Cargando…

Chronic mTOR inhibition in mice with rapamycin alters T, B, myeloid, and innate lymphoid cells and gut flora and prolongs life of immune‐deficient mice

The mammalian (mechanistic) target of rapamycin (mTOR) regulates critical immune processes that remain incompletely defined. Interest in mTOR inhibitor drugs is heightened by recent demonstrations that the mTOR inhibitor rapamycin extends lifespan and healthspan in mice. Rapamycin or related analogu...

Descripción completa

Detalles Bibliográficos
Autores principales: Hurez, Vincent, Dao, Vinh, Liu, Aijie, Pandeswara, Srilakshmi, Gelfond, Jonathan, Sun, Lishi, Bergman, Molly, Orihuela, Carlos J., Galvan, Veronica, Padrón, Álvaro, Drerup, Justin, Liu, Yang, Hasty, Paul, Sharp, Zelton Dave, Curiel, Tyler J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4693453/
https://www.ncbi.nlm.nih.gov/pubmed/26315673
http://dx.doi.org/10.1111/acel.12380
_version_ 1782407392529481728
author Hurez, Vincent
Dao, Vinh
Liu, Aijie
Pandeswara, Srilakshmi
Gelfond, Jonathan
Sun, Lishi
Bergman, Molly
Orihuela, Carlos J.
Galvan, Veronica
Padrón, Álvaro
Drerup, Justin
Liu, Yang
Hasty, Paul
Sharp, Zelton Dave
Curiel, Tyler J.
author_facet Hurez, Vincent
Dao, Vinh
Liu, Aijie
Pandeswara, Srilakshmi
Gelfond, Jonathan
Sun, Lishi
Bergman, Molly
Orihuela, Carlos J.
Galvan, Veronica
Padrón, Álvaro
Drerup, Justin
Liu, Yang
Hasty, Paul
Sharp, Zelton Dave
Curiel, Tyler J.
author_sort Hurez, Vincent
collection PubMed
description The mammalian (mechanistic) target of rapamycin (mTOR) regulates critical immune processes that remain incompletely defined. Interest in mTOR inhibitor drugs is heightened by recent demonstrations that the mTOR inhibitor rapamycin extends lifespan and healthspan in mice. Rapamycin or related analogues (rapalogues) also mitigate age‐related debilities including increasing antigen‐specific immunity, improving vaccine responses in elderly humans, and treating cancers and autoimmunity, suggesting important new clinical applications. Nonetheless, immune toxicity concerns for long‐term mTOR inhibition, particularly immunosuppression, persist. Although mTOR is pivotal to fundamental, important immune pathways, little is reported on immune effects of mTOR inhibition in lifespan or healthspan extension, or with chronic mTOR inhibitor use. We comprehensively analyzed immune effects of rapamycin as used in lifespan extension studies. Gene expression profiling found many and novel changes in genes affecting differentiation, function, homeostasis, exhaustion, cell death, and inflammation in distinct T‐ and B‐lymphocyte and myeloid cell subpopulations. Immune functions relevant to aging and inflammation, and to cancer and infections, and innate lymphoid cell effects were validated in vitro and in vivo. Rapamycin markedly prolonged lifespan and healthspan in cancer‐ and infection‐prone mice supporting disease mitigation as a mechanism for mTOR suppression‐mediated longevity extension. It modestly altered gut metagenomes, and some metagenomic effects were linked to immune outcomes. Our data show novel mTOR inhibitor immune effects meriting further studies in relation to longevity and healthspan extension.
format Online
Article
Text
id pubmed-4693453
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-46934532016-01-04 Chronic mTOR inhibition in mice with rapamycin alters T, B, myeloid, and innate lymphoid cells and gut flora and prolongs life of immune‐deficient mice Hurez, Vincent Dao, Vinh Liu, Aijie Pandeswara, Srilakshmi Gelfond, Jonathan Sun, Lishi Bergman, Molly Orihuela, Carlos J. Galvan, Veronica Padrón, Álvaro Drerup, Justin Liu, Yang Hasty, Paul Sharp, Zelton Dave Curiel, Tyler J. Aging Cell Original Articles The mammalian (mechanistic) target of rapamycin (mTOR) regulates critical immune processes that remain incompletely defined. Interest in mTOR inhibitor drugs is heightened by recent demonstrations that the mTOR inhibitor rapamycin extends lifespan and healthspan in mice. Rapamycin or related analogues (rapalogues) also mitigate age‐related debilities including increasing antigen‐specific immunity, improving vaccine responses in elderly humans, and treating cancers and autoimmunity, suggesting important new clinical applications. Nonetheless, immune toxicity concerns for long‐term mTOR inhibition, particularly immunosuppression, persist. Although mTOR is pivotal to fundamental, important immune pathways, little is reported on immune effects of mTOR inhibition in lifespan or healthspan extension, or with chronic mTOR inhibitor use. We comprehensively analyzed immune effects of rapamycin as used in lifespan extension studies. Gene expression profiling found many and novel changes in genes affecting differentiation, function, homeostasis, exhaustion, cell death, and inflammation in distinct T‐ and B‐lymphocyte and myeloid cell subpopulations. Immune functions relevant to aging and inflammation, and to cancer and infections, and innate lymphoid cell effects were validated in vitro and in vivo. Rapamycin markedly prolonged lifespan and healthspan in cancer‐ and infection‐prone mice supporting disease mitigation as a mechanism for mTOR suppression‐mediated longevity extension. It modestly altered gut metagenomes, and some metagenomic effects were linked to immune outcomes. Our data show novel mTOR inhibitor immune effects meriting further studies in relation to longevity and healthspan extension. John Wiley and Sons Inc. 2015-08-28 2015-12 /pmc/articles/PMC4693453/ /pubmed/26315673 http://dx.doi.org/10.1111/acel.12380 Text en © 2015 The Authors. Aging Cell published by the Anatomical Society and John Wiley & Sons Ltd. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Hurez, Vincent
Dao, Vinh
Liu, Aijie
Pandeswara, Srilakshmi
Gelfond, Jonathan
Sun, Lishi
Bergman, Molly
Orihuela, Carlos J.
Galvan, Veronica
Padrón, Álvaro
Drerup, Justin
Liu, Yang
Hasty, Paul
Sharp, Zelton Dave
Curiel, Tyler J.
Chronic mTOR inhibition in mice with rapamycin alters T, B, myeloid, and innate lymphoid cells and gut flora and prolongs life of immune‐deficient mice
title Chronic mTOR inhibition in mice with rapamycin alters T, B, myeloid, and innate lymphoid cells and gut flora and prolongs life of immune‐deficient mice
title_full Chronic mTOR inhibition in mice with rapamycin alters T, B, myeloid, and innate lymphoid cells and gut flora and prolongs life of immune‐deficient mice
title_fullStr Chronic mTOR inhibition in mice with rapamycin alters T, B, myeloid, and innate lymphoid cells and gut flora and prolongs life of immune‐deficient mice
title_full_unstemmed Chronic mTOR inhibition in mice with rapamycin alters T, B, myeloid, and innate lymphoid cells and gut flora and prolongs life of immune‐deficient mice
title_short Chronic mTOR inhibition in mice with rapamycin alters T, B, myeloid, and innate lymphoid cells and gut flora and prolongs life of immune‐deficient mice
title_sort chronic mtor inhibition in mice with rapamycin alters t, b, myeloid, and innate lymphoid cells and gut flora and prolongs life of immune‐deficient mice
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4693453/
https://www.ncbi.nlm.nih.gov/pubmed/26315673
http://dx.doi.org/10.1111/acel.12380
work_keys_str_mv AT hurezvincent chronicmtorinhibitioninmicewithrapamycinalterstbmyeloidandinnatelymphoidcellsandgutfloraandprolongslifeofimmunedeficientmice
AT daovinh chronicmtorinhibitioninmicewithrapamycinalterstbmyeloidandinnatelymphoidcellsandgutfloraandprolongslifeofimmunedeficientmice
AT liuaijie chronicmtorinhibitioninmicewithrapamycinalterstbmyeloidandinnatelymphoidcellsandgutfloraandprolongslifeofimmunedeficientmice
AT pandeswarasrilakshmi chronicmtorinhibitioninmicewithrapamycinalterstbmyeloidandinnatelymphoidcellsandgutfloraandprolongslifeofimmunedeficientmice
AT gelfondjonathan chronicmtorinhibitioninmicewithrapamycinalterstbmyeloidandinnatelymphoidcellsandgutfloraandprolongslifeofimmunedeficientmice
AT sunlishi chronicmtorinhibitioninmicewithrapamycinalterstbmyeloidandinnatelymphoidcellsandgutfloraandprolongslifeofimmunedeficientmice
AT bergmanmolly chronicmtorinhibitioninmicewithrapamycinalterstbmyeloidandinnatelymphoidcellsandgutfloraandprolongslifeofimmunedeficientmice
AT orihuelacarlosj chronicmtorinhibitioninmicewithrapamycinalterstbmyeloidandinnatelymphoidcellsandgutfloraandprolongslifeofimmunedeficientmice
AT galvanveronica chronicmtorinhibitioninmicewithrapamycinalterstbmyeloidandinnatelymphoidcellsandgutfloraandprolongslifeofimmunedeficientmice
AT padronalvaro chronicmtorinhibitioninmicewithrapamycinalterstbmyeloidandinnatelymphoidcellsandgutfloraandprolongslifeofimmunedeficientmice
AT drerupjustin chronicmtorinhibitioninmicewithrapamycinalterstbmyeloidandinnatelymphoidcellsandgutfloraandprolongslifeofimmunedeficientmice
AT liuyang chronicmtorinhibitioninmicewithrapamycinalterstbmyeloidandinnatelymphoidcellsandgutfloraandprolongslifeofimmunedeficientmice
AT hastypaul chronicmtorinhibitioninmicewithrapamycinalterstbmyeloidandinnatelymphoidcellsandgutfloraandprolongslifeofimmunedeficientmice
AT sharpzeltondave chronicmtorinhibitioninmicewithrapamycinalterstbmyeloidandinnatelymphoidcellsandgutfloraandprolongslifeofimmunedeficientmice
AT curieltylerj chronicmtorinhibitioninmicewithrapamycinalterstbmyeloidandinnatelymphoidcellsandgutfloraandprolongslifeofimmunedeficientmice