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Efficacy and safety of nanohybrids comprising silver nanoparticles and silicate clay for controlling Salmonella infection

Developing effective and safe drugs is imperative for replacing antibiotics and controlling multidrug-resistant microbes. Nanoscale silicate platelet (NSP) and its nanohybrid, silver nanoparticle/NSP (AgNP/NSP), have been developed, and the nanohybrids show a strong and general antibacterial activit...

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Autores principales: Chiao, Shu-Her, Lin, Siou-Hong, Shen, Ching-I, Liao, Jiunn-Wang, Bau, I-Jiuan, Wei, Jiun-Chiou, Tseng, Li-Ping, Hsu, Shan-hui, Lai, Ping-Shan, Lin, Shinn-Zong, Lin, Jiang-Jen, Su, Hong-Lin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3363949/
https://www.ncbi.nlm.nih.gov/pubmed/22654516
http://dx.doi.org/10.2147/IJN.S31594
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author Chiao, Shu-Her
Lin, Siou-Hong
Shen, Ching-I
Liao, Jiunn-Wang
Bau, I-Jiuan
Wei, Jiun-Chiou
Tseng, Li-Ping
Hsu, Shan-hui
Lai, Ping-Shan
Lin, Shinn-Zong
Lin, Jiang-Jen
Su, Hong-Lin
author_facet Chiao, Shu-Her
Lin, Siou-Hong
Shen, Ching-I
Liao, Jiunn-Wang
Bau, I-Jiuan
Wei, Jiun-Chiou
Tseng, Li-Ping
Hsu, Shan-hui
Lai, Ping-Shan
Lin, Shinn-Zong
Lin, Jiang-Jen
Su, Hong-Lin
author_sort Chiao, Shu-Her
collection PubMed
description Developing effective and safe drugs is imperative for replacing antibiotics and controlling multidrug-resistant microbes. Nanoscale silicate platelet (NSP) and its nanohybrid, silver nanoparticle/NSP (AgNP/NSP), have been developed, and the nanohybrids show a strong and general antibacterial activity in vitro. Here, their efficacy for protecting Salmonella-infected chicks from fatality and septicemia was evaluated. Both orally administrated NSP and AgNP/NSP, but not AgNPs alone, effectively reduced the systemic Salmonella infection and mortality. In addition, quantitative Ag analyses demonstrated that Ag deposition from AgNP/NSP in the intestines was less than that from conventional AgNPs, indicating that the presence of NSP for immobilizing AgNPs reduced Ag accumulation in tissue and improved the safety of AgNPs. These in vivo results illustrated that both NSP and AgNP/NSP nanohybrid represent potential agents for controlling enteric bacterial infections.
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spelling pubmed-33639492012-05-31 Efficacy and safety of nanohybrids comprising silver nanoparticles and silicate clay for controlling Salmonella infection Chiao, Shu-Her Lin, Siou-Hong Shen, Ching-I Liao, Jiunn-Wang Bau, I-Jiuan Wei, Jiun-Chiou Tseng, Li-Ping Hsu, Shan-hui Lai, Ping-Shan Lin, Shinn-Zong Lin, Jiang-Jen Su, Hong-Lin Int J Nanomedicine Original Research Developing effective and safe drugs is imperative for replacing antibiotics and controlling multidrug-resistant microbes. Nanoscale silicate platelet (NSP) and its nanohybrid, silver nanoparticle/NSP (AgNP/NSP), have been developed, and the nanohybrids show a strong and general antibacterial activity in vitro. Here, their efficacy for protecting Salmonella-infected chicks from fatality and septicemia was evaluated. Both orally administrated NSP and AgNP/NSP, but not AgNPs alone, effectively reduced the systemic Salmonella infection and mortality. In addition, quantitative Ag analyses demonstrated that Ag deposition from AgNP/NSP in the intestines was less than that from conventional AgNPs, indicating that the presence of NSP for immobilizing AgNPs reduced Ag accumulation in tissue and improved the safety of AgNPs. These in vivo results illustrated that both NSP and AgNP/NSP nanohybrid represent potential agents for controlling enteric bacterial infections. Dove Medical Press 2012 2012-05-14 /pmc/articles/PMC3363949/ /pubmed/22654516 http://dx.doi.org/10.2147/IJN.S31594 Text en © 2012 Chiao et al, publisher and licensee Dove Medical Press Ltd. This is an Open Access article which permits unrestricted noncommercial use, provided the original work is properly cited.
spellingShingle Original Research
Chiao, Shu-Her
Lin, Siou-Hong
Shen, Ching-I
Liao, Jiunn-Wang
Bau, I-Jiuan
Wei, Jiun-Chiou
Tseng, Li-Ping
Hsu, Shan-hui
Lai, Ping-Shan
Lin, Shinn-Zong
Lin, Jiang-Jen
Su, Hong-Lin
Efficacy and safety of nanohybrids comprising silver nanoparticles and silicate clay for controlling Salmonella infection
title Efficacy and safety of nanohybrids comprising silver nanoparticles and silicate clay for controlling Salmonella infection
title_full Efficacy and safety of nanohybrids comprising silver nanoparticles and silicate clay for controlling Salmonella infection
title_fullStr Efficacy and safety of nanohybrids comprising silver nanoparticles and silicate clay for controlling Salmonella infection
title_full_unstemmed Efficacy and safety of nanohybrids comprising silver nanoparticles and silicate clay for controlling Salmonella infection
title_short Efficacy and safety of nanohybrids comprising silver nanoparticles and silicate clay for controlling Salmonella infection
title_sort efficacy and safety of nanohybrids comprising silver nanoparticles and silicate clay for controlling salmonella infection
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3363949/
https://www.ncbi.nlm.nih.gov/pubmed/22654516
http://dx.doi.org/10.2147/IJN.S31594
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