Research Progress in Isolation and Enrichment of Fetal Cells from Maternal Blood

Prenatal diagnosis is an important means of early diagnosis of genetic diseases, which can effectively reduce the risk of birth defects. Free fetal cells, as a carrier of intact fetal genetic material, provide hope for the development of high-sensitivity and high-accuracy prenatal diagnosis technolo...

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Main Authors: Ying Tang, Qiaojin Tang, Haiyan Luo, Xuehui Zhang, Qiuyu Chen, Wenying Tang, Ting Wang, Lihua Yang, Hongwu Liao
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:Journal of Chemistry
Online Access:http://dx.doi.org/10.1155/2022/7131241
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author Ying Tang
Qiaojin Tang
Haiyan Luo
Xuehui Zhang
Qiuyu Chen
Wenying Tang
Ting Wang
Lihua Yang
Hongwu Liao
author_facet Ying Tang
Qiaojin Tang
Haiyan Luo
Xuehui Zhang
Qiuyu Chen
Wenying Tang
Ting Wang
Lihua Yang
Hongwu Liao
author_sort Ying Tang
collection DOAJ
description Prenatal diagnosis is an important means of early diagnosis of genetic diseases, which can effectively reduce the risk of birth defects. Free fetal cells, as a carrier of intact fetal genetic material, provide hope for the development of high-sensitivity and high-accuracy prenatal diagnosis technology. However, the number of fetal cells is small and it is difficult to apply clinically. In recent years, noninvasive prenatal diagnosis (NIPD) technology for fetal genetic material in maternal peripheral blood has developed rapidly, which makes it possible to diagnose genetic diseases by fetal cells in maternal peripheral blood. This article reviewed the current status of fetal cell separation and enrichment technology and its application in noninvasive prenatal diagnosis technology.
format Article
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institution OA Journals
issn 2090-9071
language English
publishDate 2022-01-01
publisher Wiley
record_format Article
series Journal of Chemistry
spelling doaj-art-05febd8fba724fb89747208a92e308ca2025-08-20T02:03:42ZengWileyJournal of Chemistry2090-90712022-01-01202210.1155/2022/7131241Research Progress in Isolation and Enrichment of Fetal Cells from Maternal BloodYing Tang0Qiaojin Tang1Haiyan Luo2Xuehui Zhang3Qiuyu Chen4Wenying Tang5Ting Wang6Lihua Yang7Hongwu Liao8The Affiliated Nanhua HospitalThe Affiliated Nanhua HospitalThe Affiliated Nanhua HospitalThe Hengyang Maternal and Child Health Care HospitalThe Affiliated Nanhua HospitalThe Affiliated Nanhua HospitalThe Affiliated Nanhua HospitalThe Affiliated Hospital of Xiangnan UniversityThe Affiliated Nanhua HospitalPrenatal diagnosis is an important means of early diagnosis of genetic diseases, which can effectively reduce the risk of birth defects. Free fetal cells, as a carrier of intact fetal genetic material, provide hope for the development of high-sensitivity and high-accuracy prenatal diagnosis technology. However, the number of fetal cells is small and it is difficult to apply clinically. In recent years, noninvasive prenatal diagnosis (NIPD) technology for fetal genetic material in maternal peripheral blood has developed rapidly, which makes it possible to diagnose genetic diseases by fetal cells in maternal peripheral blood. This article reviewed the current status of fetal cell separation and enrichment technology and its application in noninvasive prenatal diagnosis technology.http://dx.doi.org/10.1155/2022/7131241
spellingShingle Ying Tang
Qiaojin Tang
Haiyan Luo
Xuehui Zhang
Qiuyu Chen
Wenying Tang
Ting Wang
Lihua Yang
Hongwu Liao
Research Progress in Isolation and Enrichment of Fetal Cells from Maternal Blood
Journal of Chemistry
title Research Progress in Isolation and Enrichment of Fetal Cells from Maternal Blood
title_full Research Progress in Isolation and Enrichment of Fetal Cells from Maternal Blood
title_fullStr Research Progress in Isolation and Enrichment of Fetal Cells from Maternal Blood
title_full_unstemmed Research Progress in Isolation and Enrichment of Fetal Cells from Maternal Blood
title_short Research Progress in Isolation and Enrichment of Fetal Cells from Maternal Blood
title_sort research progress in isolation and enrichment of fetal cells from maternal blood
url http://dx.doi.org/10.1155/2022/7131241
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