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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >A novel and facile approach to fabricate a conductive and biomimetic fibrous platform with sub-micron and micron features
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A novel and facile approach to fabricate a conductive and biomimetic fibrous platform with sub-micron and micron features

机译:一种新颖而简便的方法来制造具有亚微米和微米特征的导电仿生纤维平台

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摘要

The demands of multifunctional scaffolds have exceeded the passive biocompatible properties previously considered sufficient for tissue engineering. Herein, a novel and facile method used to fabricate a core-shell structure consisting of a conducting fiber core and an electrospun fiber shell is presented. This multifunctional structure simultaneously provides the high conductivity of conducting polymers as well as the enhanced interactions between cells and the sub-micron topographical environments provided by highly aligned cytocompatible electrospun fibers. Unlimited lengths of PEDOT: PSS-Chitosan-PLGA fibers loaded with an antibiotic drug, ciprofloxacin hydrochloride, were produced using this method. The fibers provide modulated drug release with excellent mechanical properties, electrochemical performance and cytocompatibility, which hold great promise for the application of conductive electrospun scaffolds in regenerative medicine.
机译:多功能支架的需求已经超出了以前被认为足以用于组织工程的被动生物相容性。在此,提出了一种新颖且容易的方法,用于制造由导电纤维芯和电纺纤维壳组成的芯-壳结构。这种多功能结构同时提供了导电聚合物的高电导率,以及由高度对齐的细胞相容性电纺纤维提供的细胞与亚微米形貌环境之间增强的相互作用。 PEDOT的长度不受限制:使用这种方法可以生产出载有抗生素药物环丙沙星盐酸盐的PSS-壳聚糖-PLGA纤维。该纤维具有良好的机械性能,电化学性能和细胞相容性,可调节药物的释放,为导电电纺丝支架在再生医学中的应用提供了广阔的前景。

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