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A promising drug delivery candidate (CS-g-PMDA-CYS-fused gold nanoparticles) for inhibition of multidrug-resistant uropathogenic Serratia marcescens

Antibiotic resistance amongst microbial pathogens is a mounting serious issue in researchers and physicians. Various alternatives to overcome the multidrug-resistant bacterial infections are under search, and biofilm growth inhibition is one of them. In this investigation, a polymeric drug delivery...

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Autores principales: Shi, Ping, Amarnath Praphakar, Rajendran, Deepa, Sadhasivan, Suganya, Kannan, Gupta, Prashant, Ullah, Riaz, Bari, Ahmed, Murugan, Marudhamuthu, Rajan, Mariappan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8216475/
https://www.ncbi.nlm.nih.gov/pubmed/32885688
http://dx.doi.org/10.1080/10717544.2020.1809557
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author Shi, Ping
Amarnath Praphakar, Rajendran
Deepa, Sadhasivan
Suganya, Kannan
Gupta, Prashant
Ullah, Riaz
Bari, Ahmed
Murugan, Marudhamuthu
Rajan, Mariappan
author_facet Shi, Ping
Amarnath Praphakar, Rajendran
Deepa, Sadhasivan
Suganya, Kannan
Gupta, Prashant
Ullah, Riaz
Bari, Ahmed
Murugan, Marudhamuthu
Rajan, Mariappan
author_sort Shi, Ping
collection PubMed
description Antibiotic resistance amongst microbial pathogens is a mounting serious issue in researchers and physicians. Various alternatives to overcome the multidrug-resistant bacterial infections are under search, and biofilm growth inhibition is one of them. In this investigation, a polymeric drug delivery system loaded with multi-serratial drugs to improve the delivery of drugs against urinary tract infection causative Serratia marcescens. The chitosan grafted pyromellitic dianhydride – cysteine (CS-g-PMDA-CYS) was conjugated with AuNPs by using the –SH group of CYS and RF (rifampicin) and INH (isoniazid) were loaded in AuNPs-fused CS-g-PMDA-CYS system. Several physicochemical techniques characterized this fabricated AuNPs/RF/INH/CS-g-PMDA-CYS system. The successful encapsulation of RF and INH in AuNPs-fused CS-g-PMDA-CYS polymer had confirmed, and it observed the loading capacity for RF and INH was 9.02% and 13.12%, respectively. The in vitro drug discharge pattern was perceived high in pH 5.5 compared with pH 7.4. The AuNPs/RF/INH/CS-g-PMDA-CYS escalates 74% of Caenorhabditis elegans survival during Serratia marcescens infection by aiming biofilm development and virulence in S. marcescens. Author postulate that the fabricated system is a promising drug carrier and delivery system for inhibition of multidrug-resistant bacterias like S. marcescens.
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spelling pubmed-82164752021-07-06 A promising drug delivery candidate (CS-g-PMDA-CYS-fused gold nanoparticles) for inhibition of multidrug-resistant uropathogenic Serratia marcescens Shi, Ping Amarnath Praphakar, Rajendran Deepa, Sadhasivan Suganya, Kannan Gupta, Prashant Ullah, Riaz Bari, Ahmed Murugan, Marudhamuthu Rajan, Mariappan Drug Deliv Research Article Antibiotic resistance amongst microbial pathogens is a mounting serious issue in researchers and physicians. Various alternatives to overcome the multidrug-resistant bacterial infections are under search, and biofilm growth inhibition is one of them. In this investigation, a polymeric drug delivery system loaded with multi-serratial drugs to improve the delivery of drugs against urinary tract infection causative Serratia marcescens. The chitosan grafted pyromellitic dianhydride – cysteine (CS-g-PMDA-CYS) was conjugated with AuNPs by using the –SH group of CYS and RF (rifampicin) and INH (isoniazid) were loaded in AuNPs-fused CS-g-PMDA-CYS system. Several physicochemical techniques characterized this fabricated AuNPs/RF/INH/CS-g-PMDA-CYS system. The successful encapsulation of RF and INH in AuNPs-fused CS-g-PMDA-CYS polymer had confirmed, and it observed the loading capacity for RF and INH was 9.02% and 13.12%, respectively. The in vitro drug discharge pattern was perceived high in pH 5.5 compared with pH 7.4. The AuNPs/RF/INH/CS-g-PMDA-CYS escalates 74% of Caenorhabditis elegans survival during Serratia marcescens infection by aiming biofilm development and virulence in S. marcescens. Author postulate that the fabricated system is a promising drug carrier and delivery system for inhibition of multidrug-resistant bacterias like S. marcescens. Taylor & Francis 2020-09-04 /pmc/articles/PMC8216475/ /pubmed/32885688 http://dx.doi.org/10.1080/10717544.2020.1809557 Text en © 2020 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Shi, Ping
Amarnath Praphakar, Rajendran
Deepa, Sadhasivan
Suganya, Kannan
Gupta, Prashant
Ullah, Riaz
Bari, Ahmed
Murugan, Marudhamuthu
Rajan, Mariappan
A promising drug delivery candidate (CS-g-PMDA-CYS-fused gold nanoparticles) for inhibition of multidrug-resistant uropathogenic Serratia marcescens
title A promising drug delivery candidate (CS-g-PMDA-CYS-fused gold nanoparticles) for inhibition of multidrug-resistant uropathogenic Serratia marcescens
title_full A promising drug delivery candidate (CS-g-PMDA-CYS-fused gold nanoparticles) for inhibition of multidrug-resistant uropathogenic Serratia marcescens
title_fullStr A promising drug delivery candidate (CS-g-PMDA-CYS-fused gold nanoparticles) for inhibition of multidrug-resistant uropathogenic Serratia marcescens
title_full_unstemmed A promising drug delivery candidate (CS-g-PMDA-CYS-fused gold nanoparticles) for inhibition of multidrug-resistant uropathogenic Serratia marcescens
title_short A promising drug delivery candidate (CS-g-PMDA-CYS-fused gold nanoparticles) for inhibition of multidrug-resistant uropathogenic Serratia marcescens
title_sort promising drug delivery candidate (cs-g-pmda-cys-fused gold nanoparticles) for inhibition of multidrug-resistant uropathogenic serratia marcescens
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8216475/
https://www.ncbi.nlm.nih.gov/pubmed/32885688
http://dx.doi.org/10.1080/10717544.2020.1809557
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