A comparison of Lyse-It to other cellular sample preparation, bacterial lysing, and DNA fragmentation technologies.
The ability for safe and rapid pathogenic sample transportation and subsequent detection is an increasing challenge throughout the world. Herein, we describe and use bead-beating, vortex, sonication, 903 protein saver cards, and Lyse-It methods, aiming to inactivate Gram-positive and -negative bacte...
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doaj-2bafc6d4f6874f41af329aa36138b88d2021-03-03T20:33:38ZengPublic Library of Science (PLoS)PLoS ONE1932-62032019-01-01147e022010210.1371/journal.pone.0220102A comparison of Lyse-It to other cellular sample preparation, bacterial lysing, and DNA fragmentation technologies.Tonya M SantausShan LiLahari SahaWilbur H ChenSiya BhagatO Colin StineChris D GeddesThe ability for safe and rapid pathogenic sample transportation and subsequent detection is an increasing challenge throughout the world. Herein, we describe and use bead-beating, vortex, sonication, 903 protein saver cards, and Lyse-It methods, aiming to inactivate Gram-positive and -negative bacteria with subsequent genome DNA (quantitative Polymerase Chain Reaction) qPCR detection. The basic concepts behind the four chosen technologies is their versatility, cost, and ease of use in developed and underdeveloped countries. The four methods target the testing of bacterial resilience, cellular extraction from general and complex media and subsequent DNA extraction for qPCR detection and amplification. These results demonstrate that conventional high temperature heating, 903 protein saver cards, and Lyse-It are all viable options for inactivating bacterial growth for safe shipping. Additionally, Lyse-It was found to be particularly useful as this technology can inactivate bacteria, extract cells from 903 protein saver cards, lyse bacterial cells, and additionally keep genomic DNA viable for qPCR detection.https://doi.org/10.1371/journal.pone.0220102 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Tonya M Santaus Shan Li Lahari Saha Wilbur H Chen Siya Bhagat O Colin Stine Chris D Geddes |
spellingShingle |
Tonya M Santaus Shan Li Lahari Saha Wilbur H Chen Siya Bhagat O Colin Stine Chris D Geddes A comparison of Lyse-It to other cellular sample preparation, bacterial lysing, and DNA fragmentation technologies. PLoS ONE |
author_facet |
Tonya M Santaus Shan Li Lahari Saha Wilbur H Chen Siya Bhagat O Colin Stine Chris D Geddes |
author_sort |
Tonya M Santaus |
title |
A comparison of Lyse-It to other cellular sample preparation, bacterial lysing, and DNA fragmentation technologies. |
title_short |
A comparison of Lyse-It to other cellular sample preparation, bacterial lysing, and DNA fragmentation technologies. |
title_full |
A comparison of Lyse-It to other cellular sample preparation, bacterial lysing, and DNA fragmentation technologies. |
title_fullStr |
A comparison of Lyse-It to other cellular sample preparation, bacterial lysing, and DNA fragmentation technologies. |
title_full_unstemmed |
A comparison of Lyse-It to other cellular sample preparation, bacterial lysing, and DNA fragmentation technologies. |
title_sort |
comparison of lyse-it to other cellular sample preparation, bacterial lysing, and dna fragmentation technologies. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2019-01-01 |
description |
The ability for safe and rapid pathogenic sample transportation and subsequent detection is an increasing challenge throughout the world. Herein, we describe and use bead-beating, vortex, sonication, 903 protein saver cards, and Lyse-It methods, aiming to inactivate Gram-positive and -negative bacteria with subsequent genome DNA (quantitative Polymerase Chain Reaction) qPCR detection. The basic concepts behind the four chosen technologies is their versatility, cost, and ease of use in developed and underdeveloped countries. The four methods target the testing of bacterial resilience, cellular extraction from general and complex media and subsequent DNA extraction for qPCR detection and amplification. These results demonstrate that conventional high temperature heating, 903 protein saver cards, and Lyse-It are all viable options for inactivating bacterial growth for safe shipping. Additionally, Lyse-It was found to be particularly useful as this technology can inactivate bacteria, extract cells from 903 protein saver cards, lyse bacterial cells, and additionally keep genomic DNA viable for qPCR detection. |
url |
https://doi.org/10.1371/journal.pone.0220102 |
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