Antimicrobial Approaches for Textiles: From Research to Market
Антимикробные подходы для текстиля: от исследований к рынку
2016-06-21
SCID: 54.1/3k3f4yum
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antimicrobial agentsantimicrobial textilesmetal saltspolybiguanidesquaternary ammonium compounds
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Abstract (AI)
The large surface area and ability to retain moisture of textile structures enable microorganisms' growth, which causes a range of undesirable effects, not only on the textile itself, but also on the user. Due to the public health awareness of the pathogenic effects on personal hygiene and associated health risks, over the last few years, intensive research has been promoted in order to minimize microbes' growth on textiles. Therefore, to impart an antimicrobial ability to textiles, different approaches have been studied, being mainly divided into the inclusion of antimicrobial agents in the textile polymeric fibers or their grafting onto the polymer surface. Regarding the antimicrobial agents, different types have been used, such as quaternary ammonium compounds, triclosan, metal salts, polybiguanides or even natural polymers. Any antimicrobial treatment performed on a textile, besides being efficient against microorganisms, must be non-toxic to the consumer and to the environment. This review mainly intends to provide an overview of antimicrobial agents and treatments that can be performed to produce antimicrobial textiles, using chemical or physical approaches, which are under development or already commercially available in the form of isolated agents or textile fibers or fabrics.
Key Findings
1
A variety of antimicrobial agents have been used in textiles, including quaternary ammonium compounds, triclosan, metal salts, polybiguanides and natural polymers.
2
Antimicrobial strategies for textiles primarily involve either inclusion of antimicrobial agents into polymeric fibers or grafting agents onto polymer surfaces.
3
Both chemical and physical antimicrobial treatments are under development or commercially available as isolated agents, treated fibers, or finished fabrics.
4
Effective antimicrobial textile treatments must balance antimicrobial efficacy with non-toxicity to consumers and environmental safety.
5
Textile structures promote microorganism growth due to large surface area and moisture retention, causing damage to textiles and health risks to users.
Research Object
Textile fibers and fabrics treated or modified to have antimicrobial properties
Research Subject
Antimicrobial agents and treatment approaches (chemical and physical) for imparting antimicrobial ability to textiles, including agent types, application methods (inclusion in polymeric fibers or surface grafting), efficacy, safety, and commercial availability
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2016-06-21
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References available in scid.ai2
Mechanisms of Silver Nanoparticle Release, Transformation and Toxicity: A Critical Review of Current Knowledge and Recommendations for Future Studies and Applications2013
A Biopolymer Chitosan and Its Derivatives as Promising Antimicrobial Agents against Plant Pathogens and Their Applications in Crop Protection2011