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Microchimerism maintains deletion of the donor cell–specific CD8+ T cell repertoire
Weldy V. Bonilla, Markus B. Geuking, Peter Aichele, Burkhard Ludewig, Hans Hengartner, Rolf M. Zinkernagel
Weldy V. Bonilla, Markus B. Geuking, Peter Aichele, Burkhard Ludewig, Hans Hengartner, Rolf M. Zinkernagel
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Research Article Immunology

Microchimerism maintains deletion of the donor cell–specific CD8+ T cell repertoire

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Abstract

Rare cases of stable allograft acceptance after discontinuation of immunosuppression are often accompanied by macrochimerism (> 1% donor cells in blood) or microchimerism (< 1% donor cells in blood). Here, we have investigated whether persistence of donor cells is the cause or the consequence of long-lasting CTL unresponsiveness. We found that engraftment of splenocytes bearing a single foreign MHC class I–restricted epitope resulted in lifelong donor cell microchimerism and specific CTL unresponsiveness. This status was reversed in a strictly time- and thymus-dependent fashion when the engrafted cells were experimentally removed. The results presented herein show that microchimerism actively maintains CTL unresponsiveness toward a minor histocompatibility antigen by deleting the specific repertoire and thus excluding dominant, T cell extrinsic mechanisms of CTL unresponsiveness independent of systemically persisting donor cell antigen.

Authors

Weldy V. Bonilla, Markus B. Geuking, Peter Aichele, Burkhard Ludewig, Hans Hengartner, Rolf M. Zinkernagel

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Figure 1

Long-lasting chimerism after adoptive transfer of H8 splenocytes and its detection.

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Long-lasting chimerism after adoptive transfer of H8 splenocytes and its...
(A) Sex-matched, CFSE-labeled splenocytes from H8 transgenic (filled circles) or control B6 mice (open circles) were transferred to B6 recipient mice. CFSE-positive cells in the recipient’s blood were quantified at the indicated time points by flow cytometry. Symbols represent the mean ± SD of 4–16 mice per group and time point. (B) B6 splenocytes (3.3 × 104) were mixed with titrated numbers of H8 splenocytes as indicated. DNA was isolated from the different cell mixtures and used as template for H8-specific PCR analysis. (C) Blood samples were collected at the indicated time points to measure CFSE-positive cells by flow cytometry and to extract DNA. Two-fold serial dilutions of isolated DNA (in wild-type B6 DNA) were performed and used as templates for H8-specific PCR analysis. One representative experiment of 3 is shown.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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