Application of a New Genetic Deafness Microarray for Detecting Mutations in the Deaf in China.

The aim of this study was to evaluate the GoldenGate microarray as a diagnostic tool and to elucidate the contribution of the genes on this array to the development of both nonsyndromic and syndromic sensorineural hearing loss in China.We developed a microarray to detect 240 mutations underlying syn...

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Main Authors: Hong Wu, Yong Feng, Lu Jiang, Qian Pan, Yalan Liu, Chang Liu, Chufeng He, Hongsheng Chen, Xueming Liu, Chang Hu, Yiqiao Hu, Lingyun Mei
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2016-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4809548?pdf=render
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spelling doaj-a380810b8182407082c67f3d9b871ed32020-11-25T02:47:43ZengPublic Library of Science (PLoS)PLoS ONE1932-62032016-01-01113e015190910.1371/journal.pone.0151909Application of a New Genetic Deafness Microarray for Detecting Mutations in the Deaf in China.Hong WuYong FengLu JiangQian PanYalan LiuChang LiuChufeng HeHongsheng ChenXueming LiuChang HuYiqiao HuLingyun MeiThe aim of this study was to evaluate the GoldenGate microarray as a diagnostic tool and to elucidate the contribution of the genes on this array to the development of both nonsyndromic and syndromic sensorineural hearing loss in China.We developed a microarray to detect 240 mutations underlying syndromic and nonsyndromic sensorineural hearing loss. The microarray was then used for analysis of 382 patients with nonsyndromic sensorineural hearing loss (including 15 patients with enlarged vestibular aqueduct syndrome), 21 patients with Waardenburg syndrome, and 60 unrelated controls. Subsequently, we analyzed the sensitivity, specificity, and reproducibility of this new approach after Sanger sequencing-based verification, and also determined the contribution of the genes on this array to the development of distinct hearing disorders.The sensitivity and specificity of the microarray chip were 98.73% and 98.34%, respectively. Genetic defects were identified in 61.26% of the patients with nonsyndromic sensorineural hearing loss, and 9 causative genes were identified. The molecular etiology was confirmed in 19.05% and 46.67% of the patients with Waardenburg syndrome and enlarged vestibular aqueduct syndrome, respectively.Our new mutation-based microarray comprises an accurate and comprehensive genetic tool for the detection of sensorineural hearing loss. This microarray-based detection method could serve as a first-pass screening (before next-generation-sequencing screening) for deafness-causing mutations in China.http://europepmc.org/articles/PMC4809548?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Hong Wu
Yong Feng
Lu Jiang
Qian Pan
Yalan Liu
Chang Liu
Chufeng He
Hongsheng Chen
Xueming Liu
Chang Hu
Yiqiao Hu
Lingyun Mei
spellingShingle Hong Wu
Yong Feng
Lu Jiang
Qian Pan
Yalan Liu
Chang Liu
Chufeng He
Hongsheng Chen
Xueming Liu
Chang Hu
Yiqiao Hu
Lingyun Mei
Application of a New Genetic Deafness Microarray for Detecting Mutations in the Deaf in China.
PLoS ONE
author_facet Hong Wu
Yong Feng
Lu Jiang
Qian Pan
Yalan Liu
Chang Liu
Chufeng He
Hongsheng Chen
Xueming Liu
Chang Hu
Yiqiao Hu
Lingyun Mei
author_sort Hong Wu
title Application of a New Genetic Deafness Microarray for Detecting Mutations in the Deaf in China.
title_short Application of a New Genetic Deafness Microarray for Detecting Mutations in the Deaf in China.
title_full Application of a New Genetic Deafness Microarray for Detecting Mutations in the Deaf in China.
title_fullStr Application of a New Genetic Deafness Microarray for Detecting Mutations in the Deaf in China.
title_full_unstemmed Application of a New Genetic Deafness Microarray for Detecting Mutations in the Deaf in China.
title_sort application of a new genetic deafness microarray for detecting mutations in the deaf in china.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2016-01-01
description The aim of this study was to evaluate the GoldenGate microarray as a diagnostic tool and to elucidate the contribution of the genes on this array to the development of both nonsyndromic and syndromic sensorineural hearing loss in China.We developed a microarray to detect 240 mutations underlying syndromic and nonsyndromic sensorineural hearing loss. The microarray was then used for analysis of 382 patients with nonsyndromic sensorineural hearing loss (including 15 patients with enlarged vestibular aqueduct syndrome), 21 patients with Waardenburg syndrome, and 60 unrelated controls. Subsequently, we analyzed the sensitivity, specificity, and reproducibility of this new approach after Sanger sequencing-based verification, and also determined the contribution of the genes on this array to the development of distinct hearing disorders.The sensitivity and specificity of the microarray chip were 98.73% and 98.34%, respectively. Genetic defects were identified in 61.26% of the patients with nonsyndromic sensorineural hearing loss, and 9 causative genes were identified. The molecular etiology was confirmed in 19.05% and 46.67% of the patients with Waardenburg syndrome and enlarged vestibular aqueduct syndrome, respectively.Our new mutation-based microarray comprises an accurate and comprehensive genetic tool for the detection of sensorineural hearing loss. This microarray-based detection method could serve as a first-pass screening (before next-generation-sequencing screening) for deafness-causing mutations in China.
url http://europepmc.org/articles/PMC4809548?pdf=render
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