Keskintepe L, Sher G, Keskintepe M
Sher Institute for Reproductive Medicine, 3121 S Maryland Pkwy Ste 300, Las Vegas, NV 89109, USA.
Reprod Biomed Online. 2007 Sep;15(3):303-9. doi: 10.1016/s1472-6483(10)60343-4.
Multiple displacement amplification (MDA) renders an increased quantity of genomic DNA available for comparative genomic hybridization (CGH), enabling it to be used to identify genomic imbalances in human blastomeres. The karyotypic lineage of 57 blastocysts derived from 11 ovum donors following ovarian stimulation was examined. CGH was performed on all first polar bodies, and linearly on corresponding second polar bodies and blastomeres. A diploid karyotype was propagated from the prefertilized oocyte to the embryo in 25 (44%) sets of analyses. In 32/57 sets (56%), aneuploidy was detected in the post-fertilized zygotes/embryos and in nine (28%) of such cases the aneuploidy was 'chaotic' (> or =3 chromosomes). In 4/57 cases (7%) mitotic aneuploidy was observed. CGH and fluorescence in-situ hybridization (FISH) were concurrently performed on two blastomeres removed from each of 44 embryos obtained from four patients. In 43 (98%) of these embryos there was a direct karyotypic correlation between nine-probe commercial FISH and CGH. CGH identified > or =15% more chromosomal abnormalities than through FISH alone. The linear propagation using MDA-CGH, of the same karyotypic abnormalities that affected the oocyte of origin, in the corresponding embryos, coupled with the fact that CGH confirmed the aneuploidies identified through FISH, validates the accuracy and reliability of CGH technology.
多重置换扩增(MDA)可产生更多数量的基因组DNA用于比较基因组杂交(CGH),使其能够用于识别人类卵裂球中的基因组失衡。对11名卵子捐赠者在卵巢刺激后获得的57个囊胚的核型谱系进行了检查。对所有第一极体进行CGH检测,并依次对相应的第二极体和卵裂球进行检测。在25组(44%)分析中,从受精前的卵母细胞到胚胎传递的是二倍体核型。在32/57组(56%)中,在受精后的合子/胚胎中检测到非整倍体,其中9例(28%)的非整倍体是“混乱型”(≥3条染色体)。在4/57例(7%)中观察到有丝分裂非整倍体。对从4名患者获得的44个胚胎中各取出的两个卵裂球同时进行CGH和荧光原位杂交(FISH)。在这些胚胎中的43个(98%)中,九探针商业FISH与CGH之间存在直接的核型相关性。CGH识别出的染色体异常比单独使用FISH多≥15%。使用MDA-CGH在相应胚胎中线性传递影响原始卵母细胞的相同核型异常,再加上CGH证实了通过FISH识别出的非整倍体,验证了CGH技术的准确性和可靠性。