Polymer-Stabilized Silver (Gold)–Zinc Oxide Nanoheterodimer Structures as Antimicrobials

Author:

Samoilova Nadezhda A.1,Krayukhina Maria A.1,Naumkin Alexander V.1ORCID,Korlyukov Alexander A.1ORCID,Anuchina Nelya M.2,Popov Dmitry A.2

Affiliation:

1. A. N. Nesmeyanov Institute of Organoelement Compounds, Russian Academy of Sciences, 28 Vavilov St., 119334 Moscow, Russia

2. A. N. Bakulev Center for Cardiovascular Surgery of the Russian Ministry of Health, 135 Rublyovskoye Shosse, 121552 Moscow, Russia

Abstract

A simple one-pot method is proposed for obtaining the colloidal nanohybrid structures of silver (gold) and zinc oxide as well as nanostructures doped with zinc ions. The copolymers of maleic acid were used for the stabilization of nanoheterostructures. To characterize the preparation, UV–Vis spectroscopy, TEM, FTIR, XPS, and XRD were used. The bactericidal properties of the nanoheterostructures were studied in relation to the fungus C. albicans and the bacteria E. coli and S. aureus, used in planktonic form. In general, the samples containing nanosilver were the most active, and the preparations containing gold nanoparticles were the least active. The minimum inhibitory concentrations (MICs) of the Ag/ZnO samples, based on all copolymers, were in the ranges of 1.4–1.7 μg/mL for C. albicans, 2.9–6.8 μg/mL for E. coli, and 23–27 μg/mL for S. aureus; the MIC values of Au/ZnO samples were 472 μg/mL for S. aureus and 945 μg/mL for C. albicans and E. coli. The additional introduction of zinc cations into heterodimers had practically no effect on the antimicrobial properties of the composites. For all prepared composites and all tested microorganisms, the fractional inhibitory concentration indexes were in the range of 0.5–2.2, which indicates a close-to-additive contribution of the bioactive components in the samples used in the bactericidal process.

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference106 articles.

1. Does nanobiotechnology create new tools to combat microorganisms?;Sawosz;Nanotechnol. Rev.,2016

2. Comprehensive review on novel pharmaceutical nanotechnology and its applications;Khuspe;IAJPS,2017

3. Alternative Antimicrobial Approach: Nano-Antimicrobial Materials;Beyth;Evid.-Based Complement. Alternant. Med.,2015

4. Potential Biomedical Applications of Metallic Nanobiomaterials: A Review;Shivaramakrishnan;Int. J. Pharm. Sci. Res.,2017

5. Insight on Microbial Biofilms and Recent Antibiofilm Approaches;Shatila;Acta Biol. Turcica,2019

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