Nanoparticle/biopolymer-based coatings for functionalization of textiles: recent developments (a minireview)

Author:

Vrinceanu Narcisa1ORCID,Bucur Stefan2,Rimbu Cristina Mihaela3,Neculai-Valeanu Sabina4,Ferrandiz Bou Santiago5,Suchea Mirela Petruta67ORCID

Affiliation:

1. Department of Industrial Machines and Equipments, “Lucian Blaga” University of Sibiu, Romania

2. Faculty of Chemistry, “Al.I.Cuza” University of Iasi, Romania

3. Department of Public Health, “Ion Ionescu de la Brad” University of Agricultural Sciences and Veterinary Medicine, Romania

4. Research Station for Cattle Breeding, Romania

5. Department of Mechanical and Materials Engineering, Polytechnic University of Valencia, Spain

6. National Institute for Research and Development in Microtechnologies, IMT Bucharest, Romania

7. Center of Materials Technology and Photonics, Hellenic Mediterranean University, Heraklion, Greece

Abstract

This minireview presents recent developments in surface nano-structured textiles and their biomedical applications by up-to-date achievements, summarizing the coatings made of biopolymer films and nanoparticles on different textile substrates for enhanced medical applications, diminishing the incidence of the multiple range of hospital-acquired infections in the past 10 years. The combination of metal and metal oxide nanoparticles with biopolymers is an efficient technique to generate enhanced antibacterial, virucidal and antifungal properties to textiles. Only a few review articles offer a comprehensive insight into the surface tailoring of textiles by nanoparticles–biopolymers use as an alternative for surface modification of textiles, granting them biocidal performance. The overview points out the compelling reasons for scientists and experts to enhance the already existing results in the biomedical textiles domain, with an emphasis on antimicrobial responsivity, highlighting: (a) the benefit of the simultaneous nanoparticles–biopolymers deposition on textiles by various deposition techniques, meaning the wash fastness of the antibacterial attributes and the biocompatibility of the material in comparison with only nanoparticle coating; (b) the use of biopolymers to stabilize colloidal dispersions of nanoparticles, granting the nanoparticles functionalities for covalent immobilization on textiles with long-lasting antibacterial effect; (c) the most usual metal and metal oxide nanoparticles and biopolymers for antibacterial textile applications.

Publisher

SAGE Publications

Subject

Polymers and Plastics,Chemical Engineering (miscellaneous)

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