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In vivo tracking of 'color-coded' effector, natural and induced regulatory T cells in the allograft response.


ABSTRACT: Here we present methods to longitudinally track islet allograft-infiltrating T cells in live mice by endoscopic confocal microscopy and to analyze circulating T cells by in vivo flow cytometry. We developed a new reporter mouse whose T cell subsets express distinct, 'color-coded' proteins enabling in vivo detection and identification of effector T cells (T(eff) cells) and discrimination between natural and induced regulatory T cells (nT(reg) and iT(reg) cells). Using these tools, we observed marked differences in the T cell response in recipients receiving tolerance-inducing therapy (CD154-specific monoclonal antibody plus rapamycin) compared to untreated controls. These results establish real-time cell tracking as a powerful means to probe the dynamic cellular interplay mediating immunologic rejection or transplant tolerance.

SUBMITTER: Fan Z 

PROVIDER: S-EPMC2894571 | biostudies-literature | 2010 Jun

REPOSITORIES: biostudies-literature

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In vivo tracking of 'color-coded' effector, natural and induced regulatory T cells in the allograft response.

Fan Zhigang Z   Spencer Joel A JA   Lu Yan Y   Pitsillides Costas M CM   Singh Gurbakhshish G   Kim Pilhan P   Yun Seok H SH   Toxavidis Vasilis V   Strom Terry B TB   Lin Charles P CP   Koulmanda Maria M  

Nature medicine 20100523 6


Here we present methods to longitudinally track islet allograft-infiltrating T cells in live mice by endoscopic confocal microscopy and to analyze circulating T cells by in vivo flow cytometry. We developed a new reporter mouse whose T cell subsets express distinct, 'color-coded' proteins enabling in vivo detection and identification of effector T cells (T(eff) cells) and discrimination between natural and induced regulatory T cells (nT(reg) and iT(reg) cells). Using these tools, we observed mar  ...[more]

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