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Prediction of DNA concentration in fingermarks using autofluorescence properties

机译:使用自发荧光性能预测Fingermarks中的DNA浓度

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During criminal investigations trace DNA samples, including fingermarks, are submitted to laboratories for short tandem repeat (STR) analysis. For most common STR analysis systems a minimum amount of input DNA is required. Upon intake by the forensic laboratory the DNA concentration is estimated using quantitative polymerase chain reaction (qPCR) analysis after which most fingermarks are excluded. To tackle the problem of unnecessary processing in the lab, our study aimed to develop a method, which is able to predict the DNA content in fingermarks directly at the crime scene. Upon excitation with a UV Crime-lite, fingermark residues have autofluorescent properties. We hypothesize that the intensity of the autofluorescence signal of the fingermark content correlates to the DNA concentration in fingermarks. In this study, 164 fingermarks were examined on their autofluorescence intensity when excited at 365 nm, the number of nucleated cells, their DNA concentration and the completeness of the STR profiles. No significant correlation was observed between the DNA concentration in fingermarks and the autofluorescence signal, indicating that a high amount of autofluorescence, thus a high amount of biomaterial, does not necessarily guarantee a higher amount of DNA. In addition, the completeness of the STR profiles did not correlate to the autofluorescence signal of fingermarks. A moderate correlation was found between the predicted DNA quantity, based on the number of nucleated cells and the DNA quantity. In summary, the autofluorescence signal of fingermarks cannot directly be used as a guide to select fingermarks for DNA analysis directly at the crime scene. However, predicting the amount of DNA using a sensitive and specific DNA staining method can probably be used to estimate the DNA concentration in touch samples. (C) 2019 Elsevier B.V. All rights reserved.
机译:在犯罪调查期间,痕量DNA样本包括Fingermarks,提交给实验室进行短串联重复(str)分析。对于大多数常见的STR分析系统,需要最小的输入DNA。通过法医实验室进气后,使用定量聚合酶链反应(QPCR)分析估计DNA浓度,之后大多数Fingermarks被排除在外。为了解决实验室的不必要处理问题,我们的研究旨在开发一种方法,该方法能够在犯罪现场直接预测指纹术中的DNA含量。在用紫外线犯罪的激发后,Fingermark残留物具有自发性。我们假设Fingermark含量的自发荧光信号的强度与指状物中的DNA浓度相关。在该研究中,在365nm激发时,在其自发荧光强度,核细胞的数量,其DNA浓度和STR谱的完整性时检查164个Fingermarks。在FingerMarks和自发荧光信号的DNA浓度之间没有观察到显着的相关性,表明大量的自发荧光,因此是大量的生物材料,并不一定能够保证较高量的DNA。此外,STR谱的完整性与Fingermarks的自发荧光信号没有相关。基于核细胞数和DNA量,在预测的DNA量之间发现了中度相关性。总之,Fingermarks的自发荧光信号不能直接用作直接在犯罪现场直接选择DNA分析的指导。然而,可以使用使用敏感和特异性DNA染色方法预测DNA的量来估计触摸样品中的DNA浓度。 (c)2019年Elsevier B.V.保留所有权利。

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