Euteneuer Jan, Moitinho-Silva Lucas, Courts Cornelius
Institute of Forensic Medicine, University Hospital of Schleswig-Holstein, Arnold-Heller-Strasse 12, 24105, Kiel, Germany.
Institute of Clinical Molecular Biology, University of Kiel, Kiel, Germany.
Forensic Sci Med Pathol. 2024 Dec;20(4):1276-1281. doi: 10.1007/s12024-024-00787-7. Epub 2024 Jan 31.
The contextualization of biological traces generated by severe head injuries can be beneficial for criminal investigations. Here we aimed to identify and validate mRNA candidates for a robust sub-differentiation of forensically and traumatologically relevant brain regions. To this purpose, massively parallel sequencing of whole transcriptomes in sample material taken from four different areas of the cerebral cortex (frontal, temporal, parietal, occipital lobe) was performed, followed by bioinformatical data analysis, classification, and biostatistical candidate selection. Candidates were evaluated by Multiplex-RT-PCR and capillary electrophoresis. Only a weak relative upregulation and solely for candidates expressed in the parietal lobe was observed. Two candidates with upregulation in the cerebellar region (PVALB and CDR2L) were chosen for further investigation; however, PVALB could not reliably and repeatedly be detected in any lobe whereas CDR2L was detectable in all lobes. Consequently, we suggest that differences in mRNA expression between four regions of the cerebral cortex are too small and less pronounced to be useful for and applicable in forensic RNA analysis. We conclude that sub-differentiation of these brain regions via RNA expression analysis is generally not feasible within a forensic scope.
严重头部损伤产生的生物痕迹的情境化对刑事调查可能有益。在此,我们旨在识别和验证用于对法医和创伤学相关脑区进行有力亚分化的mRNA候选物。为此,对取自大脑皮层四个不同区域(额叶、颞叶、顶叶、枕叶)的样本材料进行了全转录组的大规模平行测序,随后进行生物信息数据分析、分类和生物统计学候选物选择。通过多重逆转录聚合酶链反应和毛细管电泳对候选物进行评估。仅观察到微弱的相对上调,且仅针对在顶叶表达的候选物。选择了在小脑区域上调的两个候选物(PVALB和CDR2L)进行进一步研究;然而,在任何脑叶中均无法可靠且重复地检测到PVALB,而CDR2L在所有脑叶中均可检测到。因此,我们认为大脑皮层四个区域之间的mRNA表达差异过小且不太明显,无法用于法医RNA分析,也不适用于该分析。我们得出结论,在法医范围内,通过RNA表达分析对这些脑区进行亚分化通常是不可行的。