首页> 外文期刊>Acta biomaterialia >Primary human chondrocyte extracellular matrix formation and phenotype maintenance using RGD-derivatized PEGDM hydrogels possessing a continuous Young's modulus gradient
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Primary human chondrocyte extracellular matrix formation and phenotype maintenance using RGD-derivatized PEGDM hydrogels possessing a continuous Young's modulus gradient

机译:使用具有连续杨氏模量梯度的RGD衍生化PEGDM水凝胶,原代人软骨细胞胞外基质形成和表型维持

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Efficient ex vivo methods for expanding primary human chondrocytes while maintaining the phenotype is critical to advancing the sourcing of autologous cells for tissue engineering applications. While there has been significant research reported in the literature, systematic approaches are necessary to determine and optimize the chemical and mechanical scaffold properties for hyaline cartilage generation using limited cell numbers. Functionalized hydrogels possessing continuous variations in physico-chemical properties are, therefore, an efficient three-dimensional platform for studying several properties simultaneously. Herein we describe a polyethylene glycol dimethacrylate (PEGDM) hydrogel system with a modulus gradient (~27,000-3800 Pa) containing a uniform concentration of arginine-glycine-aspartic acid (RGD) peptide to enhance cell adhesion in order to correlate primary human osteoarthritic chondrocyte proliferation, phenotype maintenance, and extracellular matrix (ECM) production with hydrogel properties. Cell number and chondrogenic phenotype (CD14:CD90 ratios) were found to decline in regions with a higher storage modulus (>13,100 Pa), while regions with a lower storage modulus maintained their cell number and phenotype. Over 3 weeks culture hydrogel regions possessing a lower Young's modulus experienced an increase in ECM content (~200%) compared with regions with a higher storage modulus. Variations in the amount and organization of the cytoskeletal markers actin and vinculin were observed within the modulus gradient, which are indicative of differences in chondrogenic phenotype maintenance and ECM expression. Thus scaffold mechanical properties have a significant impact in modulating human osteoarthritic chondrocyte behavior and tissue formation.
机译:在维持表型的同时扩展原代人软骨细胞的有效离体方法对于促进自体细胞的来源对于组织工程应用而言至关重要。尽管已有大量文献报道,但是系统性的方法对于确定和优化使用有限细胞数生成透明软骨的化学和机械支架特性是必要的。因此,在物理化学性质上具有连续变化的功能化水凝胶是用于同时研究多种性质的高效三维平台。在本文中,我们描述了具有均匀浓度的精氨酸-甘氨酸-天冬氨酸(RGD)肽的模量梯度(〜27,000-3800 Pa)的聚乙二醇二甲基丙烯酸酯(PEGDM)水凝胶系统,以增强细胞粘附性,从而使原代人骨关节炎软骨细胞相关联具有水凝胶特性的细胞增殖,表型维持和细胞外基质(ECM)生产。发现具有较高储能模量(> 13,100 Pa)的区域的细胞数和软骨形成表型(CD14:CD90比)下降,而具有较低储能模量的区域保持其细胞数和表型。与具有较高储能模量的区域相比,具有较低杨氏模量的培养水凝胶区域在三周内经历了ECM含量的增加(〜200%)。在模量梯度内观察到了细胞骨架标志物肌动蛋白和纽蛋白的数量和组织的变化,这表明软骨形成表型维持和ECM表达的差异。因此,支架的机械性能在调节人骨关节炎软骨细胞行为和组织形成中具有重要影响。

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