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利用荧光蛋白-脂质氧化特征估算精液痕迹的沉积时间。

Estimating the Time of Deposition of Semen Traces using Fluorescence Protein-Lipid Oxidation Signatures.

机构信息

Department of Biomedical Engineering and Physics, Amsterdam University Medical Centers , University of Amsterdam , Meibergdreef 9 , 1105 AZ Amsterdam , The Netherlands.

Co van Ledden Hulsebosch Center , University of Amsterdam , 1098 XH Amsterdam , The Netherlands.

出版信息

Anal Chem. 2019 Mar 5;91(5):3204-3208. doi: 10.1021/acs.analchem.8b05625. Epub 2019 Feb 14.

Abstract

In the forensic field, knowledge about the time of deposition of semen traces is extremely valuable to law enforcement agencies to assess the relevance of the traces and the validity of witness testimonies. However, currently, no method exists that is able to estimate the time of deposition of semen stains, due to the complex chemistry of the constituents and variation in degradation patterns. Here, we demonstrate a non-contact age estimation method to assess the time of deposition of semen stains using fluorescence spectroscopy. Protein-lipid oxidation reactions were monitored in semen stains over time using protein fluorescence and fluorescent oxidation product signatures to reveal distinctive aging patterns. On the basis of the relative amounts of these fluorescent products and the rate at which they are converted, successful age estimation was achieved up to a value of 16 days, with a median absolute error of 1.7 days. We demonstrate here a new tool that can fill the current gap in intelligence about the age of semen traces that has been challenging the forensic community worldwide.

摘要

在法医学领域,了解精液痕迹的沉积时间对于执法机构评估痕迹的相关性和证人证言的有效性极其重要。然而,由于组成成分的复杂化学性质和降解模式的变化,目前还没有能够估计精液痕迹沉积时间的方法。在这里,我们展示了一种非接触式年龄估计方法,使用荧光光谱法评估精液痕迹的沉积时间。通过使用蛋白质荧光和荧光氧化产物特征来监测精液痕迹中蛋白质-脂质氧化反应随时间的变化,从而揭示出独特的老化模式。基于这些荧光产物的相对含量及其转化速度,可以成功地进行年龄估计,最高可达 16 天,中位数绝对误差为 1.7 天。我们在这里展示了一种新工具,可以填补目前全球法医界一直面临的有关精液痕迹年龄的情报空白。

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