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Synergies in antimicrobial treatment by a levofloxacin-loaded halloysite and gold nanoparticles with a conjugation to a cell-penetrating peptide

Herein, a novel designed antimicrobial therapeutic drug delivery system is presented, in which halloysite nanotubes (HNTs) encapsulate a determined dosage of levofloxacin (lvx). Moreover, gold nanoparticles (AuNPs) have been embedded into the structure for plasmonic heating under irradiation of the...

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Autores principales: Taheri-Ledari, Reza, Ahghari, Mohammad Reza, Ansari, Fatemeh, Forouzandeh-Malati, Mohadeseh, Mirmohammadi, Seyedeh Shadi, Zarei-Shokat, Simindokht, Ramezanpour, Sorour, Zhang, Wenjie, Tian, Ye, Maleki, Ali
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9552876/
https://www.ncbi.nlm.nih.gov/pubmed/36321152
http://dx.doi.org/10.1039/d2na00431c
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author Taheri-Ledari, Reza
Ahghari, Mohammad Reza
Ansari, Fatemeh
Forouzandeh-Malati, Mohadeseh
Mirmohammadi, Seyedeh Shadi
Zarei-Shokat, Simindokht
Ramezanpour, Sorour
Zhang, Wenjie
Tian, Ye
Maleki, Ali
author_facet Taheri-Ledari, Reza
Ahghari, Mohammad Reza
Ansari, Fatemeh
Forouzandeh-Malati, Mohadeseh
Mirmohammadi, Seyedeh Shadi
Zarei-Shokat, Simindokht
Ramezanpour, Sorour
Zhang, Wenjie
Tian, Ye
Maleki, Ali
author_sort Taheri-Ledari, Reza
collection PubMed
description Herein, a novel designed antimicrobial therapeutic drug delivery system is presented, in which halloysite nanotubes (HNTs) encapsulate a determined dosage of levofloxacin (lvx). Moreover, gold nanoparticles (AuNPs) have been embedded into the structure for plasmonic heating under irradiation of the green LED light (7 W, 526 nm). It was revealed that the plasmonic heating of the AuNPs leads to a controlled trend in the lvx release process. Also, a synergistic effect on the antimicrobial activity of the prepared therapeutic system has been observed through photothermal heating of the structure. To enhance the cell adhesion, a cell-penetrating peptide sequence (CPP) is conjugated to the surfaces. This CPP has led to quick co-localization of the prepared nano-cargo (denoted as lvx@HNT/Au–CPP) with the bacterial living cells and further attachment (confirmed by confocal microscopy). Concisely, the structure of the designed nano-cargo has been investigated by various methods, and the in vitro cellular experiments (zone of inhibition and colony-counting) have disclosed that the antimicrobial activity of the lvx is significantly enhanced through incorporation into the HNT/Au–CPP delivery system (drug content: 16 wt%), in comparison with the individual lvx with the same dosage. Hence, it can be stated that the bacterial resistance against antibiotics and the toxic effects of the chemical medications are reduced through the application of the presented strategy.
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spelling pubmed-95528762022-10-31 Synergies in antimicrobial treatment by a levofloxacin-loaded halloysite and gold nanoparticles with a conjugation to a cell-penetrating peptide Taheri-Ledari, Reza Ahghari, Mohammad Reza Ansari, Fatemeh Forouzandeh-Malati, Mohadeseh Mirmohammadi, Seyedeh Shadi Zarei-Shokat, Simindokht Ramezanpour, Sorour Zhang, Wenjie Tian, Ye Maleki, Ali Nanoscale Adv Chemistry Herein, a novel designed antimicrobial therapeutic drug delivery system is presented, in which halloysite nanotubes (HNTs) encapsulate a determined dosage of levofloxacin (lvx). Moreover, gold nanoparticles (AuNPs) have been embedded into the structure for plasmonic heating under irradiation of the green LED light (7 W, 526 nm). It was revealed that the plasmonic heating of the AuNPs leads to a controlled trend in the lvx release process. Also, a synergistic effect on the antimicrobial activity of the prepared therapeutic system has been observed through photothermal heating of the structure. To enhance the cell adhesion, a cell-penetrating peptide sequence (CPP) is conjugated to the surfaces. This CPP has led to quick co-localization of the prepared nano-cargo (denoted as lvx@HNT/Au–CPP) with the bacterial living cells and further attachment (confirmed by confocal microscopy). Concisely, the structure of the designed nano-cargo has been investigated by various methods, and the in vitro cellular experiments (zone of inhibition and colony-counting) have disclosed that the antimicrobial activity of the lvx is significantly enhanced through incorporation into the HNT/Au–CPP delivery system (drug content: 16 wt%), in comparison with the individual lvx with the same dosage. Hence, it can be stated that the bacterial resistance against antibiotics and the toxic effects of the chemical medications are reduced through the application of the presented strategy. RSC 2022-09-15 /pmc/articles/PMC9552876/ /pubmed/36321152 http://dx.doi.org/10.1039/d2na00431c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Taheri-Ledari, Reza
Ahghari, Mohammad Reza
Ansari, Fatemeh
Forouzandeh-Malati, Mohadeseh
Mirmohammadi, Seyedeh Shadi
Zarei-Shokat, Simindokht
Ramezanpour, Sorour
Zhang, Wenjie
Tian, Ye
Maleki, Ali
Synergies in antimicrobial treatment by a levofloxacin-loaded halloysite and gold nanoparticles with a conjugation to a cell-penetrating peptide
title Synergies in antimicrobial treatment by a levofloxacin-loaded halloysite and gold nanoparticles with a conjugation to a cell-penetrating peptide
title_full Synergies in antimicrobial treatment by a levofloxacin-loaded halloysite and gold nanoparticles with a conjugation to a cell-penetrating peptide
title_fullStr Synergies in antimicrobial treatment by a levofloxacin-loaded halloysite and gold nanoparticles with a conjugation to a cell-penetrating peptide
title_full_unstemmed Synergies in antimicrobial treatment by a levofloxacin-loaded halloysite and gold nanoparticles with a conjugation to a cell-penetrating peptide
title_short Synergies in antimicrobial treatment by a levofloxacin-loaded halloysite and gold nanoparticles with a conjugation to a cell-penetrating peptide
title_sort synergies in antimicrobial treatment by a levofloxacin-loaded halloysite and gold nanoparticles with a conjugation to a cell-penetrating peptide
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9552876/
https://www.ncbi.nlm.nih.gov/pubmed/36321152
http://dx.doi.org/10.1039/d2na00431c
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