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Oligonucleotide microarray analysis of genomic imbalance in children with mental retardation.

机译:智障儿童基因组失衡的寡核苷酸微阵列分析。

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The cause of mental retardation in one-third to one-half of all affected individuals is unknown. Microscopically detectable chromosomal abnormalities are the most frequently recognized cause, but gain or loss of chromosomal segments that are too small to be seen by conventional cytogenetic analysis has been found to be another important cause. Array-based methods offer a practical means of performing a high-resolution survey of the entire genome for submicroscopic copy-number variants. We studied 100 children with idiopathic mental retardation and normal results of standard chromosomal analysis, by use of whole-genome sampling analysis with Affymetrix GeneChip Human Mapping 100K arrays. We found de novo deletions as small as 178 kb in eight cases, de novo duplications as small as 1.1 Mb in two cases, and unsuspected mosaic trisomy 9 in another case. This technology can detect at least twice as many potentially pathogenic de novo copy-number variants as conventional cytogenetic analysis can in people with mental retardation.
机译:在所有受影响个体中,有三分之一至一半的人智力发育迟缓的原因尚不清楚。显微镜下可检测到的染色体异常是最常见的病因,但是发现染色体片段的得失或丢失太小而无法通过常规细胞遗传学分析看到是另一个重要的原因。基于阵列的方法提供了一种实用的方法,可以对整个基因组进行亚显微拷贝数变异的高分辨率调查。我们使用全基因组抽样分析和Affymetrix GeneChip Human Mapping 100K阵列,研究了100名特发性智力低下和正常染色体分析正常结果的儿童。我们发现8例病例中从头缺失了178 kb,两例病例中从头缺失了1.1 Mb,另一例病例中发现了未怀疑的镶嵌三体性9。这项技术可以检测到的潜在致病性从头复制拷贝数至少是传统的细胞遗传学分析在智障人群中的两倍。

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