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Large scale newborn deafness genetic screening of 142,417 neonates in Wuhan, China

Almost one third of the three million people in China suffering severe deafness are children, and 50% of these cases are believed to have genetic components to their etiology. Newborn hearing genetic screening can complement Universal Neonatal Hearing Screening for the diagnosis of congenital hearin...

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Autores principales: Hao, Zongjie, Fu, Denggang, Ming, Yang, Yang, Jinlong, Huang, Qi, Lin, Weilong, Zhang, Huan, Zhang, Bin, Zhou, Aifen, Hu, Xijiang, Yao, Cong, Dong, Yunping, Ring, Huijun Z., Ring, Brian Z.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5892933/
https://www.ncbi.nlm.nih.gov/pubmed/29634755
http://dx.doi.org/10.1371/journal.pone.0195740
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author Hao, Zongjie
Fu, Denggang
Ming, Yang
Yang, Jinlong
Huang, Qi
Lin, Weilong
Zhang, Huan
Zhang, Bin
Zhou, Aifen
Hu, Xijiang
Yao, Cong
Dong, Yunping
Ring, Huijun Z.
Ring, Brian Z.
author_facet Hao, Zongjie
Fu, Denggang
Ming, Yang
Yang, Jinlong
Huang, Qi
Lin, Weilong
Zhang, Huan
Zhang, Bin
Zhou, Aifen
Hu, Xijiang
Yao, Cong
Dong, Yunping
Ring, Huijun Z.
Ring, Brian Z.
author_sort Hao, Zongjie
collection PubMed
description Almost one third of the three million people in China suffering severe deafness are children, and 50% of these cases are believed to have genetic components to their etiology. Newborn hearing genetic screening can complement Universal Neonatal Hearing Screening for the diagnosis of congenital hearing loss as well as identifying children at risk for late-onset and progressive hearing impairment. The aim of this joint academic and Ministry of Health project was to prototype a cost effective newborn genetic screen in a community health setting on a city-wide level, and to ascertain the prevalence of variation at loci that have been associated with non-syndromic hearing loss. With the participation of 143 local hospitals in the city of Wuhan, China we screened 142,417 neonates born between May 2014 and Dec. 2015. The variants GJB2 c.235delC, SLC26A4 c.919-2A>G, and mitochondrial variants m.1555A>G and m.1494C>T were assayed using real time PCR. Newborns found to carry a variant were re-assayed by sequencing in duplicate. Within a subset of 707 newborns we assayed using real-time PCR and ARMS-PCR to compare cost, sensitivity and operating procedure. The most frequent hearing loss associated allele detected in this population was the 235delC variant in GJB2 gene. In total, 4289 (3.01%) newborns were found to carry at least one allele of either GJB2 c.235delC, SLC26A4 c.919-2A>G or two assayed MT-RNR1 variants. There was complete accordance between the real-time PCR and the ARMS PCR, though the real-time PCR had a much lower failure rate. Real-time PCR had a lower cost and operating time than ARMS PCR. Ongoing collaboration with the participating hospitals will determine the specificity and sensitivity of the association of the variants with hearing loss at birth and arising in early childhood, allowing an estimation of the benefits of newborn hearing genetic screening in a large-scale community setting.
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spelling pubmed-58929332018-04-20 Large scale newborn deafness genetic screening of 142,417 neonates in Wuhan, China Hao, Zongjie Fu, Denggang Ming, Yang Yang, Jinlong Huang, Qi Lin, Weilong Zhang, Huan Zhang, Bin Zhou, Aifen Hu, Xijiang Yao, Cong Dong, Yunping Ring, Huijun Z. Ring, Brian Z. PLoS One Research Article Almost one third of the three million people in China suffering severe deafness are children, and 50% of these cases are believed to have genetic components to their etiology. Newborn hearing genetic screening can complement Universal Neonatal Hearing Screening for the diagnosis of congenital hearing loss as well as identifying children at risk for late-onset and progressive hearing impairment. The aim of this joint academic and Ministry of Health project was to prototype a cost effective newborn genetic screen in a community health setting on a city-wide level, and to ascertain the prevalence of variation at loci that have been associated with non-syndromic hearing loss. With the participation of 143 local hospitals in the city of Wuhan, China we screened 142,417 neonates born between May 2014 and Dec. 2015. The variants GJB2 c.235delC, SLC26A4 c.919-2A>G, and mitochondrial variants m.1555A>G and m.1494C>T were assayed using real time PCR. Newborns found to carry a variant were re-assayed by sequencing in duplicate. Within a subset of 707 newborns we assayed using real-time PCR and ARMS-PCR to compare cost, sensitivity and operating procedure. The most frequent hearing loss associated allele detected in this population was the 235delC variant in GJB2 gene. In total, 4289 (3.01%) newborns were found to carry at least one allele of either GJB2 c.235delC, SLC26A4 c.919-2A>G or two assayed MT-RNR1 variants. There was complete accordance between the real-time PCR and the ARMS PCR, though the real-time PCR had a much lower failure rate. Real-time PCR had a lower cost and operating time than ARMS PCR. Ongoing collaboration with the participating hospitals will determine the specificity and sensitivity of the association of the variants with hearing loss at birth and arising in early childhood, allowing an estimation of the benefits of newborn hearing genetic screening in a large-scale community setting. Public Library of Science 2018-04-10 /pmc/articles/PMC5892933/ /pubmed/29634755 http://dx.doi.org/10.1371/journal.pone.0195740 Text en © 2018 Hao et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Hao, Zongjie
Fu, Denggang
Ming, Yang
Yang, Jinlong
Huang, Qi
Lin, Weilong
Zhang, Huan
Zhang, Bin
Zhou, Aifen
Hu, Xijiang
Yao, Cong
Dong, Yunping
Ring, Huijun Z.
Ring, Brian Z.
Large scale newborn deafness genetic screening of 142,417 neonates in Wuhan, China
title Large scale newborn deafness genetic screening of 142,417 neonates in Wuhan, China
title_full Large scale newborn deafness genetic screening of 142,417 neonates in Wuhan, China
title_fullStr Large scale newborn deafness genetic screening of 142,417 neonates in Wuhan, China
title_full_unstemmed Large scale newborn deafness genetic screening of 142,417 neonates in Wuhan, China
title_short Large scale newborn deafness genetic screening of 142,417 neonates in Wuhan, China
title_sort large scale newborn deafness genetic screening of 142,417 neonates in wuhan, china
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5892933/
https://www.ncbi.nlm.nih.gov/pubmed/29634755
http://dx.doi.org/10.1371/journal.pone.0195740
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