Shukla Ritesh Kumar
Division of Biological and Life Sciences, School of Arts and Sciences, Ahmedabad University, Ahmedabad, India.
Forensic Sci Res. 2017 Oct 9;2(4):180-184. doi: 10.1080/20961790.2017.1379893. eCollection 2017.
Postmortem interval (PMI) estimation is a recurring problem in the field of forensic medicine. Conventional methods are effective but are insufficient to estimate accurate and precise time of death or PMI. In addition, degradation of biological samples is another major problem in forensic science which affects the investigation process and misleads the result. Some previous studies reported that DNA fragmentation has strong correlation with PMI. DNA fragmentation increased with prolonged PMI. Comet assay is a rapid sensitive, versatile, reliable and cost effective technique that is specifically used for qualitative and quantitative estimation of nuclear DNA fragmentation. Due to this attribute, comet assay can help to estimate accurate and precise time of death for some extent that is for early PMI estimation. In addition, two confounding factors are responsible for DNA fragmentation: (1) micro-organism; (2) environmental condition. Here, comet assay plays a dual role: (1) partially degraded samples get repaired using repair enzyme; (2) accurate time since deposition can be measured without using repair enzyme. Furthermore, this assay can also help to identify potential exposures of environmental-released chemicals/toxicants and its deleterious effects on human population. In this way, comet assay shows its versatile applications that could be useful for forensic investigation. Therefore, with the help of this review, an attempt was made to explore the versatility of comet assay technique for forensic applications and its future perspective.
死后间隔时间(PMI)的估计是法医学领域中一个反复出现的问题。传统方法虽然有效,但不足以准确精确地估计死亡时间或PMI。此外,生物样本的降解是法医学中的另一个主要问题,它会影响调查过程并误导结果。一些先前的研究报告称,DNA片段化与PMI有很强的相关性。随着PMI延长,DNA片段化增加。彗星试验是一种快速、灵敏、通用、可靠且经济高效的技术,专门用于定性和定量估计核DNA片段化。由于这一特性,彗星试验在一定程度上有助于估计准确精确的死亡时间,即早期PMI估计。此外,有两个混杂因素会导致DNA片段化:(1)微生物;(2)环境条件。在此,彗星试验发挥双重作用:(1)使用修复酶对部分降解的样本进行修复;(2)不使用修复酶即可测量沉积后的准确时间。此外,该试验还可帮助识别环境释放的化学物质/毒物的潜在暴露及其对人群的有害影响。通过这种方式,彗星试验展示了其多用途应用,对法医调查可能有用。因此,借助本综述,试图探索彗星试验技术在法医应用中的多功能性及其未来前景。