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含 FGL 基序的设计自组装纳米纤维支架的生物相容性和生物活性对大鼠背根神经节神经元的影响。

Biocompatibility and bioactivity of designer self-assembling nanofiber scaffold containing FGL motif for rat dorsal root ganglion neurons.

机构信息

Department of Orthopaedics, Union Hospital, Tongji Medical College of Huazhong, University of Science and Technology, Wuhan, China.

出版信息

J Biomed Mater Res A. 2010 Dec 15;95(4):1125-31. doi: 10.1002/jbm.a.32910. Epub 2010 Sep 28.

Abstract

We report here a designer self-assembling peptide nanofiber scaffold developed specifically for nerve tissue engineering. We synthesized a peptide FGL-RADA containing FGL (EVYVVAENQQGKSKA), the motif of neural cell adhesion molecule (NCAM), and then attended to make a FGL nanofiber scaffold (FGL-NS) by assembling FGL-RADA with the peptide RADA-16 (AcN-RADARADARADARADA-CONH2). The microstructures of the scaffolds were tested using atomic force microscopy (AFM), and rheological properties of materials were accessed. Then we demonstrated the biocompatibility and bioactivity of FGL-NS for rat dorsal root ganglion neurons (DRGn). We found that the designer self-assembling peptide scaffold was noncytotoxic to neurons and able to promote adhesion and neurite sprouting of neurons. Our results indicate that the designer peptide scaffold containing FGL had excellent biocompatibility and bioactivity with adult sensory neurons and could be used for neuronal regeneration.

摘要

我们在这里报告了一种专门为神经组织工程设计的自组装肽纳米纤维支架。我们合成了一种含有 FGL(EVYVVAENQQGKSKA)的肽 FGL-RADA,这是神经细胞粘附分子(NCAM)的基序,然后通过将 FGL-RADA 与肽 RADA-16(AcN-RADARADARADARADA-CONH2)组装来制备 FGL 纳米纤维支架(FGL-NS)。使用原子力显微镜(AFM)测试支架的微观结构,并评估材料的流变性能。然后,我们证明了 FGL-NS 对大鼠背根神经节神经元(DRGn)的生物相容性和生物活性。我们发现,这种设计的自组装肽支架对神经元无细胞毒性,并且能够促进神经元的粘附和突起生长。我们的结果表明,含有 FGL 的设计肽支架具有出色的生物相容性和生物活性,可用于成年感觉神经元的再生,可用于神经元再生。

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