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Surface-functionalized electrospun nanofibers for tissue engineering and drug delivery.

机译:表面功能化的电纺纳米纤维,用于组织工程和药物输送。

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Electrospun nanofibers with a high surface area to volume ratio have received much attention because of their potential applications for biomedical devices, tissue engineering scaffolds, and drug delivery carriers. In order to develop electrospun nanofibers as useful nanobiomaterials, surfaces of electrospun nanofibers have been chemically functionalized for achieving sustained delivery through physical adsorption of diverse bioactive molecules. Surface modification of nanofibers includes plasma treatment, wet chemical method, surface graft polymerization, and co-electrospinning of surface active agents and polymers. A variety of bioactive molecules including anti-cancer drugs, enzymes, cytokines, and polysaccharides were entrapped within the interior or physically immobilized on the surface for controlled drug delivery. Surfaces of electrospun nanofibers were also chemically modified with immobilizing cell specific bioactive ligands to enhance cell adhesion, proliferation, and differentiation by mimicking morphology and biological functions of extracellular matrix. This review summarizes surface modification strategies of electrospun polymeric nanofibers for controlled drug delivery and tissue engineering.
机译:具有高表面积/体积比的电纺纳米纤维因其在生物医学设备,组织工程支架和药物输送载体中的潜在应用而备受关注。为了将电纺纳米纤维开发为有用的纳米生物材料,已经对电纺纳米纤维的表面进行了化学功能化,以通过对多种生物活性分子的物理吸附来实现持续递送。纳米纤维的表面改性包括等离子体处理,湿化学法,表面接枝聚合以及表面活性剂和聚合物的共电纺丝。包括抗癌药,酶,细胞因子和多糖在内的多种生物活性分子被包裹在内部或物理固定在表面上,以控制药物的输送。静电纺丝纳米纤维的表面也通过固定细胞特异性生物活性配体进行化学修饰,以通过模仿细胞外基质的形态和生物学功能来增强细胞粘附,增殖和分化。这篇综述总结了电纺聚合物纳米纤维的表面改性策略,以控制药物的输送和组织工程。

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