Author: Barzon, Luisa; Lavezzo, Enrico; Militello, Valentina; Toppo, Stefano; Palù, Giorgio
Title: Applications of Next-Generation Sequencing Technologies to Diagnostic Virology Document date: 2011_11_14
ID: 01nuj0lk_43
Snippet: Several studies that employed 454 pyrosequencing for deep analysis of mutations in HIV protease and reverse transcriptase genes demonstrated the accuracy of this technique in detecting all drug-resistance mutations identified by population sequencing, and the ability to detect low-frequency mutations undetectable by population sequencing [100, 102, 103] . In addition, several studies demonstrated that drug-resistance mutations detected by 454 had.....
Document: Several studies that employed 454 pyrosequencing for deep analysis of mutations in HIV protease and reverse transcriptase genes demonstrated the accuracy of this technique in detecting all drug-resistance mutations identified by population sequencing, and the ability to detect low-frequency mutations undetectable by population sequencing [100, 102, 103] . In addition, several studies demonstrated that drug-resistance mutations detected by 454 had a significant impact on virological failure [103] [104] [105] [106] [107] while others did not find a strong association of low-frequency mutations with clinical responses [108, 109] . Deep sequencing using the 454 platform has been also applied to investigate drug-resistance mutations against the more recently approved integrase inhibitors and CCR5 antagonists.
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