Recent Progress in Stimuli-Responsive Antimicrobial Electrospun Nanofibers

Author:

Mercante Luiza1ORCID,Teodoro Kelcilene2ORCID,dos Santos Danilo2,dos Santos Francisco23ORCID,Ballesteros Camilo4ORCID,Ju Tian5ORCID,Williams Gareth5ORCID,Correa Daniel23ORCID

Affiliation:

1. Institute of Chemistry, Federal University of Bahia (UFBA), Salvador 40170-280, BA, Brazil

2. Nanotechnology National Laboratory for Agriculture (LNNA), Embrapa Instrumentação, São Carlos 13560-970, SP, Brazil

3. Department of Materials Engineering, São Carlos School of Engineering, University of São Paulo, São Carlos 13563-120, SP, Brazil

4. Bachelor in Natural Sciences and Environmental Education, Pedagogical and Technological University of Colombia (UPTC), Tunja 150003, Colombia

5. UCL School of Pharmacy, University College London, 29-39 Brunswick Square, London WC1N 1AX, UK

Abstract

Electrospun nanofibrous membranes have garnered significant attention in antimicrobial applications, owing to their intricate three-dimensional network that confers an interconnected porous structure, high specific surface area, and tunable physicochemical properties, as well as their notable capacity for loading and sustained release of antimicrobial agents. Tailoring polymer or hybrid-based nanofibrous membranes with stimuli-responsive characteristics further enhances their versatility, enabling them to exhibit broad-spectrum or specific activity against diverse microorganisms. In this review, we elucidate the pivotal advancements achieved in the realm of stimuli-responsive antimicrobial electrospun nanofibers operating by light, temperature, pH, humidity, and electric field, among others. We provide a concise introduction to the strategies employed to design smart electrospun nanofibers with antimicrobial properties. The core section of our review spotlights recent progress in electrospun nanofiber-based systems triggered by single- and multi-stimuli. Within each stimulus category, we explore recent examples of nanofibers based on different polymers and antimicrobial agents. Finally, we delve into the constraints and future directions of stimuli-responsive nanofibrous materials, paving the way for their wider application spectrum and catalyzing progress toward industrial utilization.

Funder

FAPESP

CNPq, MCTI-Sis-Nano

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior-Brazil

Rede Agronano

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

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