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壳聚糖岛状形貌修饰的聚乳酸纳米纤维支架用于骨组织工程。

Polylactic Acid Nanofiber Scaffold Decorated with Chitosan Islandlike Topography for Bone Tissue Engineering.

机构信息

State Key Laboratory of Organic-Inorganic Composites, College of Materials Science and Engineering and ‡Beijing Advanced Innovation Center for Soft Matter Science and Engineering, Beijing University of Chemical Technology , Beijing 100029, China.

出版信息

ACS Appl Mater Interfaces. 2017 Jun 28;9(25):21094-21104. doi: 10.1021/acsami.7b01176. Epub 2017 Jun 19.

Abstract

In this work, a bicomponent scaffold with a core-shell and islandlike structure that combines the respective advantages of polylactic acid (PLA) and chitosan (CS) was prepared via electrospinning accompanied by automatic phase separation and crystallization. The objective of this research was to design nanosized topography with highly bioactive CS onto PLA electrospun fiber surface to improve the cell biocompatibility of the PLA fibrous membrane. The morphology, inner structure, surface composition, crystallinity, and thermodynamic analyses of nanofibers with various PLA/CS ratios were carried out, and the turning mechanism of a core-shell or islandlike topography structure was also speculated. The mineralization of hydroxyapatite and culture results of preosteoblast (MC3T3-E1) cells on the modified scaffolds indicate that the outer CS component and rough nanoscale topography on the surface of the nanofibers balanced the hydrophilicity and hydrophobicity of the fibers, enhanced their mineralization ability, and made them more beneficial for the attachment and growth of cells. Moreover, CS and "islandlike" protrusions on the fiber surface increased the alkaline phosphatase activity of the MC3T3-E1 cells seeded on the fibrous membrane and provided a more appropriate interface for cell adhesion and proliferation. These results illustrate that this kind of PLA/CS membrane has the potential in tissue engineering. More importantly, our study provides a new approach to designing PLA scaffolds, with combined topographic and bioactive modification effects at the interface between cells and materials, for biomedicine.

摘要

在这项工作中,通过静电纺丝结合自动相分离和结晶,制备了一种具有核壳和岛状结构的双组分支架,将聚乳酸(PLA)和壳聚糖(CS)的各自优势结合在一起。本研究的目的是设计具有高生物活性 CS 的纳米级形貌到 PLA 静电纺丝纤维表面,以提高 PLA 纤维膜的细胞生物相容性。对不同 PLA/CS 比的纳米纤维的形态、内部结构、表面成分、结晶度和热力学分析进行了研究,并推测了核壳或岛状形貌结构的转变机制。对羟基磷灰石的矿化和对改性支架上预成骨细胞(MC3T3-E1)细胞的培养结果表明,外 CS 成分和纤维表面的粗糙纳米形貌平衡了纤维的亲水性和疏水性,增强了其矿化能力,使其更有利于细胞的附着和生长。此外,纤维表面的 CS 和“岛状”突起增加了接种在纤维膜上的 MC3T3-E1 细胞的碱性磷酸酶活性,并为细胞黏附和增殖提供了更合适的界面。这些结果表明,这种 PLA/CS 膜在组织工程中有应用潜力。更重要的是,我们的研究为设计 PLA 支架提供了一种新方法,即在细胞与材料的界面处具有形貌和生物活性的综合修饰效果,可用于生物医学。

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