Bioactive Lyocell Fibers with Inherent Antibacterial, Antiviral and Antifungal Properties

Author:

Wendler Frank12,Schulze Thomas2,Bauer Janine2,Redlingshöfer Benjamin2

Affiliation:

1. Smartpolymer GmbH, 07407 Rudolstadt, Germany

2. Centre of Excellence for Polysaccharide Research, Thuringian Institute of Textile and Plastics Research e.V., European Polysaccharide Network of Excellence (EPNOE), 07407 Rudolstadt, Germany

Abstract

Functional Lyocell fibers gain interest in garments and technical textiles, especially when equipped with inherently bioactive features. In this study, Lyocell fibers are modified with an ion exchange resin and subsequently loaded with copper (Cu) ions. The modified Lyocell process enables high amounts of the resin additive (>10%) through intensive dispersion and subsequently, high uptake of 2.7% Cu throughout the whole cross-section of the fiber. Fixation by Na2CO3 increases the washing and dyeing resistance considerably. Cu content after dyeing compared to the original fiber value amounts to approx. 65% for reactive, 75% for direct, and 77% for HT dyeing, respectively. Even after 50 household washes, a recovery of 43% for reactive, 47% for direct and 26% for HT dyeing is proved. XRD measurements reveal ionic bonding of Cu fixation inside the cellulose/ion exchange resin composite. A combination of the fixation process with a change in Cu valence state by glucose/NaOH leads to the formation of Cu2O crystallites, which is proved by XRD. Cu fiber shows a strong antibacterial effect against Staphylococcus aureus and Klebsiella pneumonia bacteria, even after 50 household washing cycles of both >5 log CFU. In nonwoven blends with a share of only 6% Cu fiber, a strong antimicrobial (CFU > log 5) and full antiviral effectiveness (>log 4) was received even after 50 washing cycles. Time-dependent measurements already show strong antiviral behavior after 30 s. Further, the fibers show an increased die off of the fungal isolate Candida auris with CFU log 4.4, and nonwovens made from 6% Cu fiber share a CFU log of 1.7. Findings of the study predestines the fiber for advanced textile processing and applications in areas with high germ loads.

Publisher

MDPI AG

Reference23 articles.

1. Kamide, K. (2005). Cellulose and Cellulose Derivatives, Elsevier Science. [1st ed.].

2. The molecular mechanisms of copper and silver ion disinfection of bacteria and viruses;Thurman;CRC Crit. Rev. Environ. Control,1989

3. A systematic review on silver nanoparticles-induced cytotoxicity: Physicochemical properties and perspectives;Akter;J. Adv. Res.,2018

4. Nanoscale copper and silver thin film systems display differences in antiviral and antibacterial properties;Meister;Sci. Rep.,2022

5. The Element of Surprise;Vallurupalli;N. Engl. J. Med.,2019

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