Co-receptor usage prediction at quasispecies level using ultra-deep pyrosequencing on both circulating and proviral hiv in patients candidates to CCR5 antagonist treatment

Bibliographic Details
Main Authors: Nicastri Emanuele, Bartolini Barbara, Bruselles Alessandro, Tommasi Chiara, Rozera Gabriella, Abbate Isabella, Narciso Pasquale, Capobianchi Maria R
Format: Article
Language:English
Published: BMC 2010-05-01
Series:Retrovirology
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author Nicastri Emanuele
Bartolini Barbara
Bruselles Alessandro
Tommasi Chiara
Rozera Gabriella
Abbate Isabella
Narciso Pasquale
Capobianchi Maria R
author_facet Nicastri Emanuele
Bartolini Barbara
Bruselles Alessandro
Tommasi Chiara
Rozera Gabriella
Abbate Isabella
Narciso Pasquale
Capobianchi Maria R
author_sort Nicastri Emanuele
collection DOAJ
first_indexed 2024-12-22T13:02:39Z
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id doaj.art-a1edc388a3d8467eaac8635d9c189727
institution Directory Open Access Journal
issn 1742-4690
language English
last_indexed 2024-12-22T13:02:39Z
publishDate 2010-05-01
publisher BMC
record_format Article
series Retrovirology
spelling doaj.art-a1edc388a3d8467eaac8635d9c1897272022-12-21T18:24:57ZengBMCRetrovirology1742-46902010-05-017Suppl 1O1110.1186/1742-4690-7-S1-O11Co-receptor usage prediction at quasispecies level using ultra-deep pyrosequencing on both circulating and proviral hiv in patients candidates to CCR5 antagonist treatmentNicastri EmanueleBartolini BarbaraBruselles AlessandroTommasi ChiaraRozera GabriellaAbbate IsabellaNarciso PasqualeCapobianchi Maria R
spellingShingle Nicastri Emanuele
Bartolini Barbara
Bruselles Alessandro
Tommasi Chiara
Rozera Gabriella
Abbate Isabella
Narciso Pasquale
Capobianchi Maria R
Co-receptor usage prediction at quasispecies level using ultra-deep pyrosequencing on both circulating and proviral hiv in patients candidates to CCR5 antagonist treatment
Retrovirology
title Co-receptor usage prediction at quasispecies level using ultra-deep pyrosequencing on both circulating and proviral hiv in patients candidates to CCR5 antagonist treatment
title_full Co-receptor usage prediction at quasispecies level using ultra-deep pyrosequencing on both circulating and proviral hiv in patients candidates to CCR5 antagonist treatment
title_fullStr Co-receptor usage prediction at quasispecies level using ultra-deep pyrosequencing on both circulating and proviral hiv in patients candidates to CCR5 antagonist treatment
title_full_unstemmed Co-receptor usage prediction at quasispecies level using ultra-deep pyrosequencing on both circulating and proviral hiv in patients candidates to CCR5 antagonist treatment
title_short Co-receptor usage prediction at quasispecies level using ultra-deep pyrosequencing on both circulating and proviral hiv in patients candidates to CCR5 antagonist treatment
title_sort co receptor usage prediction at quasispecies level using ultra deep pyrosequencing on both circulating and proviral hiv in patients candidates to ccr5 antagonist treatment
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