天然染色表带:化学媒染剂无染色与媒染剂同源异黄酮和花青素为生物相容性和伤口愈合可穿戴设备

Madhan Kumar Meganathan, Sreelakshmi Ramakrishnan, Ganesan Ponesakki, Sathya Ramalingam* and Tamil Selvi Alagumuthu*, 
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引用次数: 0

摘要

含有化学媒染剂的天然染料往往有毒且不可生物降解,由于其有害残留和缺乏可持续性,造成严重的环境和健康风险。本研究介绍了一种环保、多功能(抗菌、抗氧化、生物相容性、防紫外线和疏水)表带的开发,该表带由天然资源染色的皮革制成,为合成染料提供了一种可持续的替代品。从巴西木(SW)中提取的天然染料巴西蓝,最初生产的皮革颜色较浅。为了提高色调,从香蕉花苞片(FB)中提取的天然媒染剂被用作化学媒染剂的一种具有成本效益的替代品。FB提取物中的镁离子和花青素与SW染料络合,显著提高了颜色的强度和均匀性。优化后的30% SW和10% FB组合提供了充满活力的皮革,具有卓越的机械强度,耐光性和耐摩擦性,可与合成染料媲美。sw - fb染色皮革还具有抗菌、抗真菌、抗氧化和生物相容性等特性,对成纤维细胞无不良影响。染色皮革被制成表带,具有优异的耐用性、强度和耐摩擦性,适合日常使用。随着时间的推移,染色皮革的保质期受到表面细菌生长的影响,因为花青素的损失。因此,应用了锌多酚@二氧化硅Janus纳米颗粒的保护涂层。这种涂层具有防紫外线和疏水的特性,可以防止细菌生长,延长皮革的使用寿命。该工艺的生态评分为96.65,优于用化学媒染剂染色的皮革(88.86)。这种利用废物衍生材料进行染色和媒染剂应用的创新方法为织物产品提供了可持续的高性能解决方案,促进了环保产品的环境效益和新的商业机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Natural Dyed Watch Strap: Chemical Mordant Free Dyeing with Mordanted Homoisoflavonoids and Anthocyanins for Biocompatible and Wound-Healing Wearables

Natural Dyed Watch Strap: Chemical Mordant Free Dyeing with Mordanted Homoisoflavonoids and Anthocyanins for Biocompatible and Wound-Healing Wearables

Natural dyes with chemical mordant are often toxic and nonbiodegradable, posing serious environmental and health risks due to their harmful residues and lack of sustainability. This study presents the development of an eco-friendly, multifunctional (antimicrobial, anti-oxidant, biocompatible, UV protective, and hydrophobic) watch strap made from leather dyed with natural resources, offering a sustainable alternative to synthetic dyes. The natural dye brazilein, extracted from Biancaea sappan wood (SW), initially produced a lighter colored leather. To enhance the hue, a natural mordant derived from banana flower bracts (FB) was used as a cost-effective alternative to chemical mordants. The magnesium ions and anthocyanins in the FB extract complexed with the SW dye, significantly improving the color intensity and uniformity. The optimized 30% SW and 10% FB combination delivered vibrant leather with superior mechanical strength, lightfastness, and rub fastness comparable to synthetic dyes. The SW-FB-dyed leather also exhibited antimicrobial, antifungal, antioxidant, and biocompatible properties, showing no adverse effects on fibroblast cells. The dyed leather was fashioned into a watch strap and demonstrated excellent durability, strength, and rub resistance, suitable for daily use. Over time, the shelf life of the dyed leather was compromised by bacterial growth on the surface due to the loss of anthocyanins. Hence, a protective coating of zinc-polyphenols@ silica Janus nanoparticles was applied. This coating provided UV-blocking and hydrophobic properties, preventing bacterial growth and enhancing the leather’s longevity. This process achieved an Eco-scale score of 96.65, outperforming leather dyed with chemical mordants (88.86). This innovative approach of utilizing waste-derived materials for dyeing and mordant applications offers a sustainable, high-performance solution for fabric goods, promoting environmental benefits and new commercial opportunities in eco-friendly products.

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