DNA Extraction from Liquid Blood Using QIAamp
- 1 September 1997
- journal article
- other
- Published by ASTM International in Journal of Forensic Sciences
- Vol. 42 (5) , 893-896
- https://doi.org/10.1520/jfs14226j
Abstract
The implementation of convicted felon DNA data-bases by increasing numbers of forensic science laboratories has engendered the need for a quick, efficient, and cost-effective method for the isolation of DNA from liquid blood samples. Because of the large numbers of samples involved, the ideal method would combine high throughput capability with maximal yield, high quality, and minimal time. We have found that the QIAGEN QIAamp Blood Kit/Tissue Kit satisfy all of these requirements. This simple, low cost spin column procedure yields purified DNA of approximately 20–30 kb that can be used directly in PCR or other enzymatic reactions without further purification. We compared the QIAamp isolation procedure to the standard SDS-Proteinase K/organic extraction/microcon purification procedure currently used by many forensic laboratories. The QIAamp procedure consistently gave a two- to four-fold increased yield relative to the organic extraction procedure. The DNA obtained was of high molecular weight, exhibited little degradation, and was suitable for RFLP and PCR analyses. We have found QIAGEN's QIAamp DNA isolation procedure to be ideally suited for preparation of samples for DNA databasing.Keywords
This publication has 7 references indexed in Scilit:
- Detection of specific sequences among DNA fragments separated by gel electrophoresisPublished by Elsevier ,2006
- A PCR-Based Strategy for ABO Genotype DeterminationJournal of Forensic Sciences, 1996
- Validation of the AmpliFLP™ D1S80 PCR Amplification Kit for Forensic Casework Analysis According to TWGDAM GuidelinesJournal of Forensic Sciences, 1995
- The Assessment of Frequency Estimates of Hae III-Generated VNTR Profiles in Various Reference DatabasesJournal of Forensic Sciences, 1994
- Amplification of a Variable Number of Tandem Repeats (VNTR) Locus (pMCT118) by the Polymerase Chain Reaction (PCR) and Its Application to Forensic ScienceJournal of Forensic Sciences, 1990