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A Novel Single-Cell FISH-Flow Assay Identifies Effector Memory CD4(+) T cells as a Major Niche for HIV-1 Transcription in HIV-Infected Patients

Cells that actively transcribe HIV-1 have been defined as the “active viral reservoir” in HIV-infected individuals. However, important technical limitations have precluded the characterization of this specific viral reservoir during both treated and untreated HIV-1 infections. Here, we used a novel...

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Autores principales: Grau-Expósito, Judith, Serra-Peinado, Carla, Miguel, Lucia, Navarro, Jordi, Curran, Adrià, Burgos, Joaquin, Ocaña, Imma, Ribera, Esteban, Torrella, Ariadna, Planas, Bibiana, Badía, Rosa, Castellví, Josep, Falcó, Vicenç, Crespo, Manuel, Buzon, Maria J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5513707/
https://www.ncbi.nlm.nih.gov/pubmed/28698276
http://dx.doi.org/10.1128/mBio.00876-17
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author Grau-Expósito, Judith
Serra-Peinado, Carla
Miguel, Lucia
Navarro, Jordi
Curran, Adrià
Burgos, Joaquin
Ocaña, Imma
Ribera, Esteban
Torrella, Ariadna
Planas, Bibiana
Badía, Rosa
Castellví, Josep
Falcó, Vicenç
Crespo, Manuel
Buzon, Maria J.
author_facet Grau-Expósito, Judith
Serra-Peinado, Carla
Miguel, Lucia
Navarro, Jordi
Curran, Adrià
Burgos, Joaquin
Ocaña, Imma
Ribera, Esteban
Torrella, Ariadna
Planas, Bibiana
Badía, Rosa
Castellví, Josep
Falcó, Vicenç
Crespo, Manuel
Buzon, Maria J.
author_sort Grau-Expósito, Judith
collection PubMed
description Cells that actively transcribe HIV-1 have been defined as the “active viral reservoir” in HIV-infected individuals. However, important technical limitations have precluded the characterization of this specific viral reservoir during both treated and untreated HIV-1 infections. Here, we used a novel single-cell RNA fluorescence in situ hybridization-flow cytometry (FISH-flow) assay that requires only 15 million unfractionated peripheral blood mononuclear cells (PBMCs) to characterize the specific cell subpopulations that transcribe HIV RNA in different subsets of CD4(+) T cells. In samples from treated and untreated HIV-infected patients, effector memory CD4(+) T cells were the main cell population supporting HIV RNA transcription. The number of cells expressing HIV correlated with the plasma viral load, intracellular HIV RNA, and proviral DNA quantified by conventional methods and inversely correlated with the CD4(+) T cell count and the CD4/CD8 ratio. We also found that after ex vivo infection of unstimulated PBMCs, HIV-infected T cells upregulated the expression of CD32. In addition, this new methodology detected increased numbers of primary cells expressing viral transcripts and proteins after ex vivo viral reactivation with latency reversal agents. This RNA FISH-flow technique allows the identification of the specific cell subpopulations that support viral transcription in HIV-1-infected individuals and has the potential to provide important information on the mechanisms of viral pathogenesis, HIV persistence, and viral reactivation.
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spelling pubmed-55137072017-07-25 A Novel Single-Cell FISH-Flow Assay Identifies Effector Memory CD4(+) T cells as a Major Niche for HIV-1 Transcription in HIV-Infected Patients Grau-Expósito, Judith Serra-Peinado, Carla Miguel, Lucia Navarro, Jordi Curran, Adrià Burgos, Joaquin Ocaña, Imma Ribera, Esteban Torrella, Ariadna Planas, Bibiana Badía, Rosa Castellví, Josep Falcó, Vicenç Crespo, Manuel Buzon, Maria J. mBio Research Article Cells that actively transcribe HIV-1 have been defined as the “active viral reservoir” in HIV-infected individuals. However, important technical limitations have precluded the characterization of this specific viral reservoir during both treated and untreated HIV-1 infections. Here, we used a novel single-cell RNA fluorescence in situ hybridization-flow cytometry (FISH-flow) assay that requires only 15 million unfractionated peripheral blood mononuclear cells (PBMCs) to characterize the specific cell subpopulations that transcribe HIV RNA in different subsets of CD4(+) T cells. In samples from treated and untreated HIV-infected patients, effector memory CD4(+) T cells were the main cell population supporting HIV RNA transcription. The number of cells expressing HIV correlated with the plasma viral load, intracellular HIV RNA, and proviral DNA quantified by conventional methods and inversely correlated with the CD4(+) T cell count and the CD4/CD8 ratio. We also found that after ex vivo infection of unstimulated PBMCs, HIV-infected T cells upregulated the expression of CD32. In addition, this new methodology detected increased numbers of primary cells expressing viral transcripts and proteins after ex vivo viral reactivation with latency reversal agents. This RNA FISH-flow technique allows the identification of the specific cell subpopulations that support viral transcription in HIV-1-infected individuals and has the potential to provide important information on the mechanisms of viral pathogenesis, HIV persistence, and viral reactivation. American Society for Microbiology 2017-07-11 /pmc/articles/PMC5513707/ /pubmed/28698276 http://dx.doi.org/10.1128/mBio.00876-17 Text en Copyright © 2017 Grau-Expósito et al. https://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Grau-Expósito, Judith
Serra-Peinado, Carla
Miguel, Lucia
Navarro, Jordi
Curran, Adrià
Burgos, Joaquin
Ocaña, Imma
Ribera, Esteban
Torrella, Ariadna
Planas, Bibiana
Badía, Rosa
Castellví, Josep
Falcó, Vicenç
Crespo, Manuel
Buzon, Maria J.
A Novel Single-Cell FISH-Flow Assay Identifies Effector Memory CD4(+) T cells as a Major Niche for HIV-1 Transcription in HIV-Infected Patients
title A Novel Single-Cell FISH-Flow Assay Identifies Effector Memory CD4(+) T cells as a Major Niche for HIV-1 Transcription in HIV-Infected Patients
title_full A Novel Single-Cell FISH-Flow Assay Identifies Effector Memory CD4(+) T cells as a Major Niche for HIV-1 Transcription in HIV-Infected Patients
title_fullStr A Novel Single-Cell FISH-Flow Assay Identifies Effector Memory CD4(+) T cells as a Major Niche for HIV-1 Transcription in HIV-Infected Patients
title_full_unstemmed A Novel Single-Cell FISH-Flow Assay Identifies Effector Memory CD4(+) T cells as a Major Niche for HIV-1 Transcription in HIV-Infected Patients
title_short A Novel Single-Cell FISH-Flow Assay Identifies Effector Memory CD4(+) T cells as a Major Niche for HIV-1 Transcription in HIV-Infected Patients
title_sort novel single-cell fish-flow assay identifies effector memory cd4(+) t cells as a major niche for hiv-1 transcription in hiv-infected patients
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5513707/
https://www.ncbi.nlm.nih.gov/pubmed/28698276
http://dx.doi.org/10.1128/mBio.00876-17
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