A CD4+T-cell subset inhibits antigen-specific T-cell responses and prevents colitis
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作者:
Hervé Groux
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机构:DNAX Research Institute of Molecular and Cellular Biology,Human Immunology Department
Hervé Groux
Anne O'Garra
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机构:DNAX Research Institute of Molecular and Cellular Biology,Human Immunology Department
Anne O'Garra
Mike Bigler
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机构:DNAX Research Institute of Molecular and Cellular Biology,Human Immunology Department
Mike Bigler
Matthieu Rouleau
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机构:DNAX Research Institute of Molecular and Cellular Biology,Human Immunology Department
Matthieu Rouleau
Svetlana Antonenko
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机构:DNAX Research Institute of Molecular and Cellular Biology,Human Immunology Department
Svetlana Antonenko
Jan E. de Vries
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机构:DNAX Research Institute of Molecular and Cellular Biology,Human Immunology Department
Jan E. de Vries
Maria Grazia Roncarolo
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机构:DNAX Research Institute of Molecular and Cellular Biology,Human Immunology Department
Maria Grazia Roncarolo
机构:
[1] DNAX Research Institute of Molecular and Cellular Biology,Human Immunology Department
[2] Inc.,Department of Pediatrics, Regina Margherita Children's Hospital
[3] Novartis Research Institute,undefined
[4] University of Torino,undefined
来源:
Nature
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1997年
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389卷
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摘要:
Induction and maintenance of peripheral tolerance are important mechanisms to maintain the balance of the immune system. In addition to the deletion of T cells and their failure to respond in certain circumstances, active suppression mediated by T cells or T-cell factors has been proposed as a mechanism for maintaining peripheral tolerance1. However, the inability to isolate and clone regulatory T cells involved in antigen-specific inhibition of immune responses has made it difficult to understand the mechanisms underlying such active suppression. Here we show that chronic activation of both human and murine CD4+T cells in the presence of interleukin (IL)-10 gives rise to CD4+T-cell clones with low proliferative capacity, producing high levels of IL-10, low levels of IL-2 and no IL-4. These antigen-specific T-cell clones suppress the proliferation of CD4+T cells in response to antigen, and prevent colitis induced in SCID mice by pathogenic CD4+CD45RBhighsplenic T cells. Thus IL-10 drives the generation of a CD4+T-cell subset, designated T regulatory cells 1 (Tr1), which suppresses antigen-specific immune responses and actively downregulates a pathological immune response in vivo .