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首页> 外文期刊>Clinical Chemistry: Journal of the American Association for Clinical Chemists >Allelic Losses of Chromosome 10 in Glioma Tissues Detected by Quantitative Single-Strand Conformation Polymorphism Analysis
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Allelic Losses of Chromosome 10 in Glioma Tissues Detected by Quantitative Single-Strand Conformation Polymorphism Analysis

机译:定量单链构象多态性分析检测神经胶质瘤组织中10号染色体的等位基因丢失。

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Background: Detection of loss of heterozygosity (LOH) in clinical tissue samples is frequently difficult because samples are usually contaminated with noncancerous cells or because tumor cells in single tissues have genetic heterogeneity, and the precision of available techniques is insufficient for reliable analysis in such materials. We hypothesized that single-strand conformation polymorphism (SSCP) analysis can precisely quantify the gene dosage in mixed samples and is suitable for detection of LOH in clinical tissue samples.Methods: We assessed the accuracy of a fluorescent SSCP method for the quantification of single-nucleotide polymorphism (SNP) alleles, using DNAs that were composed of cancerous DNA mixed with noncancerous DNA at various ratios. We applied this method to precisely characterize LOH in glioma tissue samples, using 96 SNPs that were evenly distributed throughout chromosome 10.Results: LOH could be detected even in the cancerous DNA heavily contaminated (up to 80%) with noncancerous DNA. Using this method, we obtained LOH profiles of 56 gliomas with resolution at the SNP level (i.e., 1.5-Mbp interval). Anaplastic astrocytomas exhibited both 10p and 10q LOH, whereas diffuse astrocytomas frequently (63% of the cases) exhibited loss of 10p alone. We also found a possible new LOH region (around 10p13) in gliomas.Conclusions: The present method is effective for precise mapping of LOH region in surgically obtained tumor tissues and could be applicable to the genetic diagnosis of cancers other than gliomas.
机译:背景:检测临床组织样本中的杂合性(LOH)丢失通常很困难,因为样本通常被非癌细胞污染,或者由于单个组织中的肿瘤细胞具有遗传异质性,并且可用技术的精度不足以在此类材料中进行可靠的分析。我们假设单链构象多态性(SSCP)分析可以精确定量混合样品中的基因剂量,并且适合检测临床组织样品中的LOH。方法:我们评估了荧光SSCP方法定量单-构象的准确性核苷酸多态性(SNP)等位基因,使用由癌性DNA与非癌性DNA以各种比例混合而成的DNA。我们使用此方法精确地表征神经胶质瘤组织样本中的LOH,使用96个SNP均匀分布在10号染色体上。结果:即使在被非癌DNA严重污染(高达80%)的癌性DNA中,也可以检测到LOH。使用这种方法,我们获得了56个神经胶质瘤的LOH图谱,其分辨率在SNP水平(即1.5-Mbp间隔)。间变性星形细胞瘤表现出10p和10q LOH,而弥漫性星形细胞瘤则频繁(占病例的63%)表现出10p的丧失。我们还发现了神经胶质瘤中可能存在的新的LOH区域(约10p13)。结论:本方法可有效地通过手术获得的肿瘤组织精确定位LOH区域,可用于神经胶质瘤以外癌症的基因诊断。

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