ANTIMICROBIAL ACTIVITY OF COTTON FIBRES TREATED WITH PARTICLES EXTRACTED FROM CITRUS PLANTS: A REVIEW

R. Ali, Umer Karamat, Hafiza Saba Nazir, Mirza Muhammed Mohsin Baig, Bilal Alam Khan, Asad Ullah, Osama Usman, Tanya Waseem, M. F. Tahir
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Abstract

Nanotechnology is an emerging technology in textile sector for the fabrication of functional textiles with different properties such as antibacterial, hydrophobicity, UV-protection, flame retardancy, anti-static and self-cleaning. In current COVID-19 crises, the development of antimicrobial textiles through the deposition of nanoparticles has emerged as a research subject of particular interest. Recently, the green-synthesis of nanoparticles from plant extracts has become an effective alternative to conventional physical and chemical synthesis methods due to being environmentally benign and nontoxic. In this review article, the significance of nanotechnology in antibacterial finishing of textiles, mechanism of antibacterial activity of nanoparticles, significance of green synthesis methods for nanoparticles have been discussed. The green-synthesis of different nanoparticles from the citrus plant extracts and their application on textiles for imparting antibacterial activity is reviewed in particular. The chemical composition of citrus plant extracts and their role as bioreductants in the synthesis of nanoparticles is also highlighted. Moreover, different qualitative and quantitative standard testing protocols employed for the antimicrobial characterization of plant extracts and textiles have been discussed. The major challenges and limitations associated with the plant-based biosynthesis of nanoparticles have also been highlighted.
柑橘提取颗粒处理棉纤维抑菌活性研究进展
纳米技术是纺织领域的一项新兴技术,用于制造具有抗菌、疏水、防紫外线、阻燃、防静电和自清洁等不同性能的功能性纺织品。在当前的COVID-19危机中,通过沉积纳米颗粒开发抗菌纺织品已成为一个特别感兴趣的研究课题。近年来,以植物提取物为原料绿色合成纳米颗粒因其对环境无害、无毒等优点,已成为传统物理和化学合成方法的有效替代方法。本文综述了纳米技术在纺织品抗菌整理中的意义、纳米颗粒抗菌活性的机理、纳米颗粒绿色合成方法的意义。重点综述了柑橘类植物提取物绿色合成纳米颗粒及其在纺织品抗菌方面的应用。重点介绍了柑橘类植物提取物的化学成分及其在纳米粒子合成中的生物还原作用。此外,还讨论了用于植物提取物和纺织品抗菌特性的不同定性和定量标准测试方案。以植物为基础的纳米颗粒生物合成的主要挑战和局限性也得到了强调。
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