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Semiconductor Sequencing Analysis of Chromosomal Copy Number Variations in Spontaneous Miscarriage

BACKGROUND: Array CGH is the criterion standard for identifying copy number variations (CNV), but the restrictive requirement of DNA quality and relatively high cost prevent the use of this method as a general assay in hospitals in developing countries. Our principal objective was to determine wheth...

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Autores principales: Wang, Ming-zhu, Lin, Fang-qin, Li, Min, He, Dan, Yu, Qi-hong, Yang, Xue-xi, Wu, Ying-song
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Scientific Literature, Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5707912/
https://www.ncbi.nlm.nih.gov/pubmed/29162795
http://dx.doi.org/10.12659/MSM.905094
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author Wang, Ming-zhu
Lin, Fang-qin
Li, Min
He, Dan
Yu, Qi-hong
Yang, Xue-xi
Wu, Ying-song
author_facet Wang, Ming-zhu
Lin, Fang-qin
Li, Min
He, Dan
Yu, Qi-hong
Yang, Xue-xi
Wu, Ying-song
author_sort Wang, Ming-zhu
collection PubMed
description BACKGROUND: Array CGH is the criterion standard for identifying copy number variations (CNV), but the restrictive requirement of DNA quality and relatively high cost prevent the use of this method as a general assay in hospitals in developing countries. Our principal objective was to determine whether the semiconductor sequencing platform (SSP) could be an alternative method in CNV detection for spontaneous miscarriage. MATERIAL/METHODS: A total of 443 spontaneous miscarriage samples were collected and subjected to low-coverage (0.1X) whole-genome analysis by SSP. These samples were verified by array CGH and 8 low-quality DNA samples were analyzed by SSP and validated by MLPA. RESULTS: SSP detected 195 chromosomal numerical abnormalities, 74 CNVs, and 9 mosaicisms among the 435 samples. Among 74 CNV abnormalities, SSP detected an equal number (56) of CNVs 56 >1 Mb with array CGH. However, SSP missed more 6 cases CNVs <1 Mb than array CGH (12 vs. 18). SSP detected more mosaicisms than array CGH (9 vs. 7, p=0.5). Interestingly, SSP detected the mosaicism which had only 8% X monosomy, which was much lower than the minimal percentage of monosomy that was detected by array CGH. CONCLUSIONS: SSP is of equivalent efficacy as array CGH in detecting CNVs >1 Mb, and performs better in identifying mosaicism. With the merits of low cost and less demand of input DNA, SSP is a good alternative for use in genetic diagnosis.
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spelling pubmed-57079122017-12-06 Semiconductor Sequencing Analysis of Chromosomal Copy Number Variations in Spontaneous Miscarriage Wang, Ming-zhu Lin, Fang-qin Li, Min He, Dan Yu, Qi-hong Yang, Xue-xi Wu, Ying-song Med Sci Monit Clinical Research BACKGROUND: Array CGH is the criterion standard for identifying copy number variations (CNV), but the restrictive requirement of DNA quality and relatively high cost prevent the use of this method as a general assay in hospitals in developing countries. Our principal objective was to determine whether the semiconductor sequencing platform (SSP) could be an alternative method in CNV detection for spontaneous miscarriage. MATERIAL/METHODS: A total of 443 spontaneous miscarriage samples were collected and subjected to low-coverage (0.1X) whole-genome analysis by SSP. These samples were verified by array CGH and 8 low-quality DNA samples were analyzed by SSP and validated by MLPA. RESULTS: SSP detected 195 chromosomal numerical abnormalities, 74 CNVs, and 9 mosaicisms among the 435 samples. Among 74 CNV abnormalities, SSP detected an equal number (56) of CNVs 56 >1 Mb with array CGH. However, SSP missed more 6 cases CNVs <1 Mb than array CGH (12 vs. 18). SSP detected more mosaicisms than array CGH (9 vs. 7, p=0.5). Interestingly, SSP detected the mosaicism which had only 8% X monosomy, which was much lower than the minimal percentage of monosomy that was detected by array CGH. CONCLUSIONS: SSP is of equivalent efficacy as array CGH in detecting CNVs >1 Mb, and performs better in identifying mosaicism. With the merits of low cost and less demand of input DNA, SSP is a good alternative for use in genetic diagnosis. International Scientific Literature, Inc. 2017-11-22 /pmc/articles/PMC5707912/ /pubmed/29162795 http://dx.doi.org/10.12659/MSM.905094 Text en © Med Sci Monit, 2017 This work is licensed under Creative Common Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0 (https://creativecommons.org/licenses/by-nc-nd/4.0/) )
spellingShingle Clinical Research
Wang, Ming-zhu
Lin, Fang-qin
Li, Min
He, Dan
Yu, Qi-hong
Yang, Xue-xi
Wu, Ying-song
Semiconductor Sequencing Analysis of Chromosomal Copy Number Variations in Spontaneous Miscarriage
title Semiconductor Sequencing Analysis of Chromosomal Copy Number Variations in Spontaneous Miscarriage
title_full Semiconductor Sequencing Analysis of Chromosomal Copy Number Variations in Spontaneous Miscarriage
title_fullStr Semiconductor Sequencing Analysis of Chromosomal Copy Number Variations in Spontaneous Miscarriage
title_full_unstemmed Semiconductor Sequencing Analysis of Chromosomal Copy Number Variations in Spontaneous Miscarriage
title_short Semiconductor Sequencing Analysis of Chromosomal Copy Number Variations in Spontaneous Miscarriage
title_sort semiconductor sequencing analysis of chromosomal copy number variations in spontaneous miscarriage
topic Clinical Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5707912/
https://www.ncbi.nlm.nih.gov/pubmed/29162795
http://dx.doi.org/10.12659/MSM.905094
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