Assessment of the Specificity and Stability of Micro-RNAs as a Forensic Gene Marker

Author:

Al-Mawlah Yasir Haider1ORCID,Mohamed Asma’a H.2,Abd-Alameer Ali Mohammad1,Hadi Ameer Mezher1,Abdulabbas Hadi Sajid3,Shaheed Salah Hashim4,Jebor Mohammed Abdullah3,Alsaadi Ali Hmood3

Affiliation:

1. DNA Research Centre, University of Babylon, Babylon, Hillah, 51001, Babylon

2. Biomedical Engineering Department, College of Engineering and Technologies, Al-Mustaqbal University, Hillah, Babylon

3. Department of Biology, College of Sciences, University of Babylon, Babylon

4. College of Applied Medical Sciences, University of Karbalaa, Krbalaa, Iraq

Abstract

Abstract Background: Forensic investigations depend on bodily fluid analysis to identify the perpetrators. Identifying perpetrators requires knowledge about suspects’ body fluids. Due to their durability and tissue-specific expression patterns, miRNAs may be forensic indicators. However, miRNA expression patterns in various bodily fluids are seldom compared. This study examined miR-372, miR-135p, miR-124-3p, miR-16, and miR-10b expression in seminal fluids, blood stains, and vaginal secretions using quantitative PCR using SNORD-47 as a reference gene. This research compared miRNA expression levels in diverse body fluids to assess their potential as forensic biomarkers. MicroRNAs were isolated from forensic blood, seminal fluids, and vaginal mixed stains. Methods: Quantitative PCR measured miR-372, miR-135p, miR-124-3p, miR-16, and miR-10b gene expression. Normalization utilized SNORD-47. These miRNAs were compared in various bodily fluids. Results: The analysis of the results revealed that three bodily fluids have unique miRNA expression patterns. Seminal fluids expressed considerably more miR-135b and miR-10b than vaginal secretions. Vaginal fluids expressed more miR-372 and miR-124-3p than seminal fluids. Blood fluids expressed more miR-126 and miR-16 than seminal and vaginal fluids. Conclusion: MiR-126, miR-16, miR-372, and miR-124-3p were considerably more significant than SNORD-47 in blood, vaginal secretions, and seminal fluids.

Publisher

Medknow

Subject

Biotechnology

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