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Engineering bone grafts with enhanced bone marrow and native scaffolds

机译:用增强的骨髓和天然支架工程化骨移植

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The translation of tissue engineering approaches to the clinic has been hampered by the inability to find suitable multipotent cell sources requiring minimal in vitro expansion. Enhanced bone marrow (eBM), which is obtained by reaming long bone medullary canals and isolating the solid marrow putty, has large quantities of stem cells and demonstrates significant potential to regenerate bone tissues. eBM, however, cannot impart immediate load-bearing mechanical integrity or maintain the gross anatomical structure to guide bone healing. Yet, its putty-like consistency creates a challenge for obtaining the uniform seeding necessary to effectively combine it with porous scaffolds. In this study, we examined the potential for combining eBM with mechanically strong, osteoinductive trabecular bone scaffolds for bone regeneration by creating channels into scaffolds for seeding the eBM. eBM was extracted from the femurs of adult Yorkshire pigs using a Synthes reamer-irrigator-aspirator device, analyzed histologically, and digested to extract cells and characterize their differentiation potential. To evaluate bone tissue formation, eBM was seeded into the channels in collagen-coated or noncoated scaffolds, cultured in osteogenic conditions for 4 weeks, harvested and assessed for tissue distribution and bone formation. Our data demonstrates that eBM is a heterogenous tissue containing multipotent cell populations. Furthermore, coating scaffolds with a collagen hydrogel significantly enhanced cellular migration, promoted uniform tissue development and increased bone mineral deposition. These findings suggest the potential for generating customized autologous bone grafts for treating critical-sized bone defects by combining a readily available eBM cell source with decellularized trabecular bone scaffolds.
机译:组织工程方法向临床的翻译因无法找到需要最小体外扩增的合适多能细胞来源而受到阻碍。增强型骨髓(eBM)是通过扩孔长的骨髓髓腔并分离出固态的腻子而获得的,具有大量的干细胞,并具有显着的再生骨组织的潜力。然而,eBM不能立即提供承重的机械完整性,也无法维持总体的解剖结构来指导骨骼愈合。然而,其类似油灰的稠度为获得将其与多孔支架有效结合所必需的均匀播种提出了挑战。在这项研究中,我们研究了将eBM与具有机械强度的骨诱导性小梁骨支架相结合的潜力,方法是在支架中创建用于播种eBM的通道。使用Synthes绞刀-冲洗器-抽吸器从成年约克郡猪的股骨中提取eBM,进行组织学分析,然后消化以提取细胞并表征其分化潜能。为了评估骨组织的形成,将eBM接种到胶原蛋白涂层或未涂层支架中的通道中,在成骨条件下培养4周,收获并评估组织分布和骨形成。我们的数据表明eBM是包含多能细胞群体的异质组织。此外,用胶原蛋白水凝胶涂覆支架显着增强了细胞迁移,促进了均匀的组织发育并增加了骨矿物质的沉积。这些发现表明,通过将易于获得的eBM细胞源与脱细胞的小梁骨支架相结合,可以产生定制的自体骨移植物以治疗关键尺寸的骨缺损。

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