首页> 美国卫生研究院文献>International Journal of Biomaterials >In Vivo and In Vitro Study of a Polylactide-Fiber-Reinforced β-Tricalcium Phosphate Composite Cage in an Ovine Anterior Cervical Intercorporal Fusion Model
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In Vivo and In Vitro Study of a Polylactide-Fiber-Reinforced β-Tricalcium Phosphate Composite Cage in an Ovine Anterior Cervical Intercorporal Fusion Model

机译:绵羊前颈椎体间融合模型中聚乳酸-纤维增强的β-磷酸三钙复合材料笼的体内和体外研究

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摘要

A poly-70L/30DL-lactide (PLA70)–β-tricalcium phosphate (β-TCP) composite implant reinforced by continuous PLA-96L/4D-lactide (PLA96) fibers was designed for in vivo spinal fusion. The pilot study was performed with four sheep, using titanium cage implants as controls. The composite implants failed to direct bone growth as desired, whereas the bone contact and the proper integration were evident with controls 6 months after implantation. Therefore, the PLA70/β-TCP composite matrix material was further analyzed in the in vitro experiment by human and ovine adipose stem cells (hASCs and oASCs). The composites proved to be biocompatible as confirmed by live/dead assay. The proliferation rate of oASCs was higher than that of hASCs at all times during the 28 d culture period. Furthermore, the composites had only a minor osteogenic effect on oASCs, whereas the hASC osteogenesis on PLA70/β-TCP composites was evident. In conclusion, the composite implant material can be applied with hASCs for tissue engineering but not be evaluated in vivo with sheep.
机译:设计了由连续PLA-96L / 4D-丙交酯(PLA96)纤维增强的聚70L / 30DL-丙交酯(PLA70)-β-磷酸三钙(β-TCP)复合植入物,用于体内脊柱融合。使用钛笼式植入物作为对照,对四只绵羊进行了初步研究。复合植入物未能按照要求引导骨骼生长,而植入后6个月,对照组的骨接触和适当整合明显。因此,在体外实验中,人和绵羊脂肪干细胞(hASC和oASC)对PLA70 /β-TCP复合基质材料进行了进一步分析。经活/死分析证实,该复合材料具有生物相容性。在28天的培养期间,oASCs的增殖率始终高于hASCs。此外,该复合材料对oASCs的成骨作用很小,而在PLA70 /β-TCP复合材料上的hASC成骨作用则很明显。总之,复合植入材料可与hASC一起用于组织工程,但不能在绵羊体内进行评估。

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