Literature DB >> 18523254

Central memory CD8+ T cells appear to have a shorter lifespan and reduced abundance as a function of HIV disease progression.

Kristin Ladell1, Marc K Hellerstein, Denise Cesar, Robert Busch, Drina Boban, Joseph M McCune.   

Abstract

Progressive HIV disease has been associated with loss of memory T cell responses to Ag. To better characterize and quantify long-lived memory T cells in vivo, we have refined an in vivo labeling technique to study the kinetics of phenotypically distinct, low-frequency CD8(+) T cell subpopulations in humans. HIV-negative subjects and antiretroviral-untreated HIV-infected subjects in varying stages of HIV disease were studied. After labeling the DNA of dividing cells with deuterated water ((2)H(2)O), (2)H-label incorporation and die-away kinetics were quantified using a highly sensitive FACS/mass spectrometric method. Two different populations of long-lived memory CD8(+) T cells were identified in HIV-negative subjects: CD8(+)CD45RA(-)CCR7(+)CD28(+) central memory (T(CM)) cells expressing IL-7Ralpha and CD8(+)CD45RA(+)CCR7(-)CD28(-) RA effector memory (T(EMRA)) cells expressing CD57. In pilot studies in HIV-infected subjects, T(CM) cells appeared to have a shorter half-life and reduced abundance, particularly in those with high viral loads; T(EMRA) cells, by contrast, retained a long half-life and accumulated in the face of progressive HIV disease. These data are consistent with the hypothesis that IL-7Ralpha(+) T(CM) cells represent true memory CD8(+) T cells, the loss of which may be responsible in part for the progressive loss of T cell memory function during progressive HIV infection.

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Year:  2008        PMID: 18523254      PMCID: PMC2562545          DOI: 10.4049/jimmunol.180.12.7907

Source DB:  PubMed          Journal:  J Immunol        ISSN: 0022-1767            Impact factor:   5.422


  61 in total

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Review 2.  The dynamics of CD4+ T-cell depletion in HIV disease.

Authors:  J M McCune
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Journal:  Nature       Date:  2001-03-01       Impact factor: 49.962

Review 4.  Arrested differentiation, the self-renewing memory lymphocyte, and vaccination.

Authors:  D T Fearon; P Manders; S D Wagner
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Authors:  K S Schluns; W C Kieper; S C Jameson; L Lefrançois
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  36 in total

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2.  Stable Phenotypic Changes of the Host T Cells Are Essential to the Long-Term Stability of Latent HIV-1 Infection.

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Review 4.  T-cell exhaustion: characteristics, causes and conversion.

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5.  In vivo kinetics and nonradioactive imaging of rapidly proliferating cells in graft-versus-host disease.

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6.  Immunologic risk factors for early mortality after starting antiretroviral therapy in HIV-infected Zambian children.

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Review 7.  Immune reconstitution and vaccination outcome in HIV-1 infected children: present knowledge and future directions.

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8.  Immunologic and virologic events in early HIV infection predict subsequent rate of progression.

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Review 9.  Shaping successful and unsuccessful CD8 T cell responses following infection.

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10.  Quantifying T lymphocyte turnover.

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