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1.
Croat Med J ; 58(1): 4-13, 2017 Feb 28.
Article in English | MEDLINE | ID: mdl-28252870

ABSTRACT

AIM: To select appropriate preprocessing methods for different substrates by comparing the effects of four different preprocessing methods on touch DNA samples and to determine the effect of various storage times on the results of touch DNA sample analysis. METHOD: Hand touch DNA samples were used to investigate the detection and inspection results of DNA on different substrates. Four preprocessing methods, including the direct cutting method, stubbing procedure, double swab technique, and vacuum cleaner method, were used in this study. DNA was extracted from mock samples with four different preprocessing methods. The best preprocess protocol determined from the study was further used to compare performance after various storage times. DNA extracted from all samples was quantified and amplified using standard procedures. RESULTS: The amounts of DNA and the number of alleles detected on the porous substrates were greater than those on the non-porous substrates. The performances of the four preprocessing methods varied with different substrates. The direct cutting method displayed advantages for porous substrates, and the vacuum cleaner method was advantageous for non-porous substrates. No significant degradation trend was observed as the storage times increased. CONCLUSION: Different substrates require the use of different preprocessing method in order to obtain the highest DNA amount and allele number from touch DNA samples. This study provides a theoretical basis for explorations of touch DNA samples and may be used as a reference when dealing with touch DNA samples in case work.


Subject(s)
DNA Fingerprinting/methods , Hand , Specimen Handling/methods , Touch , Alleles , DNA/analysis , Humans
2.
Fa Yi Xue Za Zhi ; 29(3): 212-5, 221, 2013 Jun.
Article in Zh | MEDLINE | ID: mdl-24303768

ABSTRACT

Y chromosome is a male-specific paternal inherited chromosome. The STR markers on Y chromosome have been widely used in forensic practices. This article summarizes the characteristics of Y-STR and some factors are considered of selecting appropriate Y-STR markers for Chinese population. The prospects of existing and potential forensic applications of Y-STR profiles are discussed including familial excluding, familial searching, crowd source deducing, mixture sample testing, and kinship identifying. The research, development, verification of Y-STR kit, Y-STR mutation rate, and search software are explored and some suggestions are given.


Subject(s)
Asian People/genetics , Chromosomes, Human, Y , Databases, Nucleic Acid , Forensic Medicine/methods , Microsatellite Repeats , DNA/analysis , DNA/genetics , DNA Fingerprinting , Female , Genetics, Population , Genotype , Humans , Male , Mutation , Polymerase Chain Reaction , Reagent Kits, Diagnostic , Software
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