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生物医学水凝胶的当前趋势:从传统交联到等离子体辅助合成。

Current Trends in Biomedical Hydrogels: From Traditional Crosslinking to Plasma-Assisted Synthesis.

作者信息

Taaca Kathrina Lois M, Prieto Eloise I, Vasquez Magdaleno R

机构信息

Department of Mining, Metallurgical and Materials Engineering, College of Engineering, University of the Philippines Diliman, Quezon City 1101, Philippines.

Materials Science and Engineering Program, College of Science, University of the Philippines Diliman, Quezon City 1101, Philippines.

出版信息

Polymers (Basel). 2022 Jun 23;14(13):2560. doi: 10.3390/polym14132560.

Abstract

The use of materials to restore or replace the functions of damaged body parts has been proven historically. Any material can be considered as a biomaterial as long as it performs its biological function and does not cause adverse effects to the host. With the increasing demands for biofunctionality, biomaterials nowadays may not only encompass inertness but also specialized utility towards the target biological application. A hydrogel is a biomaterial with a 3D network made of hydrophilic polymers. It is regarded as one of the earliest biomaterials developed for human use. The preparation of hydrogel is often attributed to the polymerization of monomers or crosslinking of hydrophilic polymers to achieve the desired ability to hold large amounts of aqueous solvents and biological fluids. The generation of hydrogels, however, is shifting towards developing hydrogels through the aid of enabling technologies. This review provides the evolution of hydrogels and the different approaches considered for hydrogel preparation. Further, this review presents the plasma process as an enabling technology for tailoring hydrogel properties. The mechanism of plasma-assisted treatment during hydrogel synthesis and the current use of the plasma-treated hydrogels are also discussed.

摘要

使用材料来恢复或替代受损身体部位的功能在历史上已得到证实。只要任何材料能履行其生物学功能且不对宿主造成不良影响,就可被视为生物材料。随着对生物功能性需求的增加,如今的生物材料不仅可能包括惰性,还包括针对目标生物应用的特殊效用。水凝胶是一种由亲水性聚合物构成三维网络的生物材料。它被视为最早为人类使用而开发的生物材料之一。水凝胶的制备通常归因于单体的聚合或亲水性聚合物的交联,以实现容纳大量水性溶剂和生物流体的所需能力。然而,水凝胶的生成正朝着借助使能技术来开发水凝胶的方向转变。本综述介绍了水凝胶的演变以及水凝胶制备所考虑的不同方法。此外,本综述介绍了等离子体工艺作为一种用于定制水凝胶性能的使能技术。还讨论了水凝胶合成过程中等离子体辅助处理的机制以及经等离子体处理的水凝胶的当前用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f75c/9268762/be786a97dab9/polymers-14-02560-g001.jpg

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