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Antibiotic-Loaded Gold Nanoparticles: A Nano-Arsenal against ESBL Producer-Resistant Pathogens

The advent of new antibiotics has helped clinicians to control severe bacterial infections. Despite this, inappropriate and redundant use of antibiotics, inadequate diagnosis, and smart resistant mechanisms developed by pathogens sometimes lead to the failure of treatment strategies. The genotypic a...

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Detalles Bibliográficos
Autores principales: Rizvi, Syed Mohd Danish, Lila, Amr Selim Abu, Moin, Afrasim, Hussain, Talib, Kamal, Mohammad Amjad, Sonbol, Hana, Khafagy, El-Sayed
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9967522/
https://www.ncbi.nlm.nih.gov/pubmed/36839753
http://dx.doi.org/10.3390/pharmaceutics15020430
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author Rizvi, Syed Mohd Danish
Lila, Amr Selim Abu
Moin, Afrasim
Hussain, Talib
Kamal, Mohammad Amjad
Sonbol, Hana
Khafagy, El-Sayed
author_facet Rizvi, Syed Mohd Danish
Lila, Amr Selim Abu
Moin, Afrasim
Hussain, Talib
Kamal, Mohammad Amjad
Sonbol, Hana
Khafagy, El-Sayed
author_sort Rizvi, Syed Mohd Danish
collection PubMed
description The advent of new antibiotics has helped clinicians to control severe bacterial infections. Despite this, inappropriate and redundant use of antibiotics, inadequate diagnosis, and smart resistant mechanisms developed by pathogens sometimes lead to the failure of treatment strategies. The genotypic analysis of clinical samples revealed that the rapid spread of extended-spectrum β-lactamases (ESBLs) genes is one of the most common approaches acquired by bacterial pathogens to become resistant. The scenario compelled the researchers to prioritize the design and development of novel and effective therapeutic options. Nanotechnology has emerged as a plausible groundbreaking tool against resistant infectious pathogens. Numerous reports suggested that inorganic nanomaterials, specifically gold nanoparticles (AuNPs), have converted unresponsive antibiotics into potent ones against multi-drug resistant pathogenic strains. Interestingly, after almost two decades of exhaustive preclinical evaluations, AuNPs are gradually progressively moving ahead toward clinical evaluations. However, the mechanistic aspects of the antibacterial action of AuNPs remain an unsolved puzzle for the scientific fraternity. Thus, the review covers state-of-the-art investigations pertaining to the efficacy of AuNPs as a tool to overcome ESBLs acquired resistance, their applicability and toxicity perspectives, and the revelation of the most appropriate proposed mechanism of action. Conclusively, the trend suggested that antibiotic-loaded AuNPs could be developed into a promising interventional strategy to limit and overcome the concerns of antibiotic-resistance.
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spelling pubmed-99675222023-02-27 Antibiotic-Loaded Gold Nanoparticles: A Nano-Arsenal against ESBL Producer-Resistant Pathogens Rizvi, Syed Mohd Danish Lila, Amr Selim Abu Moin, Afrasim Hussain, Talib Kamal, Mohammad Amjad Sonbol, Hana Khafagy, El-Sayed Pharmaceutics Review The advent of new antibiotics has helped clinicians to control severe bacterial infections. Despite this, inappropriate and redundant use of antibiotics, inadequate diagnosis, and smart resistant mechanisms developed by pathogens sometimes lead to the failure of treatment strategies. The genotypic analysis of clinical samples revealed that the rapid spread of extended-spectrum β-lactamases (ESBLs) genes is one of the most common approaches acquired by bacterial pathogens to become resistant. The scenario compelled the researchers to prioritize the design and development of novel and effective therapeutic options. Nanotechnology has emerged as a plausible groundbreaking tool against resistant infectious pathogens. Numerous reports suggested that inorganic nanomaterials, specifically gold nanoparticles (AuNPs), have converted unresponsive antibiotics into potent ones against multi-drug resistant pathogenic strains. Interestingly, after almost two decades of exhaustive preclinical evaluations, AuNPs are gradually progressively moving ahead toward clinical evaluations. However, the mechanistic aspects of the antibacterial action of AuNPs remain an unsolved puzzle for the scientific fraternity. Thus, the review covers state-of-the-art investigations pertaining to the efficacy of AuNPs as a tool to overcome ESBLs acquired resistance, their applicability and toxicity perspectives, and the revelation of the most appropriate proposed mechanism of action. Conclusively, the trend suggested that antibiotic-loaded AuNPs could be developed into a promising interventional strategy to limit and overcome the concerns of antibiotic-resistance. MDPI 2023-01-28 /pmc/articles/PMC9967522/ /pubmed/36839753 http://dx.doi.org/10.3390/pharmaceutics15020430 Text en © 2023 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 Review
Rizvi, Syed Mohd Danish
Lila, Amr Selim Abu
Moin, Afrasim
Hussain, Talib
Kamal, Mohammad Amjad
Sonbol, Hana
Khafagy, El-Sayed
Antibiotic-Loaded Gold Nanoparticles: A Nano-Arsenal against ESBL Producer-Resistant Pathogens
title Antibiotic-Loaded Gold Nanoparticles: A Nano-Arsenal against ESBL Producer-Resistant Pathogens
title_full Antibiotic-Loaded Gold Nanoparticles: A Nano-Arsenal against ESBL Producer-Resistant Pathogens
title_fullStr Antibiotic-Loaded Gold Nanoparticles: A Nano-Arsenal against ESBL Producer-Resistant Pathogens
title_full_unstemmed Antibiotic-Loaded Gold Nanoparticles: A Nano-Arsenal against ESBL Producer-Resistant Pathogens
title_short Antibiotic-Loaded Gold Nanoparticles: A Nano-Arsenal against ESBL Producer-Resistant Pathogens
title_sort antibiotic-loaded gold nanoparticles: a nano-arsenal against esbl producer-resistant pathogens
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9967522/
https://www.ncbi.nlm.nih.gov/pubmed/36839753
http://dx.doi.org/10.3390/pharmaceutics15020430
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