Interventional

In this study, investigators are trying to see if infusion of T cells (called CTLs) will prevent or treat cytomegalovirus (CMV), Epstein Barr Virus (EBV) and adenovirus (AdV) reactivation or infection. Patients with blood cell cancer, other blood disease or a genetic disease may receive a stem cell transplant. After receiving transplant, they are at risk of infections until a new immune system to fight infections grows from the cord blood cells. In this study, investigators are trying to give special cells called T cells. These cells will try to fight viruses that can cause infection. Investigators will test to see if blood cells from donor that have been grown in a special way, can prevent patients from getting an infection. EBV, AdV and CMV are viruses that can cause serious life-threatening infections in patients who have weak immune systems after transplant. T lymphocytes can kill viral cells but normally there are not enough of them to kill all the virus infected cells after transplant. Some researcher have taken T cells from a person's blood, grown more of them in the laboratory and then given them back to the person during a viral infection after a bone marrow transplant. Some of these studies have shown a positive therapeutic effect in patients receiving the CTLs after a viral infection in the post-transplant period. Investigators will grow these cells from donor in the laboratory in a way that will train them to recognize and remove viruses when the T cells are given after a transplant. Since most donors have previously been infected with EBV, CMV, and adenovirus, investigators are able to use their T cells that remember these viruses to grow the CTLs. However, they now also have a new way of growing CTLs from donors who have not been infected with CMV.

NCT ID: NCT01923766 Completed - CMV Clinical Trials

Cytotoxic T Cells to Prevent Virus Infections

Start date: September 2013
Phase: Phase 1
Study type: Interventional

In this study, investigators are trying to see if infusion of "m-CTLs" will prevent or treat cytomegalovirus (CMV), Epstein Barr Virus (EBV) and adenovirus (AdV) reactivation or infection after cord blood transplant. Patients with blood cell cancer, other blood disease or a genetic disease may receive a cord blood transplant (UCBT) from an unrelated donor. After receiving a cord blood transplant, they are at risk of infections until a new immune system to fight infections grows from the cord blood cells. In this study, investigators are trying to give special cells from the cord blood called T cells. These cells will try to fight viruses that can cause infection. Investigators will test to see if blood cells from donor that have been grown in a special way, can prevent patients from getting an infection. EBV, AdV and CMV are viruses that can cause serious life-threatening infections in patients who have weak immune systems after transplant. T lymphocytes can kill viral cells but normally there are not enough of them to kill all the virus infected cells after transplant. Some researcher have taken T cells from a person's blood, grown more of them in the laboratory and then given them back to the person during a viral infection after a bone marrow transplant. Some of these studies have shown a positive therapeutic effect in patients receiving the CTLs (specially trained T cells) after a viral infection in the post-transplant period. In this study we are trying to prevent or treat viral infections by given the CTLs soon after getting the umbilical cord blood transplant. With this study, investigators want to see if they can use a kind of white blood cell called T cells to prevent or treat AdV, EBV and CMV infection. Investigators will grow these T cells from the cord blood before transplant. These cells have been trained to attack adenovirus/EBV/CMV- infected cells and are called multivirus-specific cytotoxic (killer) T-cells or "m-CTL." Investigators would plan to give patients one dose of m-CTL any time from 30 to 364 days after your transplant. They have used T cells made in this way from the blood of donors to prevent infections in patients who are getting a bone marrow or blood stem cell transplant but this will be the first time investigators make them from cord blood.

NCT ID: NCT01011712 Recruiting - HPV Clinical Trials

The Natural History of Severe Viral Infections and Characterization of Immune Defects in Patients Without Known Immunocompromise

Start date: October 1, 2009
Phase:
Study type: Observational

Background: - Infections caused by viruses are common causes of illnesses: the common cold, many ear infections, sore throats, chicken pox, and the flu are caused by different viruses. Usually, these illnesses last only few days or, at most, a few weeks. Some virus infections like influenza are cleared from the body, and others such as the chicken pox virus remain in the body in an inactive state. However, some people may become quite ill when they are infected with a particular virus, possibly because part of their immune system does not respond properly to fight the virus. - Researchers have discovered some reasons why a person may not be able to clear an infection caused by a virus. Some persons have changes in the genes that involve the immune system that result in the inability to properly control infection with a particular virus. Identifying changes in genes that involve the immune system should help scientists better understand how the immune system works to protect people from infection and may help develop new therapies. Objectives: - To study possible immune defects that may be linked to a particular severe viral infection. - To determine if identified immune defects are genetic in origin. Eligibility: - Individuals of any age who have or have had a diagnosis of a virus infection that physicians consider to be unusually severe, prolonged, or difficult to treat. - Relatives of the participants with a severe viral infection may also participate in the study. We will use their blood and/or skin specimens to try to determine if identified immune defects are hereditary. Design: - Prior to the study, the participant's doctor will give researchers the details of the infection, along with medical records for review. Eligible participants will be invited to the NIH Clinical Center for a full evaluation as an outpatient or inpatient. - At the Clinical Center, participants will be treated with the best available therapy for the particular viral infection, and researchers will monitor how the infection responds to the treatment. - Researchers will take intermittent blood samples and conduct other tests (such as skin biopsies) to evaluate the immune system. - During and after the illness, researchers will conduct follow-up visits to determine the course of infection and response to therapy.