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Bone Tissue Engineering Constructs Based on Starch Scaffolds and Bone Marrow Cells Cultured in a Flow Perfusion Bioreactor

机译:基于淀粉支架和流动灌注生物反应器培养的骨组织工程构建体

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This study aims to investigate the effect of culturing conditions (static and flow perfusion) on the proliferation and osteogenic differentiation of rat bone marrow (RBM) stromal cells seeded on two starch based three-dimensional scaffolds exhibiting distinct porous structures. For this purpose, it was selected: ⅰ) a scaffold based on SEVA-C (a blend of starch with ethylene vinyl alcohol) obtained by extrusion with a blowing agent and ⅱ) a scaffold based on SPCL (a blend of starch with polycaprolactone) obtained by a fiber bonding process. The obtained results suggest that flow perfusion culture enhances the osteogenic differentiation of RBM cells and improves their distribution in 3-D starch-based scaffolds, by improving nutrients delivery in the interior of the scaffolds and simultaneously by stimulating the seeded cells by exposing them to fluid shear forces. They also indicate that scaffold architecture and pore interconnectivity affect the homogeneity of the formed tissue.
机译:本研究旨在探讨培养条件(静态和流动灌注)对大鼠骨髓(RBM)基质细胞的增殖和骨质发生分化的影响,所述三维三维支架上呈现出明显多孔结构的三个三维支架。为此目的,选择:Ⅰ)基于SPA-C(用乙烯乙烯醇混合的支架)通过挤出的吹塑剂和Ⅱ)基于SPCL的支架(用聚己内酯的淀粉共混物)通过纤维粘合过程获得。所得结果表明,流动灌注培养增强了RBM细胞的成骨分化,并通过改善支架内部的营养物质递送,通过将种子细胞暴露于流体来同时提高其在3-D淀粉基支架中的分布。剪切力。他们还表明支架结构和孔互连性影响形成的组织的均匀性。

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