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Nanofiber–microsphere (nano-micro) matrices for bone regenerative engineering: a convergence approach toward matrix design

机译:用于骨再生工程的纳米纤维-微球(纳米-微)基质:基质设计的融合方法

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摘要

Bone is an essential organ for health and quality of life. Due to current shortfalls in therapy for bone tissue engineering, scientists have sought the application of synthetic materials as bone graft substitutes. As a composite organic/inorganic material with significant extra cellular matrix (ECM), one way to improve bone graft substitutes may be to engineer a synthetic matrix that is influenced by the physical appearance of natural ECM networks. In this work, the authors evaluate composite, hybrid scaffolds for bone tissue engineering based on composite ceramic/polymer microsphere scaffolds with synthetic ECM-mimetic networks in their pore spaces. Using thermally induced phase separation, nanoscale fibers were deposited in the pore spaces of structurally sound microsphere-based scaffold with a density proportionate to the initial polymer concentration. Porosimetry and mechanical testing indicated no significant changes in overall pore characteristics or mechanical integrity as a result of the fiber deposition process. These scaffolds displayed adequate mechanical integrity on the scale of human trabecular bone and supported the adhesion and proliferation of cultured mouse calvarial osteoblasts. Drawing from natural cues, these scaffolds may represent a new avenue forward for advanced bone tissue engineering scaffolds.
机译:骨骼是健康和生活质量的重要器官。由于当前用于骨组织工程的疗法的不足,科学家一直在寻求将合成材料用作骨移植物的替代品。作为具有大量细胞外基质(ECM)的有机/无机复合材料,一种改善骨移植替代物的方法可能是设计一种受天然ECM网络物理外观影响的合成基质。在这项工作中,作者评估了基于复合陶瓷/聚合物微球支架的多孔空间中具有合成ECM模拟网络的,用于骨组织工程的复合混合支架。使用热诱导相分离,纳米级纤维以与初始聚合物浓度成比例的密度沉积在结构合理的基于微球的支架的孔空间中。孔隙率法和机械测试表明,由于纤维沉积过程,总体孔隙特征或机械完整性没有明显变化。这些支架在人小梁骨的规模上显示出足够的机械完整性,并支持培养的小鼠颅盖成骨细胞的粘附和增殖。这些支架从自然线索中汲取了灵感,可能代表了先进的骨组织工程支架的新途径。

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