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The biologic response to particles from a potential disc prosthesis material.

机译:对来自潜在的椎间盘假体材料的颗粒的生物反应。

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STUDY DESIGN: An in vivo study of material from a potential disc prosthesis. OBJECTIVE: To examine the histopathologic effect of particulate debris on the dura and neural tissue in sheep. SUMMARY OF BACKGROUND DATA: Disc prostheses are emerging as alternatives to spinal fusion for the treatment of symptomatic degenerative lumbar disc disease. Preclinical biocompatibility trials must be conducted before any device is considered for general use. METHODS: Artificially generated wear particles of a material known as Sinux (DePuy Spine, Raynham, MA) were implanted directly onto the lumbosacral dura and nerve roots of 18 sheep that were randomly allocated to 3 groups to survive between 1 and 6 months. Tissue sections from T12 to the sacrum were examined for histopathological evidence of inflammation and wound healing in response to the particles and for the effects on the neural elements. RESULTS: There was no significant evidence of inflammation, macrophage accumulation, or other tissue response. Other observations included some minor tissue pigmentation due to microhemorrhage, occasional but minimal lymphocyte infiltration, and crystalline Sinux in the fibroadipose connective tissue external to the dura. CONCLUSION: Artificially generated particles of Sinux placed directly onto the dura and nerve roots did not induce any significant biologic response in a sheep model.
机译:研究设计:来自潜在椎间盘假体的材料的体内研究。目的:研究颗粒碎片对绵羊硬脑膜和神经组织的组织病理学影响。背景数据概述:椎间盘假体正在替代脊柱融合术,以治疗有症状的退行性腰椎间盘疾病。必须先进行临床前生物相容性试验,然后再考虑将其用作一般用途。方法:将人工合成的名为Sinux的磨损颗粒(DePuy Spine,Raynham,MA)直接植入到18只绵羊的腰s硬脑膜和神经根上,随机分为3组,存活1至6个月。检查从T12到ac骨的组织切片是否有组织病理学证据,显示炎症和伤口愈合对颗粒的反应以及对神经元的影响。结果:没有明显的炎症,巨噬细胞蓄积或其他组织反应的证据。其他观察结果包括由于微出血引起的一些轻微的组织色素沉着,偶尔但很少的淋巴细胞浸润以及硬脑膜外的纤维脂肪结缔组织中的晶体Sinux。结论:人工产生的Sinux颗粒直接置于硬脑膜和神经根上,在绵羊模型中没有引起任何明显的生物学反应。

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