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Harnessing External Cues: Development and Evaluation of an In Vitro Culture System for Osteochondral Tissue Engineering

机译:利用外部线索:骨软骨组织工程体外培养系统的开发和评估

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摘要

Over the last decade, engineered structures have been developed for osteochondral (OC) tissue regeneration. While the optimal structure design is yet to be determined, these scaffolds require in vitro evaluation before clinical use. However, the means by which complex scaffolds, such as OC scaffolds, can be tested are limited. Taking advantage of a mesenchymal stem cell's (MSC's) ability to respond to its surrounding we harness external cues, such as the cell's mechanical environment and delivered factors, to create an in vitro culture system for OC tissue engineering with a single cell source on a gradient yet integrated scaffold system. To do this, the effect of hydrogel stiffness on the expression of human MSCs (hMSCs) chondrogenic differentiation was studied using histological analysis. Additionally, hMSCs were also cultured in different combinations of chondrogenic and osteogenic media to develop a co-differentiation media suitable for OC lineage differentiation. A uniquely graded (density-gradient matrix) OC scaffold with a distal cartilage hydrogel phase specifically tailored to support chondrogenic differentiation was cultured using a newly developed “simulated in vivo culture method.” The scaffold's culture in co-differentiation media models hMSC infiltration into the scaffold and subsequent differentiation into the distal cartilage and proximal bone layers. Cartilage and bone marker staining along with specific matrix depositions reveal the effect of external cues on the hMSC differentiation. As a result of these studies a model system was developed to study and culture OC scaffolds in vitro.
机译:在过去的十年中,已开发出用于骨软骨(OC)组织再生的工程结构。尽管尚未确定最佳的结构设计,但这些支架需要在临床使用之前进行体外评估。但是,测试复杂支架(例如OC支架)的方法受到限制。利用间充质干细胞(MSC)对其周围环境做出反应的能力,我们利用外部线索(例如细胞的机械环境和传递的因子)来创建用于OC组织工程的体外培养系统,并使用梯度上的单个细胞来源还集成了脚手架系统。为此,使用组织学分析研究了水凝胶刚度对人MSC(hMSCs)软骨分化的表达的影响。此外,还可以在软骨形成和成骨培养基的不同组合中培养hMSC,以开发适用于OC谱系分化的共分化培养基。使用新开发的“模拟体内培养法”培养了独特分级(密度梯度矩阵)的OC支架,该支架具有专门为支持软骨形成分化而专门设计的远端软骨水凝胶相。支架在共分化培养基中的培养可模拟hMSC渗透到支架中,然后分化为远端软骨和近端骨层。软骨和骨标记物的染色以及特定的基质沉积揭示了外部提示对hMSC分化的影响。这些研究的结果是开发了一个模型系统,用于在体外研究和培养OC支架。

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