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丝素蛋白/明胶微载体作为骨组织工程支架。

Silk fibroin/gelatin microcarriers as scaffolds for bone tissue engineering.

机构信息

Department of Pharmacy & Pharmacology, University of Bath, Bath, BA2 7AY, UK.

Department of Chemical Engineering, University of Bath, Bath, BA2 7AY, UK.

出版信息

Mater Sci Eng C Mater Biol Appl. 2020 Jan;106:110116. doi: 10.1016/j.msec.2019.110116. Epub 2019 Aug 26.

Abstract

Microcarrier cell scaffolds have potential as injectable cell delivery vehicles or as building blocks for tissue engineering. The use of small cell carriers allows for a 'bottom up' approach to tissue assembly when moulding microparticles into larger structures, which can facilitate the introduction of hierarchy by layering different matrices and cell types, while evenly distributing cells through the structure. In this work, silk fibroin (SF), purified from Bombyx mori cocoons, was blended with gelatin (G) to produce materials composed of varying ratios of the two components (SF: G 25:75, 50:50, and 75:25). Cell compatibility to these materials was first confirmed in two-dimensional culture and found to be equivalent to standard tissue culture plastic, and better than SF or G alone. The mechanical properties of the blends were investigated and the blended materials were found to have increased Young's moduli over SF alone. Microcarriers of SF/G blends with defined diameters were generated in a reproducible manner through the use of an axisymmetric flow focussing device, constructed from off-the-shelf parts and fittings. These SF/G microcarriers supported adhesion of rat mesenchymal stem cells with high degrees of efficiency under dynamic culture conditions and, after culturing in osteogenic differentiation medium, cells were shown to have characteristics typical of osteoblasts. This work illustrates that microcarriers composed of SF/G blends are promising building blocks for osteogenic tissue engineering.

摘要

微载体细胞支架具有作为可注射细胞递药载体或作为组织工程构建块的潜力。使用小细胞载体允许在将微球模制为较大结构时采用“自下而上”的方法进行组织组装,这可以通过分层不同的基质和细胞类型来促进层次结构的引入,同时通过结构均匀地分布细胞。在这项工作中,从家蚕茧中纯化的丝素(SF)与明胶(G)混合,以产生两种成分的不同比例的材料(SF:G 25:75、50:50 和 75:25)。首先在二维培养中证实了这些材料对细胞的相容性,发现与标准组织培养塑料相当,优于 SF 或 G 单独使用。研究了混合物的力学性能,发现混合材料的杨氏模量比 SF 单独使用时有所提高。通过使用轴对称流聚焦装置以可重复的方式生成具有定义直径的 SF/G 混合物微载体,该装置由现成的零件和配件构建而成。这些 SF/G 微载体在动态培养条件下支持大鼠间充质干细胞的高效附着,并且在成骨分化培养基中培养后,细胞表现出成骨细胞的典型特征。这项工作表明,由 SF/G 混合物组成的微载体是成骨组织工程有前途的构建块。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbd3/6891254/9be78df947e7/gr1.jpg

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