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核壳纤维支架作为视网膜色素上皮衍生因子(PEDF)的缓释载体,用于结膜间充质干细胞向光感受器的分化。

Core-shell fibrous scaffold as a vehicle for sustained release of retinal pigmented epithelium-derived factor (PEDF) for photoreceptor differentiation of conjunctiva mesenchymal stem cells.

机构信息

Department of Medical Biotechnology and Nanotechnology, School of Medicine, Zanjan University of Medical Sciences, Zanjan, Iran.

Department of Mechanical Engineering, Amirkabir University of Technology (Tehran Polytechnic), Tehran, Iran.

出版信息

J Biomed Mater Res A. 2017 Dec;105(12):3514-3519. doi: 10.1002/jbm.a.36182. Epub 2017 Oct 23.

Abstract

Coaxial electrospinning technique was introduced as a flexible and promising technique for the fabrication of core-shell fibrous scaffold from poly ethylene glycol/poly caprolactone (PEG/PCL), where retinal pigmented epithelium-derived factor (PEDF) was encapsulated in the core, for photoreceptor differentiation of conjunctiva mesenchymal stem cells (CJMSCs) seed on scaffolds. The morphology and structure of fibers were characterized using SEM and TEM and photoreceptor differentiation was examined by quantitative real time PCR (qPCR). Release study showed that, a sustained release of PEDF from PEG/PCL scaffold was observed over 14 days. qPCR analysis demonstrated that rhodopsin (as a main photoreceptor gene) was significantly expressed in CJMSCs cultured on scaffold loaded with PEDF. According to the result, the core-shell scaffold loaded with PEDF (PEG + PEDF)/PCL) has superior control over factor release profile and has a potential for guiding photoreceptor differentiation of mesenchymal stem cells and promoting retinal regeneration. © 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 105A: 3514-3519, 2017.

摘要

同轴静电纺丝技术被引入作为一种灵活且有前途的技术,用于从聚乙二醇/聚己内酯(PEG/PCL)制造核壳纤维支架,其中视网膜色素上皮衍生因子(PEDF)被封装在核中,用于结膜间充质干细胞(CJMSCs)在支架上的光感受器分化。使用 SEM 和 TEM 对纤维的形态和结构进行了表征,并通过定量实时 PCR(qPCR)检查了光感受器分化。释放研究表明,在 14 天内观察到 PEDF 从 PEG/PCL 支架中持续释放。qPCR 分析表明,在负载 PEDF 的支架上培养的 CJMSCs 中,视蛋白(作为主要光感受器基因)的表达显著。根据结果,负载 PEDF 的核壳支架(PEG+PEDF)/PCL)在因子释放谱的控制方面具有优势,并且具有引导间充质干细胞的光感受器分化和促进视网膜再生的潜力。©2017 Wiley Periodicals,Inc. J Biomed Mater Res Part A:105A:3514-3519,2017。

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