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Increasing contribution of integrated forms to total HIV DNA in blood during HIV disease progression from primary infection

BACKGROUND: In the current context of research on HIV reservoirs, offering new insights into the persistence of HIV DNA in infected cells, which prevents viral eradication, may aid in identifying cure strategies. This study aimed to describe the establishment of stable integrated forms among total H...

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Autores principales: Trémeaux, Pauline, Lenfant, Tiphaine, Boufassa, Faroudy, Essat, Asma, Mélard, Adeline, Gousset, Marine, Delelis, Olivier, Viard, Jean-Paul, Bary, Marc, Goujard, Cécile, Rouzioux, Christine, Meyer, Laurence, Avettand-Fenoel, Véronique
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6442355/
https://www.ncbi.nlm.nih.gov/pubmed/30803934
http://dx.doi.org/10.1016/j.ebiom.2019.02.016
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author Trémeaux, Pauline
Lenfant, Tiphaine
Boufassa, Faroudy
Essat, Asma
Mélard, Adeline
Gousset, Marine
Delelis, Olivier
Viard, Jean-Paul
Bary, Marc
Goujard, Cécile
Rouzioux, Christine
Meyer, Laurence
Avettand-Fenoel, Véronique
author_facet Trémeaux, Pauline
Lenfant, Tiphaine
Boufassa, Faroudy
Essat, Asma
Mélard, Adeline
Gousset, Marine
Delelis, Olivier
Viard, Jean-Paul
Bary, Marc
Goujard, Cécile
Rouzioux, Christine
Meyer, Laurence
Avettand-Fenoel, Véronique
author_sort Trémeaux, Pauline
collection PubMed
description BACKGROUND: In the current context of research on HIV reservoirs, offering new insights into the persistence of HIV DNA in infected cells, which prevents viral eradication, may aid in identifying cure strategies. This study aimed to describe the establishment of stable integrated forms among total HIV DNA during primary infection (PHI) and their dynamics during the natural history of infection. METHODS: Total and integrated HIV DNA were quantified in blood from 74 PHI patients and 97 recent seroconverters (<12 months following infection, “progression cohort”). The evolution of both markers over six years was modelled (mixed-effect linear models). Their predictive values for disease progression were studied (Cox models). FINDINGS: For most patients during PHI, stable integrated forms were a minority among total HIV DNA (median: 12%) and became predominant thereafter (median at AIDS stage: 100%). Both total and integrated HIV DNA increased over a six-year period. Patients from the progression cohort who reached clinical AIDS during follow-up (n = 34) exhibited higher total and integrated HIV DNA levels at seroconversion and a higher percentage of integrated forms than did slower progressors (n = 63) (median: 100% vs 44%). The integrated HIV DNA load was strongly associated with the risk of developing AIDS (aRR = 2.63, p = 0.002). INTERPRETATION: The profile of “rapid” or “slower” progression in the natural history of HIV infection appears to be determined early in the course of HIV infection. The strong predominance of unstable unintegrated forms in PHI may explain the great benefit of this early treatment, which induces a sharp decrease in total HIV DNA. FUND: French National Agency for Research on AIDS and Viral Hepatitis.
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spelling pubmed-64423552019-04-11 Increasing contribution of integrated forms to total HIV DNA in blood during HIV disease progression from primary infection Trémeaux, Pauline Lenfant, Tiphaine Boufassa, Faroudy Essat, Asma Mélard, Adeline Gousset, Marine Delelis, Olivier Viard, Jean-Paul Bary, Marc Goujard, Cécile Rouzioux, Christine Meyer, Laurence Avettand-Fenoel, Véronique EBioMedicine Research paper BACKGROUND: In the current context of research on HIV reservoirs, offering new insights into the persistence of HIV DNA in infected cells, which prevents viral eradication, may aid in identifying cure strategies. This study aimed to describe the establishment of stable integrated forms among total HIV DNA during primary infection (PHI) and their dynamics during the natural history of infection. METHODS: Total and integrated HIV DNA were quantified in blood from 74 PHI patients and 97 recent seroconverters (<12 months following infection, “progression cohort”). The evolution of both markers over six years was modelled (mixed-effect linear models). Their predictive values for disease progression were studied (Cox models). FINDINGS: For most patients during PHI, stable integrated forms were a minority among total HIV DNA (median: 12%) and became predominant thereafter (median at AIDS stage: 100%). Both total and integrated HIV DNA increased over a six-year period. Patients from the progression cohort who reached clinical AIDS during follow-up (n = 34) exhibited higher total and integrated HIV DNA levels at seroconversion and a higher percentage of integrated forms than did slower progressors (n = 63) (median: 100% vs 44%). The integrated HIV DNA load was strongly associated with the risk of developing AIDS (aRR = 2.63, p = 0.002). INTERPRETATION: The profile of “rapid” or “slower” progression in the natural history of HIV infection appears to be determined early in the course of HIV infection. The strong predominance of unstable unintegrated forms in PHI may explain the great benefit of this early treatment, which induces a sharp decrease in total HIV DNA. FUND: French National Agency for Research on AIDS and Viral Hepatitis. Elsevier 2019-02-23 /pmc/articles/PMC6442355/ /pubmed/30803934 http://dx.doi.org/10.1016/j.ebiom.2019.02.016 Text en © 2019 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research paper
Trémeaux, Pauline
Lenfant, Tiphaine
Boufassa, Faroudy
Essat, Asma
Mélard, Adeline
Gousset, Marine
Delelis, Olivier
Viard, Jean-Paul
Bary, Marc
Goujard, Cécile
Rouzioux, Christine
Meyer, Laurence
Avettand-Fenoel, Véronique
Increasing contribution of integrated forms to total HIV DNA in blood during HIV disease progression from primary infection
title Increasing contribution of integrated forms to total HIV DNA in blood during HIV disease progression from primary infection
title_full Increasing contribution of integrated forms to total HIV DNA in blood during HIV disease progression from primary infection
title_fullStr Increasing contribution of integrated forms to total HIV DNA in blood during HIV disease progression from primary infection
title_full_unstemmed Increasing contribution of integrated forms to total HIV DNA in blood during HIV disease progression from primary infection
title_short Increasing contribution of integrated forms to total HIV DNA in blood during HIV disease progression from primary infection
title_sort increasing contribution of integrated forms to total hiv dna in blood during hiv disease progression from primary infection
topic Research paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6442355/
https://www.ncbi.nlm.nih.gov/pubmed/30803934
http://dx.doi.org/10.1016/j.ebiom.2019.02.016
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