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Durable Surfaces from Film-Forming Silver Assemblies for Long-Term Zero Bacterial Adhesion without Toxicity

[Image: see text] The long-term prevention of biofilm formation on the surface of indwelling medical devices remains a challenge. Silver has been reutilized in recent years for combating biofilm formation due to its indisputable bactericidal potency; however, the toxicity, low stability, and short-t...

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Autores principales: Yazdani-Ahmadabadi, Hossein, Felix, Demian F., Yu, Kai, Yeh, Han H., Luo, Haiming D., Khoddami, Sara, Takeuchi, Lily E., Alzahrani, Amal, Abbina, Srinivas, Mei, Yan, Fazli, Ladan, Grecov, Dana, Lange, Dirk, Kizhakkedathu, Jayachandran N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9136974/
https://www.ncbi.nlm.nih.gov/pubmed/35647287
http://dx.doi.org/10.1021/acscentsci.1c01556
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author Yazdani-Ahmadabadi, Hossein
Felix, Demian F.
Yu, Kai
Yeh, Han H.
Luo, Haiming D.
Khoddami, Sara
Takeuchi, Lily E.
Alzahrani, Amal
Abbina, Srinivas
Mei, Yan
Fazli, Ladan
Grecov, Dana
Lange, Dirk
Kizhakkedathu, Jayachandran N.
author_facet Yazdani-Ahmadabadi, Hossein
Felix, Demian F.
Yu, Kai
Yeh, Han H.
Luo, Haiming D.
Khoddami, Sara
Takeuchi, Lily E.
Alzahrani, Amal
Abbina, Srinivas
Mei, Yan
Fazli, Ladan
Grecov, Dana
Lange, Dirk
Kizhakkedathu, Jayachandran N.
author_sort Yazdani-Ahmadabadi, Hossein
collection PubMed
description [Image: see text] The long-term prevention of biofilm formation on the surface of indwelling medical devices remains a challenge. Silver has been reutilized in recent years for combating biofilm formation due to its indisputable bactericidal potency; however, the toxicity, low stability, and short-term activity of the current silver coatings have limited their use. Here, we report the development of silver-based film-forming antibacterial engineered (SAFE) assemblies for the generation of durable lubricous antibiofilm surface long-term activity without silver toxicity that was applicable to diverse materials via a highly scalable dip/spray/solution-skinning process. The SAFE coating was obtained through a large-scale screening, resulting in effective incorporation of silver nanoparticles (∼10 nm) into a stable nonsticky coating with high surface hierarchy and coverage, which guaranteed sustained silver release. The lead coating showed zero bacterial adhesion over a 1 month experiment in the presence of a high load of diverse bacteria, including difficult-to-kill and stone-forming strains. The SAFE coating showed high biocompatibility and excellent antibiofilm activity in vivo.
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spelling pubmed-91369742022-05-28 Durable Surfaces from Film-Forming Silver Assemblies for Long-Term Zero Bacterial Adhesion without Toxicity Yazdani-Ahmadabadi, Hossein Felix, Demian F. Yu, Kai Yeh, Han H. Luo, Haiming D. Khoddami, Sara Takeuchi, Lily E. Alzahrani, Amal Abbina, Srinivas Mei, Yan Fazli, Ladan Grecov, Dana Lange, Dirk Kizhakkedathu, Jayachandran N. ACS Cent Sci [Image: see text] The long-term prevention of biofilm formation on the surface of indwelling medical devices remains a challenge. Silver has been reutilized in recent years for combating biofilm formation due to its indisputable bactericidal potency; however, the toxicity, low stability, and short-term activity of the current silver coatings have limited their use. Here, we report the development of silver-based film-forming antibacterial engineered (SAFE) assemblies for the generation of durable lubricous antibiofilm surface long-term activity without silver toxicity that was applicable to diverse materials via a highly scalable dip/spray/solution-skinning process. The SAFE coating was obtained through a large-scale screening, resulting in effective incorporation of silver nanoparticles (∼10 nm) into a stable nonsticky coating with high surface hierarchy and coverage, which guaranteed sustained silver release. The lead coating showed zero bacterial adhesion over a 1 month experiment in the presence of a high load of diverse bacteria, including difficult-to-kill and stone-forming strains. The SAFE coating showed high biocompatibility and excellent antibiofilm activity in vivo. American Chemical Society 2022-04-27 2022-05-25 /pmc/articles/PMC9136974/ /pubmed/35647287 http://dx.doi.org/10.1021/acscentsci.1c01556 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Yazdani-Ahmadabadi, Hossein
Felix, Demian F.
Yu, Kai
Yeh, Han H.
Luo, Haiming D.
Khoddami, Sara
Takeuchi, Lily E.
Alzahrani, Amal
Abbina, Srinivas
Mei, Yan
Fazli, Ladan
Grecov, Dana
Lange, Dirk
Kizhakkedathu, Jayachandran N.
Durable Surfaces from Film-Forming Silver Assemblies for Long-Term Zero Bacterial Adhesion without Toxicity
title Durable Surfaces from Film-Forming Silver Assemblies for Long-Term Zero Bacterial Adhesion without Toxicity
title_full Durable Surfaces from Film-Forming Silver Assemblies for Long-Term Zero Bacterial Adhesion without Toxicity
title_fullStr Durable Surfaces from Film-Forming Silver Assemblies for Long-Term Zero Bacterial Adhesion without Toxicity
title_full_unstemmed Durable Surfaces from Film-Forming Silver Assemblies for Long-Term Zero Bacterial Adhesion without Toxicity
title_short Durable Surfaces from Film-Forming Silver Assemblies for Long-Term Zero Bacterial Adhesion without Toxicity
title_sort durable surfaces from film-forming silver assemblies for long-term zero bacterial adhesion without toxicity
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9136974/
https://www.ncbi.nlm.nih.gov/pubmed/35647287
http://dx.doi.org/10.1021/acscentsci.1c01556
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