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Bonding and Fusion of Meniscus Fibrocartilage Using a Novel Chondroitin Sulfate Bone Marrow Tissue Adhesive

机译:半月板纤维软骨的粘接和融合使用新型硫酸软骨素骨髓组织胶粘剂

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摘要

The weak intrinsic meniscus healing response and technical challenges associated with meniscus repair contribute to a high rate of repair failures and meniscectomies. Given this limited healing response, the development of biologically active adjuncts to meniscal repair may hold the key to improving meniscal repair success rates. This study demonstrates the development of a bone marrow (BM) adhesive that binds, stabilizes, and stimulates fusion at the interface of meniscus tissues. Hydrogels containing several chondroitin sulfate (CS) adhesive levels (30, 50, and 70 mg/mL) and BM levels (30%, 50%, and 70%) were formed to investigate the effects of these components on hydrogel mechanics, bovine meniscal fibrochondrocyte viability, proliferation, matrix production, and migration ability in vitro. The BM content positively and significantly affected fibrochondrocyte viability, proliferation, and migration, while the CS content positively and significantly affected adhesive strength (ranged from 60±17 kPa to 335±88 kPa) and matrix production. Selected material formulations were translated to a subcutaneous model of meniscal fusion using adhered bovine meniscus explants implanted in athymic rats and evaluated over a 3-month time course. Fusion of adhered meniscus occurred in only the material containing the highest BM content. The technology can serve to mechanically stabilize the tissue repair interface and stimulate tissue regeneration across the injury site.
机译:半月板固有的较弱的愈合反应以及与半月板修复相关的技术挑战导致修复失败和半月板切除的发生率很高。鉴于这种有限的愈合反应,半月板修复的生物活性辅助剂的开发可能是提高半月板修复成功率的关键。这项研究证明了一种可以粘合,稳定和刺激半月板组织界面融合的骨髓(BM)粘合剂。形成了含有几种硫酸软骨素(CS)粘合剂水平(30、50和70 mg / mL)和BM水平(30%,50%和70%)的水凝胶,以研究这些成分对水凝胶力学,牛半月板的影响体外纤维软骨细胞的活力,增殖,基质产生和迁移能力。 BM含量正向且显着影响纤维软骨细胞的活力,增殖和迁移,而CS含量正向并显着影响粘合强度(范围为60±17 kPa至335±88 kPa)和基质产生。使用植入无胸腺大鼠中的粘附牛半月板外植体,将选定的材料配方转换为半月板融合的皮下模型,并在3个月的时间过程中进行评估。仅在含有最高BM含量的材料中发生粘附的半月板融合。该技术可用于机械稳定组织修复界面并刺激整个损伤部位的组织再生。

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