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Deep sequencing of HIV-1 variants from paired plasma and cerebrospinal fluid during primary HIV infection

BACKGROUND: : Limited data exist comparing viral quasispecies between cerebrospinal fluid (CSF) and plasma compartments during primary HIV infection. Deep sequencing is a new method to examine the HIV plasma and CSF quasispecies. METHODS: : In this pilot study, deep sequencing of protease (PR) and r...

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Autores principales: Gega, Arjet, Kozal, Michael J, Chiarella, Jennifer, Lee, Evelyn, Peterson, Julia, Hecht, Frederick M, Liegler, Teri, St John, Elizabeth P, Simen, Birgitte B, Price, Richard W, Spudich, Serena S
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Mediscript Ltd 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4743659/
https://www.ncbi.nlm.nih.gov/pubmed/26855971
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author Gega, Arjet
Kozal, Michael J
Chiarella, Jennifer
Lee, Evelyn
Peterson, Julia
Hecht, Frederick M
Liegler, Teri
St John, Elizabeth P
Simen, Birgitte B
Price, Richard W
Spudich, Serena S
author_facet Gega, Arjet
Kozal, Michael J
Chiarella, Jennifer
Lee, Evelyn
Peterson, Julia
Hecht, Frederick M
Liegler, Teri
St John, Elizabeth P
Simen, Birgitte B
Price, Richard W
Spudich, Serena S
author_sort Gega, Arjet
collection PubMed
description BACKGROUND: : Limited data exist comparing viral quasispecies between cerebrospinal fluid (CSF) and plasma compartments during primary HIV infection. Deep sequencing is a new method to examine the HIV plasma and CSF quasispecies. METHODS: : In this pilot study, deep sequencing of protease (PR) and reverse transcriptase (RT) was performed in plasma and CSF from participants during primary HIV infection. Estimated mutational load was calculated by mutant variant frequency multiplied by HIV-RNA level. RESULTS: : Paired plasma and CSF samples were studied from five antiretroviral therapy-naïve male participants with median 109 days post estimated transmission, age 32 years, CD4 cell count 580 cells/μL, HIV-RNA 5.18 log(10) copies/mL in plasma and 3.67 log(10) copies/mL in CSF. Plasma samples averaged 7,124 reads of PR and 2,448 reads of RT, whereas CSF samples averaged 7,082 and 2,792 reads, respectively. A distinct drug-resistance pattern with linked mutations present at significant levels (5–10%) was detected in one participant in CSF. Other low abundance variants (>0.2%) were detected in plasma and CSF of four out of five participants. CONCLUSIONS: : Deep sequencing of CSF HIV is technically possible with sufficient HIV-RNA levels. Differences between the quasispecies in the two compartments detected in one participant, which were present with a high mutational load in CSF at an estimated 3.6 months after HIV infection, suggest that early CNS compartmentalisation may be revealed by sensitive deep-sequencing methods. The presence of distinct low abundance (<1%) resistance variants in plasma and CSF of three other subjects may be significant, but further investigation is needed.
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spelling pubmed-47436592016-02-05 Deep sequencing of HIV-1 variants from paired plasma and cerebrospinal fluid during primary HIV infection Gega, Arjet Kozal, Michael J Chiarella, Jennifer Lee, Evelyn Peterson, Julia Hecht, Frederick M Liegler, Teri St John, Elizabeth P Simen, Birgitte B Price, Richard W Spudich, Serena S J Virus Erad Original Research BACKGROUND: : Limited data exist comparing viral quasispecies between cerebrospinal fluid (CSF) and plasma compartments during primary HIV infection. Deep sequencing is a new method to examine the HIV plasma and CSF quasispecies. METHODS: : In this pilot study, deep sequencing of protease (PR) and reverse transcriptase (RT) was performed in plasma and CSF from participants during primary HIV infection. Estimated mutational load was calculated by mutant variant frequency multiplied by HIV-RNA level. RESULTS: : Paired plasma and CSF samples were studied from five antiretroviral therapy-naïve male participants with median 109 days post estimated transmission, age 32 years, CD4 cell count 580 cells/μL, HIV-RNA 5.18 log(10) copies/mL in plasma and 3.67 log(10) copies/mL in CSF. Plasma samples averaged 7,124 reads of PR and 2,448 reads of RT, whereas CSF samples averaged 7,082 and 2,792 reads, respectively. A distinct drug-resistance pattern with linked mutations present at significant levels (5–10%) was detected in one participant in CSF. Other low abundance variants (>0.2%) were detected in plasma and CSF of four out of five participants. CONCLUSIONS: : Deep sequencing of CSF HIV is technically possible with sufficient HIV-RNA levels. Differences between the quasispecies in the two compartments detected in one participant, which were present with a high mutational load in CSF at an estimated 3.6 months after HIV infection, suggest that early CNS compartmentalisation may be revealed by sensitive deep-sequencing methods. The presence of distinct low abundance (<1%) resistance variants in plasma and CSF of three other subjects may be significant, but further investigation is needed. Mediscript Ltd 2015-10-01 /pmc/articles/PMC4743659/ /pubmed/26855971 Text en © 2015 The Authors. Journal of Virus Eradication published by Mediscript Ltd http://creativecommons.org/licenses/by-nc/4.0/ This is an open access article published under the terms of a Creative Commons License.
spellingShingle Original Research
Gega, Arjet
Kozal, Michael J
Chiarella, Jennifer
Lee, Evelyn
Peterson, Julia
Hecht, Frederick M
Liegler, Teri
St John, Elizabeth P
Simen, Birgitte B
Price, Richard W
Spudich, Serena S
Deep sequencing of HIV-1 variants from paired plasma and cerebrospinal fluid during primary HIV infection
title Deep sequencing of HIV-1 variants from paired plasma and cerebrospinal fluid during primary HIV infection
title_full Deep sequencing of HIV-1 variants from paired plasma and cerebrospinal fluid during primary HIV infection
title_fullStr Deep sequencing of HIV-1 variants from paired plasma and cerebrospinal fluid during primary HIV infection
title_full_unstemmed Deep sequencing of HIV-1 variants from paired plasma and cerebrospinal fluid during primary HIV infection
title_short Deep sequencing of HIV-1 variants from paired plasma and cerebrospinal fluid during primary HIV infection
title_sort deep sequencing of hiv-1 variants from paired plasma and cerebrospinal fluid during primary hiv infection
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4743659/
https://www.ncbi.nlm.nih.gov/pubmed/26855971
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