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Meniscus-Derived Matrix Bioscaffolds: Effects of Concentration and Cross-Linking on Meniscus Cellular Responses and Tissue Repair

机译:半月板衍生的基质生物支架:浓缩和交联对半月板细胞反应和组织修复的影响

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摘要

Meniscal injuries, particularly in the avascular zone, have a low propensity for healing and are associated with the development of osteoarthritis. Current meniscal repair techniques are limited to specific tear types and have significant risk for failure. In previous work, we demonstrated the ability of meniscus-derived matrix (MDM) scaffolds to augment the integration and repair of an in vitro meniscus defect. The objective of this study was to determine the effects of percent composition and dehydrothermal (DHT) or genipin cross-linking of MDM bioscaffolds on primary meniscus cellular responses and integrative meniscus repair. In all scaffolds, the porous microenvironment allowed for exogenous cell infiltration and proliferation, as well as endogenous meniscus cell migration. The genipin cross-linked scaffolds promoted extracellular matrix (ECM) deposition and/or retention. The shear strength of integrative meniscus repair was improved with increasing percentages of MDM and genipin cross-linking. Overall, the 16% genipin cross-linked scaffolds were most effective at enhancing integrative meniscus repair. The ability of the genipin cross-linked scaffolds to attract endogenous meniscus cells, promote glycosaminoglycan and collagen deposition, and enhance integrative meniscus repair reveals that these MDM scaffolds are promising tools to augment meniscus healing.
机译:半月板损伤,特别是在无血管区,具有低的愈合倾向,并与骨关节炎的发展有关。当前的半月板修复技术仅限于特定的撕裂类型,并且具有很大的失效风险。在以前的工作中,我们证明了弯液面基质(MDM)支架能够增强体外弯液面缺损的整合和修复能力。这项研究的目的是确定百分比组成和MDM生物支架的脱氢(DHT)或Genipin交联对原发性半月板细胞反应和综合性半月板修复的影响。在所有支架中,多孔微环境都允许外源性细胞浸润和增殖以及内源性半月板细胞迁移。 genipin交联的支架促进细胞外基质(ECM)的沉积和/或保留。随着MDM和genipin交联的百分比增加,整体半月板修复的剪切强度得到改善。总体而言,16%的尼尼平交联支架在增强整合性半月板修复方面最有效。京尼平交联支架吸引内源性半月板细胞,促进糖胺聚糖和胶原蛋白沉积以及增强整合性半月板修复的能力表明,这些MDM支架是增强半月板愈合的有前途的工具。

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