Cargando…

Combination of IL-10 and IL-2 induces oligoclonal human CD4 T cell expansion during xenogeneic and allogeneic GVHD in humanized mice

IL-10 is a crucial anti-inflammatory cytokine which can also exert a seemingly divergent immunostimulatory effects under certain conditions. We found high levels of the cytokine in a xenogeneic GVHD model where NOD-scid IL2rγcnull (NSG) mice were transplanted with human PBMCs in presence of IL-2. Pr...

Descripción completa

Detalles Bibliográficos
Autores principales: Abraham, Sojan, Guo, Hua, Choi, Jang-gi, Ye, Chunting, Thomas, Midhun Ben, Ortega, Nora, Dwivedi, Alok, Manjunath, N., Yi, Guohua, Shankar, Premlata
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5382148/
https://www.ncbi.nlm.nih.gov/pubmed/28409183
http://dx.doi.org/10.1016/j.heliyon.2017.e00276
_version_ 1782520044548259840
author Abraham, Sojan
Guo, Hua
Choi, Jang-gi
Ye, Chunting
Thomas, Midhun Ben
Ortega, Nora
Dwivedi, Alok
Manjunath, N.
Yi, Guohua
Shankar, Premlata
author_facet Abraham, Sojan
Guo, Hua
Choi, Jang-gi
Ye, Chunting
Thomas, Midhun Ben
Ortega, Nora
Dwivedi, Alok
Manjunath, N.
Yi, Guohua
Shankar, Premlata
author_sort Abraham, Sojan
collection PubMed
description IL-10 is a crucial anti-inflammatory cytokine which can also exert a seemingly divergent immunostimulatory effects under certain conditions. We found high levels of the cytokine in a xenogeneic GVHD model where NOD-scid IL2rγcnull (NSG) mice were transplanted with human PBMCs in presence of IL-2. Presence of exogenous IL-10 altered the kinetics of IL-2 induced human T cell reconstitution in vivo, showing an initial delay, followed by rapid expansion. Further, compared to IL-2 alone, treatment with IL-2 in combination with IL-10 increased survival in most animals and completely protected ∼20% of mice from GVHD. Additionally, IL-2 induced expansion of both CD4(+) and CD8(+) xenoreactive T cells whereas a combination of IL-2 and IL-10 resulted in selective expansion of CD4(+) T cells only. TCR Vβ repertoire analysis of CD4(+) T cells showed that in contrast to IL-2 alone, simultaneous presence of both cytokines drastically reduced the Vβ repertoire of the expanded CD4(+) T cells. Highly restricted Vβ usage was also observed when the cytokine combination was tested in an allogeneic GVHD model where NOD-scid IL2rγc(null) mice expressing HLA-DR4 (NSG-DR4) were transplanted with purified CD4(+) T cells from HLA-DR4 negative donors. Taken together, our results demonstrate that IL-10 can profoundly modulate the subset composition and repertoire of responding T cells during GVHD.
format Online
Article
Text
id pubmed-5382148
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-53821482017-04-13 Combination of IL-10 and IL-2 induces oligoclonal human CD4 T cell expansion during xenogeneic and allogeneic GVHD in humanized mice Abraham, Sojan Guo, Hua Choi, Jang-gi Ye, Chunting Thomas, Midhun Ben Ortega, Nora Dwivedi, Alok Manjunath, N. Yi, Guohua Shankar, Premlata Heliyon Article IL-10 is a crucial anti-inflammatory cytokine which can also exert a seemingly divergent immunostimulatory effects under certain conditions. We found high levels of the cytokine in a xenogeneic GVHD model where NOD-scid IL2rγcnull (NSG) mice were transplanted with human PBMCs in presence of IL-2. Presence of exogenous IL-10 altered the kinetics of IL-2 induced human T cell reconstitution in vivo, showing an initial delay, followed by rapid expansion. Further, compared to IL-2 alone, treatment with IL-2 in combination with IL-10 increased survival in most animals and completely protected ∼20% of mice from GVHD. Additionally, IL-2 induced expansion of both CD4(+) and CD8(+) xenoreactive T cells whereas a combination of IL-2 and IL-10 resulted in selective expansion of CD4(+) T cells only. TCR Vβ repertoire analysis of CD4(+) T cells showed that in contrast to IL-2 alone, simultaneous presence of both cytokines drastically reduced the Vβ repertoire of the expanded CD4(+) T cells. Highly restricted Vβ usage was also observed when the cytokine combination was tested in an allogeneic GVHD model where NOD-scid IL2rγc(null) mice expressing HLA-DR4 (NSG-DR4) were transplanted with purified CD4(+) T cells from HLA-DR4 negative donors. Taken together, our results demonstrate that IL-10 can profoundly modulate the subset composition and repertoire of responding T cells during GVHD. Elsevier 2017-04-04 /pmc/articles/PMC5382148/ /pubmed/28409183 http://dx.doi.org/10.1016/j.heliyon.2017.e00276 Text en © 2017 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Abraham, Sojan
Guo, Hua
Choi, Jang-gi
Ye, Chunting
Thomas, Midhun Ben
Ortega, Nora
Dwivedi, Alok
Manjunath, N.
Yi, Guohua
Shankar, Premlata
Combination of IL-10 and IL-2 induces oligoclonal human CD4 T cell expansion during xenogeneic and allogeneic GVHD in humanized mice
title Combination of IL-10 and IL-2 induces oligoclonal human CD4 T cell expansion during xenogeneic and allogeneic GVHD in humanized mice
title_full Combination of IL-10 and IL-2 induces oligoclonal human CD4 T cell expansion during xenogeneic and allogeneic GVHD in humanized mice
title_fullStr Combination of IL-10 and IL-2 induces oligoclonal human CD4 T cell expansion during xenogeneic and allogeneic GVHD in humanized mice
title_full_unstemmed Combination of IL-10 and IL-2 induces oligoclonal human CD4 T cell expansion during xenogeneic and allogeneic GVHD in humanized mice
title_short Combination of IL-10 and IL-2 induces oligoclonal human CD4 T cell expansion during xenogeneic and allogeneic GVHD in humanized mice
title_sort combination of il-10 and il-2 induces oligoclonal human cd4 t cell expansion during xenogeneic and allogeneic gvhd in humanized mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5382148/
https://www.ncbi.nlm.nih.gov/pubmed/28409183
http://dx.doi.org/10.1016/j.heliyon.2017.e00276
work_keys_str_mv AT abrahamsojan combinationofil10andil2inducesoligoclonalhumancd4tcellexpansionduringxenogeneicandallogeneicgvhdinhumanizedmice
AT guohua combinationofil10andil2inducesoligoclonalhumancd4tcellexpansionduringxenogeneicandallogeneicgvhdinhumanizedmice
AT choijanggi combinationofil10andil2inducesoligoclonalhumancd4tcellexpansionduringxenogeneicandallogeneicgvhdinhumanizedmice
AT yechunting combinationofil10andil2inducesoligoclonalhumancd4tcellexpansionduringxenogeneicandallogeneicgvhdinhumanizedmice
AT thomasmidhunben combinationofil10andil2inducesoligoclonalhumancd4tcellexpansionduringxenogeneicandallogeneicgvhdinhumanizedmice
AT orteganora combinationofil10andil2inducesoligoclonalhumancd4tcellexpansionduringxenogeneicandallogeneicgvhdinhumanizedmice
AT dwivedialok combinationofil10andil2inducesoligoclonalhumancd4tcellexpansionduringxenogeneicandallogeneicgvhdinhumanizedmice
AT manjunathn combinationofil10andil2inducesoligoclonalhumancd4tcellexpansionduringxenogeneicandallogeneicgvhdinhumanizedmice
AT yiguohua combinationofil10andil2inducesoligoclonalhumancd4tcellexpansionduringxenogeneicandallogeneicgvhdinhumanizedmice
AT shankarpremlata combinationofil10andil2inducesoligoclonalhumancd4tcellexpansionduringxenogeneicandallogeneicgvhdinhumanizedmice