Nanosilver-Functionalized Hybrid Hydrogels of Carboxymethyl Cellulose/Poly(Vinyl Alcohol) with Antibacterial Activity for Prevention and Therapy of Infections of Diabetic Chronic Wounds

Author:

Capanema Nádia S. V.1,Mansur Alexandra A. P.1,Carvalho Sandhra M.1,Martins Talita1,Gonçalves Maysa S.2,Andrade Rafaella S.2ORCID,Dorneles Elaine M. S.2,Lima Letícia C. D.3ORCID,de Alvarenga Érika L. F. C.4ORCID,da Fonseca Emanuel V. B.4,Sá Marcos Augusto de3,Lage Andrey P.5,Lobato Zelia I. P.5,Mansur Herman S.1ORCID

Affiliation:

1. Center of Nanoscience, Nanotechnology, and Innovation—CeNano2I, Department of Metallurgical and Materials Engineering, Federal University of Minas Gerais, UFMG, Belo Horizonte 31270-901, Brazil

2. Departamento de Medicina Veterinária, Universidade Federal de Lavras, UFLA, Lavras 37200-000, Brazil

3. Department of Morphology, Institute of Biological Sciences, Federal University of Minas Gerais, UFMG, Belo Horizonte 31270-901, Brazil

4. Department of Natural Sciences, Universidade Federal de São João Del-Rei, UFSJ, São João Del-Rei 36301-160, Brazil

5. Departamento de Medicina Veterinária Preventiva, Federal University of Minas Gerais, UFMG, Belo Horizonte 31270-901, Brazil

Abstract

Diabetic foot ulcers (DFUs) are considered one of the most severe chronic complications of diabetes and can lead to amputation in severe cases. In addition, bacterial infections in diabetic chronic wounds aggravate this scenario by threatening human health. Wound dressings made of polymer matrices with embedded metal nanoparticles can inhibit microorganism growth and promote wound healing, although the current clinical treatments for diabetic chronic wounds remain unsatisfactory. In this view, this research reports the synthesis and characterization of innovative hybrid hydrogels made of carboxymethyl cellulose (CMC) and poly(vinyl alcohol) (PVA) chemically crosslinked by citric acid (CA) functionalized with silver nanoparticles (AgNPs) generated in situ using an eco-friendly aqueous process. The results assessed through comprehensive in vitro and in vivo assays demonstrated that these hybrid polymer hydrogels functionalized with AgNPs possess physicochemical properties, cytocompatibility, hemocompatibility, bioadhesion, antibacterial activity, and biocompatibility suitable for wound dressings to support chronic wound healing process as well as preventing and treating bacterial infections. Hence, it can be envisioned that, with further research and development, these polymer-based hybrid nanoplatforms hold great potential as an important tool for creating a new generation of smart dressings for treating chronic diabetic wounds and opportunistic bacterial infections.

Funder

Conselho Nacional de Desenvolvimento Científico e Tecnológico

CNPq-Decit/SCTIE/MS, DGITIS/SCTIE/MS, CGCIS/SCTIE/MS, Plataformas Inovadoras em Terapias Avançadas

Fundação de Amparo à Pesquisa do Estado de Minas Gerais

Coordenação de Aperfeicoamento de Pessoal de Nível Superior

Financiadora de Estudos e Projetos

SOS/Equipamentos/2018

Universidade Federal de Minas Gerais

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

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