Highly Effective DNA Extraction Method from Fresh, Frozen, Dried and Clotted Blood Samples

Introduction: Today, with the tremendous potential of genomics and other recent advances in science, the role of science to improve reliable DNA extraction methods is more relevant than ever before. The ideal process for genomic DNA extraction demands high quantities of pure, integral and intact gen...

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Main Authors: Jaleh Barar, Sina Atashpaz, Abolfazl Barzegari, Vala Kafil, Sepideh Zununi Vahed, Farzaneh Soltanzad, Sara Samadi Shams
Format: Article
Language:English
Published: Tabriz University of Medical Sciences 2011-09-01
Series:BioImpacts
Subjects:
Online Access:http://dx.doi.org/10.5681/bi.2011.025
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spelling doaj-0f50d1111b3b46d5b34a3fc746ceb1ab2020-11-24T21:50:09ZengTabriz University of Medical SciencesBioImpacts2228-56522228-56602011-09-0113183187Highly Effective DNA Extraction Method from Fresh, Frozen, Dried and Clotted Blood SamplesJaleh BararSina AtashpazAbolfazl BarzegariVala KafilSepideh Zununi VahedFarzaneh SoltanzadSara Samadi ShamsIntroduction: Today, with the tremendous potential of genomics and other recent advances in science, the role of science to improve reliable DNA extraction methods is more relevant than ever before. The ideal process for genomic DNA extraction demands high quantities of pure, integral and intact genomic DNA (gDNA) from the sample with minimal co-extraction of inhibitors of downstream processes. Here, we report the development of a very rapid, less-hazardous, and high throughput protocol for extracting of high quality DNA from blood samples. Methods: Dried, clotted and ethylene diamine tetra-acetic acid (EDTA) treated fresh and frozen blood samples were extracted using this method in which the quality and integrity of the extracted DNA were corroborated by agarose gel electrophoresis, PCR reaction and DNA digestion using restricted enzyme. The UV spectrophotometric and gel electrophoresis analysis resulted in high A260/A280 ratio (>1.8) with high intactness of DNA. Results: PCR and DNA digestion experiments indicated that the final solutions of extracted DNA contained no inhibitory substances, which confirms that the isolated DNA is of good quality. Conclusion: The high quality and quantity of current method, no enzymatic processing and accordingly its low cost, make it appropriate for DNA extraction not only from human but also from animal blood samples in any molecular biology labs.http://dx.doi.org/10.5681/bi.2011.025Genomic DNA extractionBlood sampleClotted blood
collection DOAJ
language English
format Article
sources DOAJ
author Jaleh Barar
Sina Atashpaz
Abolfazl Barzegari
Vala Kafil
Sepideh Zununi Vahed
Farzaneh Soltanzad
Sara Samadi Shams
spellingShingle Jaleh Barar
Sina Atashpaz
Abolfazl Barzegari
Vala Kafil
Sepideh Zununi Vahed
Farzaneh Soltanzad
Sara Samadi Shams
Highly Effective DNA Extraction Method from Fresh, Frozen, Dried and Clotted Blood Samples
BioImpacts
Genomic DNA extraction
Blood sample
Clotted blood
author_facet Jaleh Barar
Sina Atashpaz
Abolfazl Barzegari
Vala Kafil
Sepideh Zununi Vahed
Farzaneh Soltanzad
Sara Samadi Shams
author_sort Jaleh Barar
title Highly Effective DNA Extraction Method from Fresh, Frozen, Dried and Clotted Blood Samples
title_short Highly Effective DNA Extraction Method from Fresh, Frozen, Dried and Clotted Blood Samples
title_full Highly Effective DNA Extraction Method from Fresh, Frozen, Dried and Clotted Blood Samples
title_fullStr Highly Effective DNA Extraction Method from Fresh, Frozen, Dried and Clotted Blood Samples
title_full_unstemmed Highly Effective DNA Extraction Method from Fresh, Frozen, Dried and Clotted Blood Samples
title_sort highly effective dna extraction method from fresh, frozen, dried and clotted blood samples
publisher Tabriz University of Medical Sciences
series BioImpacts
issn 2228-5652
2228-5660
publishDate 2011-09-01
description Introduction: Today, with the tremendous potential of genomics and other recent advances in science, the role of science to improve reliable DNA extraction methods is more relevant than ever before. The ideal process for genomic DNA extraction demands high quantities of pure, integral and intact genomic DNA (gDNA) from the sample with minimal co-extraction of inhibitors of downstream processes. Here, we report the development of a very rapid, less-hazardous, and high throughput protocol for extracting of high quality DNA from blood samples. Methods: Dried, clotted and ethylene diamine tetra-acetic acid (EDTA) treated fresh and frozen blood samples were extracted using this method in which the quality and integrity of the extracted DNA were corroborated by agarose gel electrophoresis, PCR reaction and DNA digestion using restricted enzyme. The UV spectrophotometric and gel electrophoresis analysis resulted in high A260/A280 ratio (>1.8) with high intactness of DNA. Results: PCR and DNA digestion experiments indicated that the final solutions of extracted DNA contained no inhibitory substances, which confirms that the isolated DNA is of good quality. Conclusion: The high quality and quantity of current method, no enzymatic processing and accordingly its low cost, make it appropriate for DNA extraction not only from human but also from animal blood samples in any molecular biology labs.
topic Genomic DNA extraction
Blood sample
Clotted blood
url http://dx.doi.org/10.5681/bi.2011.025
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