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Targeted capture enrichment followed by NGS: development and validation of a single comprehensive NIPT for chromosomal aneuploidies, microdeletion syndromes and monogenic diseases

BACKGROUND: Non-invasive prenatal testing (NIPT) has been widely adopted for the detection of fetal aneuploidies and microdeletion syndromes, nevertheless, limited clinical utilization has been reported for the non-invasive prenatal screening of monogenic diseases. In this study, we present the deve...

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Autores principales: Koumbaris, George, Achilleos, Achilleas, Nicolaou, Michalis, Loizides, Charalambos, Tsangaras, Kyriakos, Kypri, Elena, Mina, Petros, Sismani, Carolina, Velissariou, Voula, Christopoulou, Georgia, Constantoulakis, Pantelis, Manolakos, Emmanouil, Papoulidis, Ioannis, Stambouli, Danai, Ioannides, Marios, Patsalis, Philippos
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6873497/
https://www.ncbi.nlm.nih.gov/pubmed/31832098
http://dx.doi.org/10.1186/s13039-019-0459-8
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author Koumbaris, George
Achilleos, Achilleas
Nicolaou, Michalis
Loizides, Charalambos
Tsangaras, Kyriakos
Kypri, Elena
Mina, Petros
Sismani, Carolina
Velissariou, Voula
Christopoulou, Georgia
Constantoulakis, Pantelis
Manolakos, Emmanouil
Papoulidis, Ioannis
Stambouli, Danai
Ioannides, Marios
Patsalis, Philippos
author_facet Koumbaris, George
Achilleos, Achilleas
Nicolaou, Michalis
Loizides, Charalambos
Tsangaras, Kyriakos
Kypri, Elena
Mina, Petros
Sismani, Carolina
Velissariou, Voula
Christopoulou, Georgia
Constantoulakis, Pantelis
Manolakos, Emmanouil
Papoulidis, Ioannis
Stambouli, Danai
Ioannides, Marios
Patsalis, Philippos
author_sort Koumbaris, George
collection PubMed
description BACKGROUND: Non-invasive prenatal testing (NIPT) has been widely adopted for the detection of fetal aneuploidies and microdeletion syndromes, nevertheless, limited clinical utilization has been reported for the non-invasive prenatal screening of monogenic diseases. In this study, we present the development and validation of a single comprehensive NIPT for prenatal screening of chromosomal aneuploidies, microdeletions and 50 autosomal recessive disorders associated with severe or moderate clinical phenotype. RESULTS: We employed a targeted capture enrichment technology powered by custom TArget Capture Sequences (TACS) and multi-engine bioinformatics analysis pipeline to develop and validate a novel NIPT test. This test was validated using 2033 cell-fee DNA (cfDNA) samples from maternal plasma of pregnant women referred for NIPT and paternal genomic DNA. Additionally, 200 amniotic fluid and CVS samples were used for validation purposes. All NIPT samples were correctly classified exhibiting 100% sensitivity (CI 89.7–100%) and 100% specificity (CI 99.8–100%) for chromosomal aneuploidies and microdeletions. Furthermore, 613 targeted causative mutations, of which 87 were unique, corresponding to 21 monogenic diseases, were identified. For the validation of the assay for prenatal diagnosis purposes, all aneuploidies, microdeletions and point mutations were correctly detected in all 200 amniotic fluid and CVS samples. CONCLUSIONS: We present a NIPT for aneuploidies, microdeletions, and monogenic disorders. To our knowledge this is the first time that such a comprehensive NIPT is available for clinical implementation.
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spelling pubmed-68734972019-12-12 Targeted capture enrichment followed by NGS: development and validation of a single comprehensive NIPT for chromosomal aneuploidies, microdeletion syndromes and monogenic diseases Koumbaris, George Achilleos, Achilleas Nicolaou, Michalis Loizides, Charalambos Tsangaras, Kyriakos Kypri, Elena Mina, Petros Sismani, Carolina Velissariou, Voula Christopoulou, Georgia Constantoulakis, Pantelis Manolakos, Emmanouil Papoulidis, Ioannis Stambouli, Danai Ioannides, Marios Patsalis, Philippos Mol Cytogenet Research BACKGROUND: Non-invasive prenatal testing (NIPT) has been widely adopted for the detection of fetal aneuploidies and microdeletion syndromes, nevertheless, limited clinical utilization has been reported for the non-invasive prenatal screening of monogenic diseases. In this study, we present the development and validation of a single comprehensive NIPT for prenatal screening of chromosomal aneuploidies, microdeletions and 50 autosomal recessive disorders associated with severe or moderate clinical phenotype. RESULTS: We employed a targeted capture enrichment technology powered by custom TArget Capture Sequences (TACS) and multi-engine bioinformatics analysis pipeline to develop and validate a novel NIPT test. This test was validated using 2033 cell-fee DNA (cfDNA) samples from maternal plasma of pregnant women referred for NIPT and paternal genomic DNA. Additionally, 200 amniotic fluid and CVS samples were used for validation purposes. All NIPT samples were correctly classified exhibiting 100% sensitivity (CI 89.7–100%) and 100% specificity (CI 99.8–100%) for chromosomal aneuploidies and microdeletions. Furthermore, 613 targeted causative mutations, of which 87 were unique, corresponding to 21 monogenic diseases, were identified. For the validation of the assay for prenatal diagnosis purposes, all aneuploidies, microdeletions and point mutations were correctly detected in all 200 amniotic fluid and CVS samples. CONCLUSIONS: We present a NIPT for aneuploidies, microdeletions, and monogenic disorders. To our knowledge this is the first time that such a comprehensive NIPT is available for clinical implementation. BioMed Central 2019-11-21 /pmc/articles/PMC6873497/ /pubmed/31832098 http://dx.doi.org/10.1186/s13039-019-0459-8 Text en © The Author(s). 2019 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research
Koumbaris, George
Achilleos, Achilleas
Nicolaou, Michalis
Loizides, Charalambos
Tsangaras, Kyriakos
Kypri, Elena
Mina, Petros
Sismani, Carolina
Velissariou, Voula
Christopoulou, Georgia
Constantoulakis, Pantelis
Manolakos, Emmanouil
Papoulidis, Ioannis
Stambouli, Danai
Ioannides, Marios
Patsalis, Philippos
Targeted capture enrichment followed by NGS: development and validation of a single comprehensive NIPT for chromosomal aneuploidies, microdeletion syndromes and monogenic diseases
title Targeted capture enrichment followed by NGS: development and validation of a single comprehensive NIPT for chromosomal aneuploidies, microdeletion syndromes and monogenic diseases
title_full Targeted capture enrichment followed by NGS: development and validation of a single comprehensive NIPT for chromosomal aneuploidies, microdeletion syndromes and monogenic diseases
title_fullStr Targeted capture enrichment followed by NGS: development and validation of a single comprehensive NIPT for chromosomal aneuploidies, microdeletion syndromes and monogenic diseases
title_full_unstemmed Targeted capture enrichment followed by NGS: development and validation of a single comprehensive NIPT for chromosomal aneuploidies, microdeletion syndromes and monogenic diseases
title_short Targeted capture enrichment followed by NGS: development and validation of a single comprehensive NIPT for chromosomal aneuploidies, microdeletion syndromes and monogenic diseases
title_sort targeted capture enrichment followed by ngs: development and validation of a single comprehensive nipt for chromosomal aneuploidies, microdeletion syndromes and monogenic diseases
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6873497/
https://www.ncbi.nlm.nih.gov/pubmed/31832098
http://dx.doi.org/10.1186/s13039-019-0459-8
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