Literature DB >> 16708611

[Estimating the efficiency of DNA isolation methods in semen, blood and saliva stains using the QuantiBlot system].

Adam Prośniak1, Ewa Gloc, Jarosław Berent, Katarzyna Babol-Pokora, Renata Jacewicz, Stefan Szram.   

Abstract

The aim of this study was to compare and select the optimal method of DNA isolation from blood, semen and saliva stains, as well as to determine appropriate conditions for employing amplification kits for identification of individual persons [brak w polskim tekście]. The materials analyzed in this study consisted of stains of blood, semen and saliva samples stored for a year, and stains of blood stored for a month. Seven various methods of isolation were compared: the Fast DNA kit (Qbiogene), phenol/chloroform extraction, Sherlock (DNA II Gdansk), Dneasy (Qiagen), Wizard Genomic Purification Kit (Promega), Chelex 100 (Biorad) and salting out proteins method. After the isolation, the quantity of DNA was measured with QuantiBlot [brak w polskim tekście]. The highest DNA concentration in bloodstains stored for one year and one month was observed employing the salting out proteins method. The phenol-chloroform extraction method was also found to produce reasonably good results. Isolation from blood and semen with salting-out method appeared to be the most effective. The phenol/chloroform method was dependent on the age and origin of the materials [brak w polskim tekście]. The Sherlock kit was proven to be effective in blood samples stored for one year. DNA concentration values obtained in semen and saliva samples were very low and characterized by a low repeatability.

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Year:  2006        PMID: 16708611

Source DB:  PubMed          Journal:  Arch Med Sadowej Kryminol        ISSN: 0324-8267


  1 in total

1.  Technical brief: isolation of total DNA from postmortem human eye tissues and quality comparison between iris and retina.

Authors:  Jay Ching Chieh Wang; Aikun Wang; Jiangyuan Gao; Sijia Cao; Idris Samad; Dean Zhang; Carol Ritland; Jing Z Cui; Joanne Aiko Matsubara
Journal:  Mol Vis       Date:  2012-12-22       Impact factor: 2.367

  1 in total

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