首页> 外文OA文献 >Mechanical and Biochemical Assessments of Three-Dimensional Poly(1,8-Octanediol-co-Citrate) Scaffold Pore Shape and Permeability Effects on In Vitro Chondrogenesis Using Primary Chondrocytes
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Mechanical and Biochemical Assessments of Three-Dimensional Poly(1,8-Octanediol-co-Citrate) Scaffold Pore Shape and Permeability Effects on In Vitro Chondrogenesis Using Primary Chondrocytes

机译:机械和生化评估三维(1,8-辛二醇-柠檬酸-共柠檬酸)支架孔的形状和渗透性对体外软骨形成的原代软骨细胞的影响。

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摘要

Poly(1,8-octanediol-co-citrate) (POC) is a biocompatible, biodegradable elastomer with potential application for soft tissue applications such as cartilage. For chondrogenesis, permeability is a scaffold design target that may influence cartilage regeneration. Scaffold permeability is determined by many factors such as pore shape, pore size, pore interconnectivity, porosity, and so on. Our focus in this study was to examine the effects of pore shape and permeability of two different POC scaffold designs on matrix production, mRNA gene expression, and differentiation of chondrocytes in vitro and the consequent mechanical property changes of the scaffold/tissue constructs. Since type I collagen gel was used as a cell carrier in the POC scaffolds, we also examined the effects of collagen gel concentration on chondrogenesis. We found that lower collagen I gel concentration provides a favorable microenvironment for chondrocytes promoting better chondrogenic performance of chondrocytes. With regard to scaffold design, low permeability with a spherical pore shape better enhanced the chondrogenic performance of chondrocytes in terms of matrix production, and mRNA gene expressions in vitro compared to the highly permeable scaffold with a cubical pore shape.
机译:聚(1,8-辛二醇-柠檬酸酯)(POC)是一种生物相容性,可生物降解的弹性体,具有潜在的应用前景,可用于诸如软骨的软组织应用。对于软骨形成,通透性是可能影响软骨再生的支架设计目标。支架的渗透性取决于许多因素,例如孔的形状,孔径,孔的互连性,孔隙率等。我们在这项研究中的重点是检查两种不同POC支架设计的孔形状和通透性对体外体外基质产生,mRNA基因表达和软骨细胞分化以及支架/组织构建体的力学性能变化的影响。由于I型胶原蛋白凝胶被用作POC支架中的细胞载体,因此我们还检查了胶原蛋白凝胶浓度对软骨形成的影响。我们发现较低的胶原蛋白I凝胶浓度为软骨细胞提供了有利的微环境,促进了软骨细胞的更好的成软骨性能。关于支架设计,与具有立方体孔形状的高渗透性支架相比,具有球形孔形状的低渗透性在基质产生和体外mRNA基因表达方面更好地增强了软骨细胞的软骨形成性能。

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