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Rhesus Macaque CODEX Multiplexed Immunohistochemistry Panel for Studying Immune Responses During Ebola Infection

Non-human primate (NHP) animal models are an integral part of the drug research and development process. For some biothreat pathogens, animal model challenge studies may offer the only possibility to evaluate medical countermeasure efficacy. A thorough understanding of host immune responses in such...

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Autores principales: Jiang, Sizun, Mukherjee, Nilanjan, Bennett, Richard S., Chen, Han, Logue, James, Dighero-Kemp, Bonnie, Kurtz, Jonathan R., Adams, Ricky, Phillips, Darci, Schürch, Christian M., Goltsev, Yury, Hickey, John W., McCaffrey, Erin F., Delmastro, Alea, Chu, Pauline, Reader, J. Rachel, Keesler, Rebekah I., Galván, José A., Zlobec, Inti, Van Rompay, Koen K. A., Liu, David X., Hensley, Lisa E., Nolan, Garry P., McIlwain, David R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8685521/
https://www.ncbi.nlm.nih.gov/pubmed/34938283
http://dx.doi.org/10.3389/fimmu.2021.729845
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author Jiang, Sizun
Mukherjee, Nilanjan
Bennett, Richard S.
Chen, Han
Logue, James
Dighero-Kemp, Bonnie
Kurtz, Jonathan R.
Adams, Ricky
Phillips, Darci
Schürch, Christian M.
Goltsev, Yury
Hickey, John W.
McCaffrey, Erin F.
Delmastro, Alea
Chu, Pauline
Reader, J. Rachel
Keesler, Rebekah I.
Galván, José A.
Zlobec, Inti
Van Rompay, Koen K. A.
Liu, David X.
Hensley, Lisa E.
Nolan, Garry P.
McIlwain, David R.
author_facet Jiang, Sizun
Mukherjee, Nilanjan
Bennett, Richard S.
Chen, Han
Logue, James
Dighero-Kemp, Bonnie
Kurtz, Jonathan R.
Adams, Ricky
Phillips, Darci
Schürch, Christian M.
Goltsev, Yury
Hickey, John W.
McCaffrey, Erin F.
Delmastro, Alea
Chu, Pauline
Reader, J. Rachel
Keesler, Rebekah I.
Galván, José A.
Zlobec, Inti
Van Rompay, Koen K. A.
Liu, David X.
Hensley, Lisa E.
Nolan, Garry P.
McIlwain, David R.
author_sort Jiang, Sizun
collection PubMed
description Non-human primate (NHP) animal models are an integral part of the drug research and development process. For some biothreat pathogens, animal model challenge studies may offer the only possibility to evaluate medical countermeasure efficacy. A thorough understanding of host immune responses in such NHP models is therefore vital. However, applying antibody-based immune characterization techniques to NHP models requires extensive reagent development for species compatibility. In the case of studies involving high consequence pathogens, further optimization for use of inactivated samples may be required. Here, we describe the first optimized CO-Detection by indEXing (CODEX) multiplexed tissue imaging antibody panel for deep profiling of spatially resolved single-cell immune responses in rhesus macaques. This 21-marker panel is composed of a set of 18 antibodies that stratify major immune cell types along with a set three Ebola virus (EBOV)-specific antibodies. We validated these two sets of markers using immunohistochemistry and CODEX in fully inactivated Formalin-Fixed Paraffin-Embedded (FFPE) tissues from mock and EBOV challenged macaques respectively and provide an efficient framework for orthogonal validation of multiple antibody clones using CODEX multiplexed tissue imaging. We also provide the antibody clones and oligonucleotide tag sequences as a valuable resource for other researchers to recreate this reagent set for future studies of tissue immune responses to EBOV infection and other diseases.
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spelling pubmed-86855212021-12-21 Rhesus Macaque CODEX Multiplexed Immunohistochemistry Panel for Studying Immune Responses During Ebola Infection Jiang, Sizun Mukherjee, Nilanjan Bennett, Richard S. Chen, Han Logue, James Dighero-Kemp, Bonnie Kurtz, Jonathan R. Adams, Ricky Phillips, Darci Schürch, Christian M. Goltsev, Yury Hickey, John W. McCaffrey, Erin F. Delmastro, Alea Chu, Pauline Reader, J. Rachel Keesler, Rebekah I. Galván, José A. Zlobec, Inti Van Rompay, Koen K. A. Liu, David X. Hensley, Lisa E. Nolan, Garry P. McIlwain, David R. Front Immunol Immunology Non-human primate (NHP) animal models are an integral part of the drug research and development process. For some biothreat pathogens, animal model challenge studies may offer the only possibility to evaluate medical countermeasure efficacy. A thorough understanding of host immune responses in such NHP models is therefore vital. However, applying antibody-based immune characterization techniques to NHP models requires extensive reagent development for species compatibility. In the case of studies involving high consequence pathogens, further optimization for use of inactivated samples may be required. Here, we describe the first optimized CO-Detection by indEXing (CODEX) multiplexed tissue imaging antibody panel for deep profiling of spatially resolved single-cell immune responses in rhesus macaques. This 21-marker panel is composed of a set of 18 antibodies that stratify major immune cell types along with a set three Ebola virus (EBOV)-specific antibodies. We validated these two sets of markers using immunohistochemistry and CODEX in fully inactivated Formalin-Fixed Paraffin-Embedded (FFPE) tissues from mock and EBOV challenged macaques respectively and provide an efficient framework for orthogonal validation of multiple antibody clones using CODEX multiplexed tissue imaging. We also provide the antibody clones and oligonucleotide tag sequences as a valuable resource for other researchers to recreate this reagent set for future studies of tissue immune responses to EBOV infection and other diseases. Frontiers Media S.A. 2021-12-06 /pmc/articles/PMC8685521/ /pubmed/34938283 http://dx.doi.org/10.3389/fimmu.2021.729845 Text en Copyright © 2021 Jiang, Mukherjee, Bennett, Chen, Logue, Dighero-Kemp, Kurtz, Adams, Phillips, Schürch, Goltsev, Hickey, McCaffrey, Delmastro, Chu, Reader, Keesler, Galván, Zlobec, Van Rompay, Liu, Hensley, Nolan and McIlwain 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
Jiang, Sizun
Mukherjee, Nilanjan
Bennett, Richard S.
Chen, Han
Logue, James
Dighero-Kemp, Bonnie
Kurtz, Jonathan R.
Adams, Ricky
Phillips, Darci
Schürch, Christian M.
Goltsev, Yury
Hickey, John W.
McCaffrey, Erin F.
Delmastro, Alea
Chu, Pauline
Reader, J. Rachel
Keesler, Rebekah I.
Galván, José A.
Zlobec, Inti
Van Rompay, Koen K. A.
Liu, David X.
Hensley, Lisa E.
Nolan, Garry P.
McIlwain, David R.
Rhesus Macaque CODEX Multiplexed Immunohistochemistry Panel for Studying Immune Responses During Ebola Infection
title Rhesus Macaque CODEX Multiplexed Immunohistochemistry Panel for Studying Immune Responses During Ebola Infection
title_full Rhesus Macaque CODEX Multiplexed Immunohistochemistry Panel for Studying Immune Responses During Ebola Infection
title_fullStr Rhesus Macaque CODEX Multiplexed Immunohistochemistry Panel for Studying Immune Responses During Ebola Infection
title_full_unstemmed Rhesus Macaque CODEX Multiplexed Immunohistochemistry Panel for Studying Immune Responses During Ebola Infection
title_short Rhesus Macaque CODEX Multiplexed Immunohistochemistry Panel for Studying Immune Responses During Ebola Infection
title_sort rhesus macaque codex multiplexed immunohistochemistry panel for studying immune responses during ebola infection
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8685521/
https://www.ncbi.nlm.nih.gov/pubmed/34938283
http://dx.doi.org/10.3389/fimmu.2021.729845
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