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Accumulation of endogenous and exogenous nucleic acids in “Touch DNA” components on hands
Author(s) -
Burrill Julia,
Hotta Rachel,
Daniel Barbara,
Frascione Nunzianda
Publication year - 2021
Publication title -
electrophoresis
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.666
H-Index - 158
eISSN - 1522-2683
pISSN - 0173-0835
DOI - 10.1002/elps.202000371
Subject(s) - dna , nucleic acid , endogeny , lysis , biology , nuclear dna , cell , microbiology and biotechnology , chemistry , biochemistry , gene , mitochondrial dna
Abstract Successful forensic DNA profiling from handled items is increasingly routine in casework. This “touch DNA” is thought to contain both cellular and acellular nucleic acid sources. However, there is little clarity on the origins or characteristics of this material. The cellular component consists of anucleate, terminally differentiated corneocytes (assumed to lack DNA), and the occasional nucleated cell. The acellular DNA source is fragmentary, presumably cell breakdown products. This study examines the relative contributions each component makes to the hand‐secretions (endogenous) and hand‐accumulations (exogenous) by recovering rinses from the inside and outside of worn gloves. Additionally, cellular and acellular DNA was measured at timepoints up to 2 h after hand washing, both with and without interim contact. Microscopic examination confirmed cell morphology and presence of nucleic acids. Following the novel application of a hair keratinocyte lysis method and plasma‐DNA fragment purification to hand rinse samples, DNA profiles were generated from both fractions. Exogenous cell‐free DNA is shown to be a significant source of touch DNA, which reaccumulates quickly, although its amplifiable nuclear alleles are limited. Endogenous DNA is mostly cellular in origin and provides more allelic information consistently over time.