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Deep Phenotypic Analysis of Blood and Lymphoid T and NK Cells From HIV+ Controllers and ART-Suppressed Individuals

T and natural killer (NK) cells are effector cells with key roles in anti-HIV immunity, including in lymphoid tissues, the major site of HIV persistence. However, little is known about the features of these effector cells from people living with HIV (PLWH), particularly from those who initiated anti...

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Autores principales: George, Ashley F., Luo, Xiaoyu, Neidleman, Jason, Hoh, Rebecca, Vohra, Poonam, Thomas, Reuben, Shin, Min-Gyoung, Lee, Madeline J., Blish, Catherine A., Deeks, Steven G., Greene, Warner C., Lee, Sulggi A., Roan, Nadia R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8829545/
https://www.ncbi.nlm.nih.gov/pubmed/35154118
http://dx.doi.org/10.3389/fimmu.2022.803417
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author George, Ashley F.
Luo, Xiaoyu
Neidleman, Jason
Hoh, Rebecca
Vohra, Poonam
Thomas, Reuben
Shin, Min-Gyoung
Lee, Madeline J.
Blish, Catherine A.
Deeks, Steven G.
Greene, Warner C.
Lee, Sulggi A.
Roan, Nadia R.
author_facet George, Ashley F.
Luo, Xiaoyu
Neidleman, Jason
Hoh, Rebecca
Vohra, Poonam
Thomas, Reuben
Shin, Min-Gyoung
Lee, Madeline J.
Blish, Catherine A.
Deeks, Steven G.
Greene, Warner C.
Lee, Sulggi A.
Roan, Nadia R.
author_sort George, Ashley F.
collection PubMed
description T and natural killer (NK) cells are effector cells with key roles in anti-HIV immunity, including in lymphoid tissues, the major site of HIV persistence. However, little is known about the features of these effector cells from people living with HIV (PLWH), particularly from those who initiated antiretroviral therapy (ART) during acute infection. Our study design was to use 42-parameter CyTOF to conduct deep phenotyping of paired blood- and lymph node (LN)-derived T and NK cells from three groups of HIV+ aviremic individuals: elite controllers (N = 5), and ART-suppressed individuals who had started therapy during chronic (N = 6) vs. acute infection (N = 8), the latter of which is associated with better outcomes. We found that acute-treated individuals are enriched for specific subsets of T and NK cells, including blood-derived CD56-CD16+ NK cells previously associated with HIV control, and LN-derived CD4+ T follicular helper cells with heightened expansion potential. An in-depth comparison of the features of the cells from blood vs. LNs of individuals from our cohort revealed that T cells from blood were more activated than those from LNs. By contrast, LNs were enriched for follicle-homing CXCR5+ CD8+ T cells, which expressed increased levels of inhibitory receptors and markers of survival and proliferation as compared to their CXCR5- counterparts. In addition, a subset of memory-like CD56(bright)TCF1+ NK cells was enriched in LNs relative to blood. These results together suggest unique T and NK cell features in acute-treated individuals, and highlight the importance of examining effector cells not only in blood but also the lymphoid tissue compartment, where the reservoir mostly persists, and where these cells take on distinct phenotypic features.
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spelling pubmed-88295452022-02-11 Deep Phenotypic Analysis of Blood and Lymphoid T and NK Cells From HIV+ Controllers and ART-Suppressed Individuals George, Ashley F. Luo, Xiaoyu Neidleman, Jason Hoh, Rebecca Vohra, Poonam Thomas, Reuben Shin, Min-Gyoung Lee, Madeline J. Blish, Catherine A. Deeks, Steven G. Greene, Warner C. Lee, Sulggi A. Roan, Nadia R. Front Immunol Immunology T and natural killer (NK) cells are effector cells with key roles in anti-HIV immunity, including in lymphoid tissues, the major site of HIV persistence. However, little is known about the features of these effector cells from people living with HIV (PLWH), particularly from those who initiated antiretroviral therapy (ART) during acute infection. Our study design was to use 42-parameter CyTOF to conduct deep phenotyping of paired blood- and lymph node (LN)-derived T and NK cells from three groups of HIV+ aviremic individuals: elite controllers (N = 5), and ART-suppressed individuals who had started therapy during chronic (N = 6) vs. acute infection (N = 8), the latter of which is associated with better outcomes. We found that acute-treated individuals are enriched for specific subsets of T and NK cells, including blood-derived CD56-CD16+ NK cells previously associated with HIV control, and LN-derived CD4+ T follicular helper cells with heightened expansion potential. An in-depth comparison of the features of the cells from blood vs. LNs of individuals from our cohort revealed that T cells from blood were more activated than those from LNs. By contrast, LNs were enriched for follicle-homing CXCR5+ CD8+ T cells, which expressed increased levels of inhibitory receptors and markers of survival and proliferation as compared to their CXCR5- counterparts. In addition, a subset of memory-like CD56(bright)TCF1+ NK cells was enriched in LNs relative to blood. These results together suggest unique T and NK cell features in acute-treated individuals, and highlight the importance of examining effector cells not only in blood but also the lymphoid tissue compartment, where the reservoir mostly persists, and where these cells take on distinct phenotypic features. Frontiers Media S.A. 2022-01-27 /pmc/articles/PMC8829545/ /pubmed/35154118 http://dx.doi.org/10.3389/fimmu.2022.803417 Text en Copyright © 2022 George, Luo, Neidleman, Hoh, Vohra, Thomas, Shin, Lee, Blish, Deeks, Greene, Lee and Roan https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
George, Ashley F.
Luo, Xiaoyu
Neidleman, Jason
Hoh, Rebecca
Vohra, Poonam
Thomas, Reuben
Shin, Min-Gyoung
Lee, Madeline J.
Blish, Catherine A.
Deeks, Steven G.
Greene, Warner C.
Lee, Sulggi A.
Roan, Nadia R.
Deep Phenotypic Analysis of Blood and Lymphoid T and NK Cells From HIV+ Controllers and ART-Suppressed Individuals
title Deep Phenotypic Analysis of Blood and Lymphoid T and NK Cells From HIV+ Controllers and ART-Suppressed Individuals
title_full Deep Phenotypic Analysis of Blood and Lymphoid T and NK Cells From HIV+ Controllers and ART-Suppressed Individuals
title_fullStr Deep Phenotypic Analysis of Blood and Lymphoid T and NK Cells From HIV+ Controllers and ART-Suppressed Individuals
title_full_unstemmed Deep Phenotypic Analysis of Blood and Lymphoid T and NK Cells From HIV+ Controllers and ART-Suppressed Individuals
title_short Deep Phenotypic Analysis of Blood and Lymphoid T and NK Cells From HIV+ Controllers and ART-Suppressed Individuals
title_sort deep phenotypic analysis of blood and lymphoid t and nk cells from hiv+ controllers and art-suppressed individuals
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8829545/
https://www.ncbi.nlm.nih.gov/pubmed/35154118
http://dx.doi.org/10.3389/fimmu.2022.803417
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