Publications by authors named "J Vingerhoed"

Studies in humans have provided evidence that CD8(+) T cells exhibit distinct phenotypical and functional properties dependent on virus specificity. It is not known how these T-cell phenotypes develop over the course of infection. Dynamics and properties of T cells specific for human immunodeficiency virus (HIV), cytomegalovirus (CMV), and Epstein-Barr virus (EBV) in HIV infection were investigated in relation to viral load.

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Previously, we established a murine model, that involves the engraftment of fully allogeneic T cell depleted donor bone marrow cells in sublethally irradiated and single dose anti-CD3 treated recipient mice. These mice developed permanent stable multilineage mixed chimerism and donor-specific tolerance without graft-versus-host disease. Recently, we have shown that donor-specific tolerance is not induced and/or maintained by clonal anergy, neither by a Th1/Th2 shift, nor by suppressor or other regulatory processes.

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In approximately half of human immunodeficiency virus (HIV) type 1-infected individuals, the development of CXC chemokine receptor 4-using, syncytium-inducing (SI) virus variants precedes a rapid progression to acquired immunodeficiency syndrome (AIDS). In other individuals, only CC chemokine receptor 5-using (R5), non-SI (NSI) virus variants are present throughout infection. These individuals may be either long-term survivors (LTSs) or rapid progressors.

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The presence of only non-syncytium-inducing beta-chemokine receptor 5-restricted (R5/NSI) human immunodeficiency virus type 1 (HIV-1) in an infected individual has been associated with long-term asymptomatic survival. However, the majority of R5/NSI HIV-1-infected individuals do progress to AIDS. Here, we compared the replicative capacity and cytopathicity of R5/NSI HIV-1 variants that were isolated early and late in the clinical course from 7 long-term asymptomatic individuals and 7 individuals with progressive HIV-1 infection.

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