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
Center for Human Genetics, University Hospital Gasthuisberg, Leuven, Belgium.
Nucleic Acids Res. 2006 May 12;34(9):e68. doi: 10.1093/nar/gkl336.
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.
基因组失衡是先天性和后天性疾病的主要原因。因此,非整倍体筛查已成为植入前、产前和产后基因诊断的基石,也是许多后天性疾病诊断检查的常规内容。最近,阵列比较基因组杂交(array CGH)已被引入,作为一种快速且高分辨率的方法,用于检测良性和致病的基因组拷贝数变异。到目前为止,阵列CGH一直是使用从细胞群体中获取的大量DNA来进行的。在此,我们介绍一种阵列CGH方法,该方法能够在一天内从单个淋巴细胞、成纤维细胞和卵裂球中准确检测染色体失衡。从单个成纤维细胞中准确确定了13、18、21三体以及X单体,以及所有其他染色体的正常倍性水平。此外,我们表明可以检测到小至34 Mb的片段缺失。最后,我们证明了检测植入前胚胎来源的单个卵裂球中非整倍体的可能性。这项技术总体上为单细胞基因分析提供了新的可能性,尤其为植入前胚胎的非整倍体筛查和不平衡易位检测开辟了道路。