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Single-cell chromosomal imbalances detection by array CGH

Genomic imbalances are a major cause of constitutional and acquired disorders. Therefore, aneuploidy screening has become the cornerstone of preimplantation, prenatal and postnatal genetic diagnosis, as well as a routine aspect of the diagnostic workup of many acquired disorders. Recently, array com...

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Autores principales: Le Caignec, Cedric, Spits, Claudia, Sermon, Karen, De Rycke, Martine, Thienpont, Bernard, Debrock, Sophie, Staessen, Catherine, Moreau, Yves, Fryns, Jean-Pierre, Van Steirteghem, Andre, Liebaers, Inge, Vermeesch, Joris R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3303179/
https://www.ncbi.nlm.nih.gov/pubmed/16698960
http://dx.doi.org/10.1093/nar/gkl336
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author Le Caignec, Cedric
Spits, Claudia
Sermon, Karen
De Rycke, Martine
Thienpont, Bernard
Debrock, Sophie
Staessen, Catherine
Moreau, Yves
Fryns, Jean-Pierre
Van Steirteghem, Andre
Liebaers, Inge
Vermeesch, Joris R.
author_facet Le Caignec, Cedric
Spits, Claudia
Sermon, Karen
De Rycke, Martine
Thienpont, Bernard
Debrock, Sophie
Staessen, Catherine
Moreau, Yves
Fryns, Jean-Pierre
Van Steirteghem, Andre
Liebaers, Inge
Vermeesch, Joris R.
author_sort Le Caignec, Cedric
collection PubMed
description Genomic imbalances are a major cause of constitutional and acquired disorders. Therefore, aneuploidy screening has become the cornerstone of preimplantation, prenatal and postnatal genetic diagnosis, as well as a routine aspect of the diagnostic workup of many acquired disorders. Recently, array comparative genomic hybridization (array CGH) has been introduced as a rapid and high-resolution method for the detection of both benign and disease-causing genomic copy-number variations. Until now, array CGH has been performed using a significant quantity of DNA derived from a pool of cells. Here, we present an array CGH method that accurately detects chromosomal imbalances from a single lymphoblast, fibroblast and blastomere within a single day. Trisomy 13, 18, 21 and monosomy X, as well as normal ploidy levels of all other chromosomes, were accurately determined from single fibroblasts. Moreover, we showed that a segmental deletion as small as 34 Mb could be detected. Finally, we demonstrated the possibility to detect aneuploidies in single blastomeres derived from preimplantation embryos. This technique offers new possibilities for genetic analysis of single cells in general and opens the route towards aneuploidy screening and detection of unbalanced translocations in preimplantation embryos in particular.
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spelling pubmed-33031792012-03-14 Single-cell chromosomal imbalances detection by array CGH Le Caignec, Cedric Spits, Claudia Sermon, Karen De Rycke, Martine Thienpont, Bernard Debrock, Sophie Staessen, Catherine Moreau, Yves Fryns, Jean-Pierre Van Steirteghem, Andre Liebaers, Inge Vermeesch, Joris R. Nucleic Acids Res Methods Online Genomic imbalances are a major cause of constitutional and acquired disorders. Therefore, aneuploidy screening has become the cornerstone of preimplantation, prenatal and postnatal genetic diagnosis, as well as a routine aspect of the diagnostic workup of many acquired disorders. Recently, array comparative genomic hybridization (array CGH) has been introduced as a rapid and high-resolution method for the detection of both benign and disease-causing genomic copy-number variations. Until now, array CGH has been performed using a significant quantity of DNA derived from a pool of cells. Here, we present an array CGH method that accurately detects chromosomal imbalances from a single lymphoblast, fibroblast and blastomere within a single day. Trisomy 13, 18, 21 and monosomy X, as well as normal ploidy levels of all other chromosomes, were accurately determined from single fibroblasts. Moreover, we showed that a segmental deletion as small as 34 Mb could be detected. Finally, we demonstrated the possibility to detect aneuploidies in single blastomeres derived from preimplantation embryos. This technique offers new possibilities for genetic analysis of single cells in general and opens the route towards aneuploidy screening and detection of unbalanced translocations in preimplantation embryos in particular. Oxford University Press 2006 /pmc/articles/PMC3303179/ /pubmed/16698960 http://dx.doi.org/10.1093/nar/gkl336 Text en © The Author 2006. Published by Oxford University Press. All rights reserved The online version of this article has been published under an open access model. Users are entitled to use, reproduce, disseminate, or display the open access version of this article for non-commercial purposes provided that: the original authorship is properly and fully attributed; the Journal and Oxford University Press are attributed as the original place of publication with the correct citation details given; if an article is subsequently reproduced or disseminated not in its entirety but only in part or as a derivative work this must be clearly indicated. For commercial re-use, please contact journals.permissions@oxfordjournals.org
spellingShingle Methods Online
Le Caignec, Cedric
Spits, Claudia
Sermon, Karen
De Rycke, Martine
Thienpont, Bernard
Debrock, Sophie
Staessen, Catherine
Moreau, Yves
Fryns, Jean-Pierre
Van Steirteghem, Andre
Liebaers, Inge
Vermeesch, Joris R.
Single-cell chromosomal imbalances detection by array CGH
title Single-cell chromosomal imbalances detection by array CGH
title_full Single-cell chromosomal imbalances detection by array CGH
title_fullStr Single-cell chromosomal imbalances detection by array CGH
title_full_unstemmed Single-cell chromosomal imbalances detection by array CGH
title_short Single-cell chromosomal imbalances detection by array CGH
title_sort single-cell chromosomal imbalances detection by array cgh
topic Methods Online
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3303179/
https://www.ncbi.nlm.nih.gov/pubmed/16698960
http://dx.doi.org/10.1093/nar/gkl336
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