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GS-2: A Novel Broad-Spectrum Agent for Environmental Microbial Control

The environmental control of microbial pathogens currently relies on compounds that do not exert long-lasting activity on surfaces, are impaired by soil, and contribute to the growing problem of antimicrobial resistance. This study presents the scientific development and characterization of GS-2, a...

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Autores principales: Mayfosh, Alyce J., Day, Zoe I., Unsworth, Nathan B., Liu, Chun-Qiang, Gupta, Ruchi, Haynes, Soraya, Abraham, Rebecca, Abraham, Sam, Shaw, Zo L., Walia, Sumeet, Elbourne, Aaron, Hulett, Mark D., Rau, Thomas F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9496126/
https://www.ncbi.nlm.nih.gov/pubmed/36139131
http://dx.doi.org/10.3390/biom12091293
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author Mayfosh, Alyce J.
Day, Zoe I.
Unsworth, Nathan B.
Liu, Chun-Qiang
Gupta, Ruchi
Haynes, Soraya
Abraham, Rebecca
Abraham, Sam
Shaw, Zo L.
Walia, Sumeet
Elbourne, Aaron
Hulett, Mark D.
Rau, Thomas F.
author_facet Mayfosh, Alyce J.
Day, Zoe I.
Unsworth, Nathan B.
Liu, Chun-Qiang
Gupta, Ruchi
Haynes, Soraya
Abraham, Rebecca
Abraham, Sam
Shaw, Zo L.
Walia, Sumeet
Elbourne, Aaron
Hulett, Mark D.
Rau, Thomas F.
author_sort Mayfosh, Alyce J.
collection PubMed
description The environmental control of microbial pathogens currently relies on compounds that do not exert long-lasting activity on surfaces, are impaired by soil, and contribute to the growing problem of antimicrobial resistance. This study presents the scientific development and characterization of GS-2, a novel, water-soluble ammonium carboxylate salt of capric acid and L-arginine that demonstrates activity against a range of bacteria (particularly Gram-negative bacteria), fungi, and viruses. In real-world surface testing, GS-2 was more effective than a benzalkonium chloride disinfectant at reducing the bacterial load on common touch-point surfaces in a high-traffic building (average 1.6 vs. 32.6 CFUs recovered from surfaces 90 min after application, respectively). Toxicology testing in rats confirmed GS-2 ingredients were rapidly cleared and posed no toxicities to humans or animals. To enhance the time-kill against Gram-positive bacteria, GS-2 was compounded at a specific ratio with a naturally occurring monoterpenoid, thymol, to produce a water-based antimicrobial solution. This GS-2 with thymol formulation could generate a bactericidal effect after five minutes of exposure and a viricidal effect after 10 min of exposure. Further testing of the GS-2 and thymol combination on glass slides demonstrated that the compound retained bactericidal activity for up to 60 days. Based on these results, GS-2 and GS-2 with thymol represent a novel antimicrobial solution that may have significant utility in the long-term reduction of environmental microbial pathogens in a variety of settings.
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spelling pubmed-94961262022-09-23 GS-2: A Novel Broad-Spectrum Agent for Environmental Microbial Control Mayfosh, Alyce J. Day, Zoe I. Unsworth, Nathan B. Liu, Chun-Qiang Gupta, Ruchi Haynes, Soraya Abraham, Rebecca Abraham, Sam Shaw, Zo L. Walia, Sumeet Elbourne, Aaron Hulett, Mark D. Rau, Thomas F. Biomolecules Article The environmental control of microbial pathogens currently relies on compounds that do not exert long-lasting activity on surfaces, are impaired by soil, and contribute to the growing problem of antimicrobial resistance. This study presents the scientific development and characterization of GS-2, a novel, water-soluble ammonium carboxylate salt of capric acid and L-arginine that demonstrates activity against a range of bacteria (particularly Gram-negative bacteria), fungi, and viruses. In real-world surface testing, GS-2 was more effective than a benzalkonium chloride disinfectant at reducing the bacterial load on common touch-point surfaces in a high-traffic building (average 1.6 vs. 32.6 CFUs recovered from surfaces 90 min after application, respectively). Toxicology testing in rats confirmed GS-2 ingredients were rapidly cleared and posed no toxicities to humans or animals. To enhance the time-kill against Gram-positive bacteria, GS-2 was compounded at a specific ratio with a naturally occurring monoterpenoid, thymol, to produce a water-based antimicrobial solution. This GS-2 with thymol formulation could generate a bactericidal effect after five minutes of exposure and a viricidal effect after 10 min of exposure. Further testing of the GS-2 and thymol combination on glass slides demonstrated that the compound retained bactericidal activity for up to 60 days. Based on these results, GS-2 and GS-2 with thymol represent a novel antimicrobial solution that may have significant utility in the long-term reduction of environmental microbial pathogens in a variety of settings. MDPI 2022-09-13 /pmc/articles/PMC9496126/ /pubmed/36139131 http://dx.doi.org/10.3390/biom12091293 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Mayfosh, Alyce J.
Day, Zoe I.
Unsworth, Nathan B.
Liu, Chun-Qiang
Gupta, Ruchi
Haynes, Soraya
Abraham, Rebecca
Abraham, Sam
Shaw, Zo L.
Walia, Sumeet
Elbourne, Aaron
Hulett, Mark D.
Rau, Thomas F.
GS-2: A Novel Broad-Spectrum Agent for Environmental Microbial Control
title GS-2: A Novel Broad-Spectrum Agent for Environmental Microbial Control
title_full GS-2: A Novel Broad-Spectrum Agent for Environmental Microbial Control
title_fullStr GS-2: A Novel Broad-Spectrum Agent for Environmental Microbial Control
title_full_unstemmed GS-2: A Novel Broad-Spectrum Agent for Environmental Microbial Control
title_short GS-2: A Novel Broad-Spectrum Agent for Environmental Microbial Control
title_sort gs-2: a novel broad-spectrum agent for environmental microbial control
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9496126/
https://www.ncbi.nlm.nih.gov/pubmed/36139131
http://dx.doi.org/10.3390/biom12091293
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