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1.
J Forensic Sci ; 60(5): 1322-30, 2015 Sep.
Article in English | MEDLINE | ID: mdl-26258388

ABSTRACT

DNA identification of human remains is often necessary when decedents are skeletonized; however, poor DNA recovery and polymerase chain reaction (PCR) inhibition are frequently encountered, a situation exacerbated by burial. In this research, the utility of integrating soil DNA isolation kits into buried skeletal DNA analysis was evaluated and compared to a standard human DNA extraction kit and organic extraction. The soil kits successfully extracted skeletal DNA at quantities similar to standard methods, although the two kits tested, which differ mechanistically, were not equivalent. Further, the PCR inhibitors calcium and humic acid were effectively removed using the soil kits, whereas collagen was less so. Finally, concordant control region sequences were obtained from human skeletal remains using all four methods. Based on these comparisons, soil DNA isolation kits, which quickened the extraction process, proved to be a viable extraction technique for skeletal remains that resulted in positive identification of a decedent.


Subject(s)
Burial , DNA/isolation & purification , Femur/chemistry , Soil/chemistry , Animals , Calcium , Cattle , Forensic Genetics/instrumentation , Humans , Humic Substances , Polymerase Chain Reaction
2.
J Forensic Sci ; 59(5): 1343-50, 2014 Sep.
Article in English | MEDLINE | ID: mdl-24666154

ABSTRACT

Forensic practitioners and crime laboratories regularly collect and analyze fingernail evidence; however, the best techniques for processing such evidence have not been established. In this study, numerous aspects of fingernail evidence processing-collection of exogenous cells, transportation, purification of DNA, and STR analysis-were analyzed using fingernails harboring applied blood or epithelial cells from scratchings. Autosomal STR mixtures resulted when fingernails were soaked or swabbed, while scrapings rarely generated mixtures but exhibited allelic dropout. Y-STRs yielded single source profiles, with scrapings again showing dropout. A silica-based kit extraction recovered significantly more exogenous DNA than did organic extraction, neither of which was affected by nail polish. Swabbing nails in succession resulted in some cross-contamination from exogenous material, while transporting nails together did not, although there was loss of exogenous cells. Optimized nail processing produced complete Y-STR profiles of male volunteers from female fingernails following scratchings.


Subject(s)
DNA Fingerprinting , DNA/isolation & purification , Fingers , Nails/chemistry , Specimen Handling/methods , Blood , Chromosomes, Human, Y , Epithelial Cells/cytology , Female , Humans , Male , Microsatellite Repeats , Polymerase Chain Reaction , Specimen Handling/instrumentation
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