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PMID: 15036237 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S. Review

Regulatory T cells generated ex vivo as an approach for the therapy of autoimmune disease.

Seminars in immunology ·Vol. 16 ·No. 2 ·2004-04-00 ·Pages 135-43

Horwitz DA, Zheng SG, Gray JD, Wang JH, Ohtsuka K, Yamagiwa S

Abstract

Regulatory T cells control the reactivity of potentially harmful, self-reactive T cells and prevent autoimmune diseases. Significant progress has been made in the identification, derivation, and mechanism of action of T regulatory cells, previously called suppressor T cells. Heterogeneous T regulatory subsets can be grouped into naturally occurring and those induced in the periphery. Here, we consider whether we can harness T regulatory cells to function as a therapeutic agent for patients with established autoimmune diseases. Since the principal function of thymus-derived, natural CD4+CD25+ cells is to prevent autoimmunity, this subset would be an obvious choice. Besides their contact-dependent, cytokine-independent mechanism of action, they can also induce other CD4+ cells to become suppressor cells. However, only few natural CD4+CD25+ cells circulate in human peripheral blood. Alternatively, one can use IL-2 and TGF-beta to generate large numbers of CD4+CD25+ regulatory T cells ex vivo from naive T cells. These cells have the phenotypic and functional properties similar to natural CD4+CD25+ cells, including the capacity to induce CD4+CD25- cells to develop suppressive activity. These natural-like CD4+CD25+ regulatory T cells are the product of separate effects of IL-2 and TGF-beta on both natural CD4+CD25+ and CD4+CD25- cells. The ability of natural-like CD4+CD25+ cells to induce other CD4+CD25- cells to develop suppressive activity is both contact-dependent and cytokine-dependent. Thus, the effects of IL-2 and TGF-beta on both natural CD4+CD25+ cells and CD4+CD25- cells may trigger a continuous loop which results in the renewal of antigen-specific CD4+ regulatory T cells. These studies suggest that the adoptive transfer of CD4+ T regulatory cells generated ex vivo with IL-2 and TGF-beta as a treatment for autoimmune diseases may have sustained, long-term beneficial effects.

MeSH Terms
Adoptive Transfer/adverse effects,methods Animals Autoimmune Diseases/immunology,therapy CD4-Positive T-Lymphocytes/drug effects,immunology,transplantation CD8-Positive T-Lymphocytes/drug effects,immunology,transplantation Cell Communication/drug effects,immunology,physiology Cell Differentiation/drug effects,immunology Cell Division/drug effects,immunology Graft Rejection/therapy Graft vs Host Disease/therapy Humans Interleukin-10/immunology,physiology Interleukin-2/pharmacology,physiology Mitogens/pharmacology Models, Immunological Receptors, Interleukin-2/immunology T-Lymphocytes/drug effects,immunology,transplantation Transforming Growth Factor beta/immunology,pharmacology,physiology
Chemicals
Interleukin-2 Mitogens Receptors, Interleukin-2 Transforming Growth Factor beta Interleukin-10
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Horwitz David A
The Division of Rheumatology and Immunology, Department of Medicine, Keck School of Medicine of the University of Southern California, 2011 Zonal Avenue, HMR 711, Los Angeles, CA 90033, USA. [email protected]
Zheng Song Guo
Gray J Dixon
Wang Ju Hua
Ohtsuka Kazuo
Yamagiwa Satoshi
Article Info
Journal
Seminars in immunology
Abbr.
Semin Immunol
ISSN
1044-5323
Published
2004-04-00
Pages
135-43
Language
English
Region
England
NLM ID
9009458
Subset
IM
Grants
NIAID NIH HHS · AI 41768 · United States
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