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The impact of discrete compartments of a multi-compartment collagen-GAG scaffold on overall construct biophysical properties

机译:多隔室胶原蛋白-GAG支架离散隔室对整体构建物生物物理特性的影响

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摘要

Orthopedic interfaces such as the tendon-bone junction (TBJ) present unique challenges for biomaterials development. Here we describe a multi-compartment collagen–GAG scaffold fabricated via lyophilization that contains discrete mineralized (CGCaP) and non-mineralized (CG) regions joined by a continuous interface. Modifying CGCaP preparation approaches, we demonstrated scaffold variants of increasing mineral content (40 vs. 80 wt% CaP). We report the impact of fabrication parameters on microstructure, composition, elastic modulus, and permeability of the entire multi-compartment scaffold as well as discrete mineralized and non-mineralized compartments. Notably, individual mineralized and non-mineralized compartments differentially impacted the global properties of the multi-compartment composite. Of particular interest for the development of mechanically-loaded multi-compartment composites, the elastic modulus and permeability of the entire construct were governed primarily by the non-mineralized and mineralized compartments, respectively. Based on these results we hypothesize spatial variations in scaffold structural, compositional, and mechanical properties may be an important design parameter in orthopedic interface repair.
机译:诸如骨-腱连接(TBJ)之类的骨科界面对生物材料的发展提出了独特的挑战。在这里,我们描述了一种通过冷冻干燥法制成的多室胶原蛋白– GAG支架,该支架包含通过连续界面连接的离散矿化(CGCaP)和非矿化(CG)区。修改CGCaP的制备方法,我们证明了增加矿物质含量的支架变体(CaP相对于80 wt%为40%)。我们报告了制造参数对整个多室支架以及离散的矿化和非矿化隔室的微观结构,组成,弹性模量和渗透性的影响。值得注意的是,单个矿化隔室和非矿化隔室对多隔室复合材料的整体性能有不同的影响。对于机械加载的多隔室复合材料的开发特别感兴趣,整个构造的弹性模量和渗透性分别主要由未矿化和矿化的隔室控制。基于这些结果,我们假设支架结构,组成和机械性能的空间变化可能是骨科界面修复的重要设计参数。

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