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PMID: 42235064 Published · ppublish English

Ultrasensitive Portable LAMP-Powered Microfluidic Device for On-Site Rapid Forensic Species and Sex Identification.

Analytical chemistry ·Vol. 98 ·No. 23 ·2026-06-16

Zheng Y, Bai H, Wu M, Shen Y, Zhang F, Xiao Y, Yuan R, Qu S, Zou X, Lv M, Hu WW, Liang W

Abstract

Forensic investigations require the rapid and accurate identification of human DNA and sex. Although conventional PCR-based methods are reliable, they are limited by their speed, equipment requirements, and poor suitability for on-site analysis, warranting alternative approaches. Isothermal amplification─particularly, loop-mediated isothermal amplification (LAMP)─is a promising technique because of its speed, sensitivity, and minimal equipment requirements; however, its forensic application is constrained by primer design, extraction requirements, and reagent stability. In this study, we have developed a multiplex LAMP assay that targets the Cyt b and SRY genes for simultaneous human DNA detection and sex identification and further standardized the overall LAMP-based rapid detection workflow. The optimized assay showed a sensitivity of 25 pg, and reagents were formulated into lyophilized beads, which improved portability and long-term on-chip storage (≥9 months). The streamlined workflow integrated sample lysis and amplification and was completed in ≤35 min in a microfluidic device. This enabled rapid and user-friendly point-of-care testing (POCT). Robustness was confirmed by the reliable detection of trace male DNA in mixed samples, and 100% accuracy was confirmed via validation with diverse clinical body fluid specimens. Testing was performed with touch DNA from both simulated and real samples, and the accurate detection rate was 62.5%. Overall, the multiplex LAMP assay provides a sensitive, accurate, and portable solution for the rapid identification of human DNA and sex. The proposed device shows strong potential for forensic POCT application.

Article Info
Journal
Analytical chemistry
Abbr.
Anal Chem
ISSN
1520-6882
Published
2026-06-16
Language
English
Country/Region
United States
NLM ID
0370536
Analysis Services
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