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首页> 外文期刊>Forensic science international >Molecular pathology and age estimation.
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Molecular pathology and age estimation.

机译:分子病理学和年龄估计。

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摘要

Over the course of our lifetime a stochastic process leads to gradual alterations of biomolecules on the molecular level, a process that is called ageing. Important changes are observed on the DNA-level as well as on the protein level and are the cause and/or consequence of our 'molecular clock', influenced by genetic as well as environmental parameters. These alterations on the molecular level may aid in forensic medicine to estimate the age of a living person, a dead body or even skeletal remains for identification purposes. Four such important alterations have become the focus of molecular age estimation in the forensic community over the last two decades. The age-dependent accumulation of the 4977bp deletion of mitochondrial DNA and the attrition of telomeres along with ageing are two important processes at the DNA-level. Among a variety of protein alterations, the racemisation of aspartic acid and advanced glycation endproducs have already been tested for forensic applications. At the moment the racemisation of aspartic acid represents the pinnacle of molecular age estimation for three reasons: an excellent standardization of sampling and methods, an evaluation of different variables in many published studies and highest accuracy of results. The three other mentioned alterations often lack standardized procedures, published data are sparse and often have the character of pilot studies. Nevertheless it is important to evaluate molecular methods for their suitability in forensic age estimation, because supplementary methods will help to extend and refine accuracy and reliability of such estimates.
机译:在我们一生的过程中,随机过程会导致生物分子在分子水平上逐渐发生变化,这一过程称为老化。在DNA水平和蛋白质水平上都观察到了重要的变化,这是我们的“分子钟”的起因和/或结果,受基因以及环境参数的影响。在分子水平上的这些改变可能有助于法医学估计用于鉴定的活人,尸体甚至骨骼遗骸的年龄。在过去的二十年中,四个如此重要的变化已成为法医学界分子年龄估计的重点。线粒体DNA的4977bp缺失的年龄依赖性积累以及端粒的损耗以及衰老是DNA级别的两个重要过程。在多种蛋白质改变中,天冬氨酸的消旋化和高级糖基化终产物已经过法医应用测试。目前,由于三方面的原因,天冬氨酸的消旋化代表了分子年龄估计的顶峰:出色的采样和方法标准化,许多已发表研究中对不同变量的评估以及结果的最高准确性。上面提到的其他三个变更通常缺乏标准化的程序,已公布的数据稀疏并且通常具有试点研究的特征。然而,评估分子方法在法医年龄估计中的适用性很重要,因为补充方法将有助于扩展和完善此类估计的准确性和可靠性。

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