Department of Laboratory Medicine, Faculty of Medicine and Health, Örebro University, Örebro, Sweden.
Department of Forensic Genetics and Forensic Toxicology, National Board of Forensic Medicine, Linköping, Sweden.
Int J Legal Med. 2023 Jul;137(4):1215-1234. doi: 10.1007/s00414-022-02906-x. Epub 2022 Nov 8.
Forensic molecular autopsies have emerged as a tool for medical examiners to establish the cause of death. It is particularly useful in sudden unexplained deaths where the cause of death cannot be determined with a regular medical autopsy. We provide the first study of exome data from formalin-fixed paraffin-embedded samples (FFPE) paired with data from high-quality blood samples in forensic applications. The approach allows exploration of the potential to use FFPE samples for molecular autopsies and identify variants in extensive exome data. We leverage the high uniformity of the hybridization capture approach provided by Twist Bioscience to target the complete exome and sequence the libraries on a NextSeq 550. Our findings suggest that exome sequencing is feasible for 24 out of a total of 35 included FFPE samples. When successful, the coverage across the exome is comparatively high (> 90% covered to 20X) and uniform (fold80 below 1.5). Detailed variant comparisons for matched FFPE and blood samples show high concordance with few false variants (positive predictive value of 0.98 and a sensitivity of 0.97) with no distinct FFPE artefacts. Ultimately, we apply carefully constructed forensic gene panels in a stepwise manner to find genetic variants associated with the clinical phenotype and with relevance to the sudden unexplained death.
法医分子解剖已成为法医确定死亡原因的一种工具。在死因无法通过常规医学解剖确定的突发性不明原因死亡中,它特别有用。我们提供了法医应用中首次对福尔马林固定石蜡包埋(FFPE)样本与高质量血液样本数据进行外显子组数据研究。该方法探索了使用 FFPE 样本进行分子解剖并识别广泛外显子组数据中变体的潜力。我们利用 Twist Bioscience 提供的杂交捕获方法的高度均一性,靶向整个外显子,并在 NextSeq 550 上对文库进行测序。我们的研究结果表明,总共 35 个包含的 FFPE 样本中有 24 个可以进行外显子组测序。成功时,外显子组的覆盖度相对较高(>90%覆盖度达 20X)且均匀(fold80 低于 1.5)。匹配的 FFPE 和血液样本的详细变异比较显示出高度一致性,假变体较少(阳性预测值为 0.98,灵敏度为 0.97),没有明显的 FFPE 伪影。最终,我们以分步的方式仔细构建法医基因面板,以找到与临床表型相关且与突发性不明原因死亡相关的遗传变异。