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首页> 外文期刊>International Journal of Legal Medicine >In situ labeling of DNA reveals interindividual variation in nuclear DNA breakdown in hair and may be useful to predict success of forensic genotyping of hair
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In situ labeling of DNA reveals interindividual variation in nuclear DNA breakdown in hair and may be useful to predict success of forensic genotyping of hair

机译:DNA的原位标记揭示了头发中核DNA分解的个体差异,可能有助于预测头发的法医基因分型成功

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摘要

Hair fibers are formed by keratinocytes of the hair follicle in a process that involves the breakdown of the nucleus including DNA. Accordingly, DNA can be isolated with high yield from the hair bulb which contains living keratinocytes, whereas it is difficult to prepare from the distal portions of hair fibers and from shed hair. Nevertheless, forensic investigations are successful in a fraction of shed hair samples found at crime scenes. Here, we report that interindividual differences in the completeness of DNA removal from hair corneocytes are major determinants of DNA content and success rates of forensic investigations of hair. Distal hair samples were permeabilized with ammonia and incubated with the DNA-specific dye Hoechst 33258 to label DNA in situ. Residual nuclear DNA was visualized under the fluorescence microscope. Hair from some donors did not contain any stainable nuclei, whereas hair of other donors contained a variable number of DNA-positive nuclear remnants. The number of DNA-containing nuclear remnants per millimeter of hair correlated with the amount of DNA that could be extracted and amplified by quantitative PCR. When individual hairs were investigated, only hairs in which DNA could be labeled in situ gave positive results in short tandem repeat typing. This study reveals that the completeness of DNA degradation during cornification of the hair is a polymorphic trait. Furthermore, our results suggest that in situ labeling of DNA in hair may be useful for predicting the probability of success of forensic analysis of nuclear DNA in shed hair.
机译:毛发纤维是由毛囊的角质形成细胞形成的,该过程涉及包括DNA在内的细胞核的分解。因此,可以从含有活的角质形成细胞的毛囊中以高产率分离DNA,而很难从毛发纤维的远端部分和从毛发中制备DNA。然而,法医调查在犯罪现场发现的一小部分脱落的头发样本中是成功的。在这里,我们报道,从头发角质细胞中去除DNA的完整性之间的个体差异是DNA含量和头发法医调查成功率的主要决定因素。用氨水渗透远端毛发样品,并与DNA特异性染料Hoechst 33258孵育,以就地标记DNA。在荧光显微镜下观察残留的核DNA。来自一些供体的头发不包含任何可染色的细胞核,而其他供体的头发则包含可变数量的DNA阳性核残留物。每毫米头发中含有DNA的核残留物的数量与可以通过定量PCR提取和扩增的DNA的数量相关。当调查单个头发时,只有可以在原位标记DNA的头发才能在短串联重复键入中获得积极的结果。这项研究表明,在头发角质化过程中DNA降解的完整性是一种多态性状。此外,我们的结果表明,头发中DNA的原位标记可能有助于预测脱发后的核DNA法医分析成功的可能性。

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