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具有固有抗菌、抗病毒和抗真菌性能的生物活性莱赛尔纤维。

Bioactive Lyocell Fibers with Inherent Antibacterial, Antiviral and Antifungal Properties.

机构信息

Smartpolymer GmbH, 07407 Rudolstadt, Germany.

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

出版信息

Molecules. 2024 Apr 29;29(9):2054. doi: 10.3390/molecules29092054.

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 NaCO 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 CuO crystallites, which is proved by XRD. Cu fiber shows a strong antibacterial effect against and 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.

摘要

功能性莱赛尔纤维在服装和技术纺织品中受到关注,尤其是当它们具有固有生物活性功能时。在这项研究中,莱赛尔纤维用离子交换树脂进行改性,然后负载铜(Cu)离子。改性的莱赛尔工艺可通过强化分散使树脂添加剂的添加量达到很高水平(>10%),从而使纤维的整个横截面上的铜吸收量达到 2.7%。用 NaCO 固定可大大提高洗涤和染色牢度。与原始纤维相比,染色后的铜含量对于活性染料约为 65%,直接染料为 75%,高温高压染色为 77%。即使经过 50 次家庭洗涤,活性染料的回收率为 43%,直接染料为 47%,高温高压染色为 26%。XRD 测量表明,Cu 固定在内纤维素/离子交换树脂复合材料中是离子键合的。通过葡萄糖/NaOH 改变 Cu 价态的固定过程相结合,导致 CuO 晶须的形成,这通过 XRD 得到证实。Cu 纤维对 和 细菌具有很强的抗菌作用,即使经过 50 次家庭洗涤循环后仍能保持>5 log CFU 的抗菌效果。在非织造布混纺中,即使只含有 6%Cu 纤维的份额,也能收到很强的抗菌(CFU > log 5)和完全抗病毒效果(>log 4),即使经过 50 次洗涤循环。在 30 秒后就已经显示出很强的抗病毒行为。此外,这些纤维还能使真菌分离株 Candida auris 的数量减少 4.4 log CFU,由 6%Cu 纤维制成的非织造布的 CFU 对数为 1.7。该研究的结果使纤维非常适合先进的纺织品加工和在高细菌负荷的区域应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd55/11085106/9c08d110494c/molecules-29-02054-g001.jpg

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