Cargando…

Myeloid-derived suppressor cell subtypes differentially influence T-cell function, T-helper subset differentiation, and clinical course in CLL

Cancer pathogenesis involves the interplay of tumor- and microenvironment-derived stimuli. Here we focused on the influence of an immunomodulatory cell type, myeloid-derived suppressor cells (MDSCs), and their lineage-related subtypes on autologous T lymphocytes. Although MDSCs as a group correlated...

Descripción completa

Detalles Bibliográficos
Autores principales: Ferrer, Gerardo, Jung, Byeongho, Chiu, Pui Yan, Aslam, Rukhsana, Palacios, Florencia, Mazzarello, Andrea Nicola, Vergani, Stefano, Bagnara, Davide, Chen, Shih-Shih, Yancopoulos, Sophia, Xochelli, Aliki, Yan, Xiao-Jie, Burger, Jan A., Barrientos, Jacqueline C., Kolitz, Jonathan E., Allen, Steven L., Stamatopoulos, Kostas, Rai, Kanti R., Sherry, Barbara, Chiorazzi, Nicholas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8550941/
https://www.ncbi.nlm.nih.gov/pubmed/33935280
http://dx.doi.org/10.1038/s41375-021-01249-7
_version_ 1784591062697771008
author Ferrer, Gerardo
Jung, Byeongho
Chiu, Pui Yan
Aslam, Rukhsana
Palacios, Florencia
Mazzarello, Andrea Nicola
Vergani, Stefano
Bagnara, Davide
Chen, Shih-Shih
Yancopoulos, Sophia
Xochelli, Aliki
Yan, Xiao-Jie
Burger, Jan A.
Barrientos, Jacqueline C.
Kolitz, Jonathan E.
Allen, Steven L.
Stamatopoulos, Kostas
Rai, Kanti R.
Sherry, Barbara
Chiorazzi, Nicholas
author_facet Ferrer, Gerardo
Jung, Byeongho
Chiu, Pui Yan
Aslam, Rukhsana
Palacios, Florencia
Mazzarello, Andrea Nicola
Vergani, Stefano
Bagnara, Davide
Chen, Shih-Shih
Yancopoulos, Sophia
Xochelli, Aliki
Yan, Xiao-Jie
Burger, Jan A.
Barrientos, Jacqueline C.
Kolitz, Jonathan E.
Allen, Steven L.
Stamatopoulos, Kostas
Rai, Kanti R.
Sherry, Barbara
Chiorazzi, Nicholas
author_sort Ferrer, Gerardo
collection PubMed
description Cancer pathogenesis involves the interplay of tumor- and microenvironment-derived stimuli. Here we focused on the influence of an immunomodulatory cell type, myeloid-derived suppressor cells (MDSCs), and their lineage-related subtypes on autologous T lymphocytes. Although MDSCs as a group correlated with an immunosuppressive Th repertoire and worse clinical course, MDSC subtypes (polymorphonuclear, PMN-MDSC, and monocytic, M-MDSCs) were often functionally discordant. In vivo, PMN-MDSCs existed in higher numbers, correlated with different Th-subsets, and more strongly associated with poor clinical course than M-MDSCs. In vitro, PMN-MDSCs were more efficient at blocking T-cell growth and promoted Th17 differentiation. Conversely, in vitro M-MDSCs varied in their ability to suppress T-cell proliferation, due to the action of TNFα, and promoted a more immunostimulatory Th compartment. Ibrutinib therapy impacted MDSCs differentially as well, since after initiating therapy, PMN-MDSC numbers progressively declined, whereas M-MDSC numbers were unaffected, leading to a set of less immunosuppressive Th cells. Consistent with this, clinical improvement based on decreasing CLL-cell numbers correlated with the decrease in PMN-MDSCs. Collectively, the data support a balance between PMN-MDSC and M-MDSC numbers and function influencing CLL disease course.
format Online
Article
Text
id pubmed-8550941
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Nature Publishing Group UK
record_format MEDLINE/PubMed
spelling pubmed-85509412021-11-10 Myeloid-derived suppressor cell subtypes differentially influence T-cell function, T-helper subset differentiation, and clinical course in CLL Ferrer, Gerardo Jung, Byeongho Chiu, Pui Yan Aslam, Rukhsana Palacios, Florencia Mazzarello, Andrea Nicola Vergani, Stefano Bagnara, Davide Chen, Shih-Shih Yancopoulos, Sophia Xochelli, Aliki Yan, Xiao-Jie Burger, Jan A. Barrientos, Jacqueline C. Kolitz, Jonathan E. Allen, Steven L. Stamatopoulos, Kostas Rai, Kanti R. Sherry, Barbara Chiorazzi, Nicholas Leukemia Article Cancer pathogenesis involves the interplay of tumor- and microenvironment-derived stimuli. Here we focused on the influence of an immunomodulatory cell type, myeloid-derived suppressor cells (MDSCs), and their lineage-related subtypes on autologous T lymphocytes. Although MDSCs as a group correlated with an immunosuppressive Th repertoire and worse clinical course, MDSC subtypes (polymorphonuclear, PMN-MDSC, and monocytic, M-MDSCs) were often functionally discordant. In vivo, PMN-MDSCs existed in higher numbers, correlated with different Th-subsets, and more strongly associated with poor clinical course than M-MDSCs. In vitro, PMN-MDSCs were more efficient at blocking T-cell growth and promoted Th17 differentiation. Conversely, in vitro M-MDSCs varied in their ability to suppress T-cell proliferation, due to the action of TNFα, and promoted a more immunostimulatory Th compartment. Ibrutinib therapy impacted MDSCs differentially as well, since after initiating therapy, PMN-MDSC numbers progressively declined, whereas M-MDSC numbers were unaffected, leading to a set of less immunosuppressive Th cells. Consistent with this, clinical improvement based on decreasing CLL-cell numbers correlated with the decrease in PMN-MDSCs. Collectively, the data support a balance between PMN-MDSC and M-MDSC numbers and function influencing CLL disease course. Nature Publishing Group UK 2021-05-02 2021 /pmc/articles/PMC8550941/ /pubmed/33935280 http://dx.doi.org/10.1038/s41375-021-01249-7 Text en © The Author(s) 2021 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Ferrer, Gerardo
Jung, Byeongho
Chiu, Pui Yan
Aslam, Rukhsana
Palacios, Florencia
Mazzarello, Andrea Nicola
Vergani, Stefano
Bagnara, Davide
Chen, Shih-Shih
Yancopoulos, Sophia
Xochelli, Aliki
Yan, Xiao-Jie
Burger, Jan A.
Barrientos, Jacqueline C.
Kolitz, Jonathan E.
Allen, Steven L.
Stamatopoulos, Kostas
Rai, Kanti R.
Sherry, Barbara
Chiorazzi, Nicholas
Myeloid-derived suppressor cell subtypes differentially influence T-cell function, T-helper subset differentiation, and clinical course in CLL
title Myeloid-derived suppressor cell subtypes differentially influence T-cell function, T-helper subset differentiation, and clinical course in CLL
title_full Myeloid-derived suppressor cell subtypes differentially influence T-cell function, T-helper subset differentiation, and clinical course in CLL
title_fullStr Myeloid-derived suppressor cell subtypes differentially influence T-cell function, T-helper subset differentiation, and clinical course in CLL
title_full_unstemmed Myeloid-derived suppressor cell subtypes differentially influence T-cell function, T-helper subset differentiation, and clinical course in CLL
title_short Myeloid-derived suppressor cell subtypes differentially influence T-cell function, T-helper subset differentiation, and clinical course in CLL
title_sort myeloid-derived suppressor cell subtypes differentially influence t-cell function, t-helper subset differentiation, and clinical course in cll
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8550941/
https://www.ncbi.nlm.nih.gov/pubmed/33935280
http://dx.doi.org/10.1038/s41375-021-01249-7
work_keys_str_mv AT ferrergerardo myeloidderivedsuppressorcellsubtypesdifferentiallyinfluencetcellfunctionthelpersubsetdifferentiationandclinicalcourseincll
AT jungbyeongho myeloidderivedsuppressorcellsubtypesdifferentiallyinfluencetcellfunctionthelpersubsetdifferentiationandclinicalcourseincll
AT chiupuiyan myeloidderivedsuppressorcellsubtypesdifferentiallyinfluencetcellfunctionthelpersubsetdifferentiationandclinicalcourseincll
AT aslamrukhsana myeloidderivedsuppressorcellsubtypesdifferentiallyinfluencetcellfunctionthelpersubsetdifferentiationandclinicalcourseincll
AT palaciosflorencia myeloidderivedsuppressorcellsubtypesdifferentiallyinfluencetcellfunctionthelpersubsetdifferentiationandclinicalcourseincll
AT mazzarelloandreanicola myeloidderivedsuppressorcellsubtypesdifferentiallyinfluencetcellfunctionthelpersubsetdifferentiationandclinicalcourseincll
AT verganistefano myeloidderivedsuppressorcellsubtypesdifferentiallyinfluencetcellfunctionthelpersubsetdifferentiationandclinicalcourseincll
AT bagnaradavide myeloidderivedsuppressorcellsubtypesdifferentiallyinfluencetcellfunctionthelpersubsetdifferentiationandclinicalcourseincll
AT chenshihshih myeloidderivedsuppressorcellsubtypesdifferentiallyinfluencetcellfunctionthelpersubsetdifferentiationandclinicalcourseincll
AT yancopoulossophia myeloidderivedsuppressorcellsubtypesdifferentiallyinfluencetcellfunctionthelpersubsetdifferentiationandclinicalcourseincll
AT xochellialiki myeloidderivedsuppressorcellsubtypesdifferentiallyinfluencetcellfunctionthelpersubsetdifferentiationandclinicalcourseincll
AT yanxiaojie myeloidderivedsuppressorcellsubtypesdifferentiallyinfluencetcellfunctionthelpersubsetdifferentiationandclinicalcourseincll
AT burgerjana myeloidderivedsuppressorcellsubtypesdifferentiallyinfluencetcellfunctionthelpersubsetdifferentiationandclinicalcourseincll
AT barrientosjacquelinec myeloidderivedsuppressorcellsubtypesdifferentiallyinfluencetcellfunctionthelpersubsetdifferentiationandclinicalcourseincll
AT kolitzjonathane myeloidderivedsuppressorcellsubtypesdifferentiallyinfluencetcellfunctionthelpersubsetdifferentiationandclinicalcourseincll
AT allenstevenl myeloidderivedsuppressorcellsubtypesdifferentiallyinfluencetcellfunctionthelpersubsetdifferentiationandclinicalcourseincll
AT stamatopouloskostas myeloidderivedsuppressorcellsubtypesdifferentiallyinfluencetcellfunctionthelpersubsetdifferentiationandclinicalcourseincll
AT raikantir myeloidderivedsuppressorcellsubtypesdifferentiallyinfluencetcellfunctionthelpersubsetdifferentiationandclinicalcourseincll
AT sherrybarbara myeloidderivedsuppressorcellsubtypesdifferentiallyinfluencetcellfunctionthelpersubsetdifferentiationandclinicalcourseincll
AT chiorazzinicholas myeloidderivedsuppressorcellsubtypesdifferentiallyinfluencetcellfunctionthelpersubsetdifferentiationandclinicalcourseincll