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首页> 外文期刊>Calcified Tissue International >Blood Vessel Wall–Derived Endothelial Colony-Forming Cells Enhance Fracture Repair and Bone Regeneration
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Blood Vessel Wall–Derived Endothelial Colony-Forming Cells Enhance Fracture Repair and Bone Regeneration

机译:血管壁衍生的内皮集落形成细胞增强骨折修复和骨再生

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Endochondral bone formation requires new blood vessel formation, and endothelial progenitor cells (EPCs) may play a role in this process. Endothelial colony-forming cells (ECFCs), one subtype of EPCs, isolated from the microvasculature of rat lungs, exhibited cell surface antigen markers and gene products characteristic of endothelial cells and displayed high proliferative potential and an ability to form vessel-like network structures in vitro. The aim of this study was to evaluate whether ECFCs facilitate bone healing during fracture repair and stimulate bone regeneration. When type I collagen sponge containing ECFCs were surgically wrapped around the fractured femurs of rats, newly formed bone mineral at the site of fracture was 13% greater (P = 0.01) and energy to failure was 46% greater (P = 0.01) compared to sponge-wrapped fractures without ECFCs. When ECFCs in type I collagen sponge were surgically implanted into the bone defective area, more new vessels formed locally in comparison with sponge-alone controls and new bone tissues were seen. Further, co-implantation of ECFCs and hydroxyapatite/tricalcium phosphate (HA/TCP) scaffolds at the bone defective sites stimulated more new bone tissues than HA/TCP scaffold alone. These results show that cell therapy with vessel wall–derived ECFCs can induce new vessel formation, stimulate new bone formation, and facilitate bone repair and could be a useful approach to treat non-union fractures and bone defects.
机译:软骨内骨形成需要新的血管形成,并且内皮祖细胞(EPC)可能在此过程中起作用。内皮集落形成细胞(ECFC)是一种EPC的亚型,从大鼠肺的微脉管系统中分离出来,具有内皮细胞特有的细胞表面抗原标记和基因产物,并具有很高的增殖潜能和形成血管样网络结构的能力。体外。这项研究的目的是评估ECFC是否在骨折修复过程中促进骨愈合并刺激骨再生。当将含有ECFC的I型胶原海绵通过外科手术包裹在大鼠股骨周围时,与骨折部位相比,骨折部位新形成的骨矿物质增加了13%(P = 0.01),而衰竭能量增加了46%(P = 0.01)。没有ECFC的海绵包裹骨折。当将I型胶原海绵中的ECFC通过外科手术植入到骨缺损区域时,与仅使用海绵的对照组相比,会在本地形成更多的新血管,并且会看到新的骨组织。此外,与单独的HA / TCP支架相比,将ECFC和羟基磷灰石/磷酸三钙(HA / TCP)支架共植入骨缺损部位可刺激更多的新骨组织。这些结果表明,使用血管壁衍生的ECFC进行的细胞疗法可诱导新血管形成,刺激新骨形成并促进骨修复,并且可能是治疗非愈合性骨折和骨缺损的有用方法。

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