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用于皮肤局部和透皮给药的刺激响应型药物载体修饰的纺织材料。

Textile Materials Modified with Stimuli-Responsive Drug Carrier for Skin Topical and Transdermal Delivery.

作者信息

Atanasova Daniela, Staneva Desislava, Grabchev Ivo

机构信息

Department of Textile and Leathers, University of Chemical Technology and Metallurgy, 1756 Sofia, Bulgaria.

Faculty of Medicine, Sofia University "St. Kliment Ohridski", 1407 Sofia, Bulgaria.

出版信息

Materials (Basel). 2021 Feb 16;14(4):930. doi: 10.3390/ma14040930.

Abstract

Textile materials, as a suitable matrix for different active substances facilitating their gradual release, can have an important role in skin topical or transdermal therapy. Characterized by compositional and structural variety, those materials readily meet the requirements for applications in specific therapies. Aromatherapy, antimicrobial substances and painkillers, hormone therapy, psoriasis treatment, atopic dermatitis, melanoma, etc., are some of the areas where textiles can be used as carriers. There are versatile optional methods for loading the biologically active substances onto textile materials. The oldest ones are by exhaustion, spraying, and a pad-dry-cure method. Another widespread method is the microencapsulation. The modification of textile materials with stimuli-responsive polymers is a perspective route to obtaining new textiles of improved multifunctional properties and intelligent response. In recent years, research has focused on new structures such as dendrimers, polymer micelles, liposomes, polymer nanoparticles, and hydrogels. Numerous functional groups and the ability to encapsulate different substances define dendrimer molecules as promising carriers for drug delivery. Hydrogels are also high molecular hydrophilic structures that can be used to modify textile material. They absorb a large amount of water or biological fluids and can support the delivery of medicines. These characteristics correspond to one of the current trends in the development of materials used in transdermal therapy, namely production of intelligent materials, i.e., such that allow controlled concentration and time delivery of the active substance and simultaneous visualization of the process, which can only be achieved with appropriate and purposeful modification of the textile material.

摘要

纺织材料作为不同活性物质的合适基质,有助于其逐渐释放,在皮肤局部或透皮治疗中可发挥重要作用。这些材料具有成分和结构的多样性,很容易满足特定治疗应用的要求。芳香疗法、抗菌物质和止痛药、激素疗法、牛皮癣治疗、特应性皮炎、黑色素瘤等,都是可以将纺织品用作载体的一些领域。将生物活性物质负载到纺织材料上有多种可选方法。最古老的方法是浸染法、喷涂法和轧染焙烘法。另一种广泛使用的方法是微胶囊化。用刺激响应聚合物对纺织材料进行改性是获得具有改进的多功能特性和智能响应的新型纺织品的一个有前景的途径。近年来,研究集中在树枝状大分子、聚合物胶束、脂质体、聚合物纳米颗粒和水凝胶等新结构上。众多的官能团和封装不同物质的能力将树枝状大分子分子定义为有前途的药物递送载体。水凝胶也是高分子亲水结构,可用于改性纺织材料。它们能吸收大量的水或生物流体,并能支持药物递送。这些特性符合透皮治疗中所用材料发展的当前趋势之一,即生产智能材料,也就是能够实现活性物质的浓度和时间控制释放以及过程的同步可视化,而这只有通过对纺织材料进行适当且有目的的改性才能实现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f1f/7919809/faff5e29c5fc/materials-14-00930-g001.jpg

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