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CD3e-immunotoxin spares CD62L(lo) Tregs and reshapes organ-specific T-cell composition by preferentially depleting CD3e(hi) T cells

CD3-epsilon(CD3e) immunotoxins (IT), a promising precision reagent for various clinical conditions requiring effective depletion of T cells, often shows limited treatment efficacy for largely unknown reasons. Tissue-resident T cells that persist in peripheral tissues have been shown to play pivotal...

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Autores principales: Kim, Shihyoung, Shukla, Rajni Kant, Yu, Hannah, Baek, Alice, Cressman, Sophie G., Golconda, Sarah, Lee, Ga-Eun, Choi, Hyewon, Reneau, John C., Wang, Zhirui, Huang, Christene A., Liyanage, Namal P. M., Kim, Sanggu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9643874/
https://www.ncbi.nlm.nih.gov/pubmed/36389741
http://dx.doi.org/10.3389/fimmu.2022.1011190
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author Kim, Shihyoung
Shukla, Rajni Kant
Yu, Hannah
Baek, Alice
Cressman, Sophie G.
Golconda, Sarah
Lee, Ga-Eun
Choi, Hyewon
Reneau, John C.
Wang, Zhirui
Huang, Christene A.
Liyanage, Namal P. M.
Kim, Sanggu
author_facet Kim, Shihyoung
Shukla, Rajni Kant
Yu, Hannah
Baek, Alice
Cressman, Sophie G.
Golconda, Sarah
Lee, Ga-Eun
Choi, Hyewon
Reneau, John C.
Wang, Zhirui
Huang, Christene A.
Liyanage, Namal P. M.
Kim, Sanggu
author_sort Kim, Shihyoung
collection PubMed
description CD3-epsilon(CD3e) immunotoxins (IT), a promising precision reagent for various clinical conditions requiring effective depletion of T cells, often shows limited treatment efficacy for largely unknown reasons. Tissue-resident T cells that persist in peripheral tissues have been shown to play pivotal roles in local and systemic immunity, as well as transplant rejection, autoimmunity and cancers. The impact of CD3e-IT treatment on these local cells, however, remains poorly understood. Here, using a new murine testing model, we demonstrate a substantial enrichment of tissue-resident Foxp3+ Tregs following CD3e-IT treatment. Differential surface expression of CD3e among T-cell subsets appears to be a main driver of Treg enrichment in CD3e-IT treatment. The surviving Tregs in CD3e-IT-treated mice were mostly the CD3e(dim)CD62L(lo) effector phenotype, but the levels of this phenotype markedly varied among different lymphoid and nonlymphoid organs. We also found notable variations in surface CD3e levels among tissue-resident T cells of different organs, and these variations drive CD3e-IT to uniquely reshape T-cell compositions in local organs. The functions of organs and anatomic locations (lymph nodes) also affected the efficacy of CD3e-IT. The multi-organ pharmacodynamics of CD3e-IT and potential treatment resistance mechanisms identified in this study may generate new opportunities to further improve this promising treatment.
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spelling pubmed-96438742022-11-15 CD3e-immunotoxin spares CD62L(lo) Tregs and reshapes organ-specific T-cell composition by preferentially depleting CD3e(hi) T cells Kim, Shihyoung Shukla, Rajni Kant Yu, Hannah Baek, Alice Cressman, Sophie G. Golconda, Sarah Lee, Ga-Eun Choi, Hyewon Reneau, John C. Wang, Zhirui Huang, Christene A. Liyanage, Namal P. M. Kim, Sanggu Front Immunol Immunology CD3-epsilon(CD3e) immunotoxins (IT), a promising precision reagent for various clinical conditions requiring effective depletion of T cells, often shows limited treatment efficacy for largely unknown reasons. Tissue-resident T cells that persist in peripheral tissues have been shown to play pivotal roles in local and systemic immunity, as well as transplant rejection, autoimmunity and cancers. The impact of CD3e-IT treatment on these local cells, however, remains poorly understood. Here, using a new murine testing model, we demonstrate a substantial enrichment of tissue-resident Foxp3+ Tregs following CD3e-IT treatment. Differential surface expression of CD3e among T-cell subsets appears to be a main driver of Treg enrichment in CD3e-IT treatment. The surviving Tregs in CD3e-IT-treated mice were mostly the CD3e(dim)CD62L(lo) effector phenotype, but the levels of this phenotype markedly varied among different lymphoid and nonlymphoid organs. We also found notable variations in surface CD3e levels among tissue-resident T cells of different organs, and these variations drive CD3e-IT to uniquely reshape T-cell compositions in local organs. The functions of organs and anatomic locations (lymph nodes) also affected the efficacy of CD3e-IT. The multi-organ pharmacodynamics of CD3e-IT and potential treatment resistance mechanisms identified in this study may generate new opportunities to further improve this promising treatment. Frontiers Media S.A. 2022-10-26 /pmc/articles/PMC9643874/ /pubmed/36389741 http://dx.doi.org/10.3389/fimmu.2022.1011190 Text en Copyright © 2022 Kim, Shukla, Yu, Baek, Cressman, Golconda, Lee, Choi, Reneau, Wang, Huang, Liyanage and Kim 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
Kim, Shihyoung
Shukla, Rajni Kant
Yu, Hannah
Baek, Alice
Cressman, Sophie G.
Golconda, Sarah
Lee, Ga-Eun
Choi, Hyewon
Reneau, John C.
Wang, Zhirui
Huang, Christene A.
Liyanage, Namal P. M.
Kim, Sanggu
CD3e-immunotoxin spares CD62L(lo) Tregs and reshapes organ-specific T-cell composition by preferentially depleting CD3e(hi) T cells
title CD3e-immunotoxin spares CD62L(lo) Tregs and reshapes organ-specific T-cell composition by preferentially depleting CD3e(hi) T cells
title_full CD3e-immunotoxin spares CD62L(lo) Tregs and reshapes organ-specific T-cell composition by preferentially depleting CD3e(hi) T cells
title_fullStr CD3e-immunotoxin spares CD62L(lo) Tregs and reshapes organ-specific T-cell composition by preferentially depleting CD3e(hi) T cells
title_full_unstemmed CD3e-immunotoxin spares CD62L(lo) Tregs and reshapes organ-specific T-cell composition by preferentially depleting CD3e(hi) T cells
title_short CD3e-immunotoxin spares CD62L(lo) Tregs and reshapes organ-specific T-cell composition by preferentially depleting CD3e(hi) T cells
title_sort cd3e-immunotoxin spares cd62l(lo) tregs and reshapes organ-specific t-cell composition by preferentially depleting cd3e(hi) t cells
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9643874/
https://www.ncbi.nlm.nih.gov/pubmed/36389741
http://dx.doi.org/10.3389/fimmu.2022.1011190
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