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Wear Debris Characterization and Corresponding Biological Response: Artificial Hip and Knee Joints

机译:磨损碎片的表征和相应的生物反应:人工髋关节和膝关节

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Wear debris, of deferent sizes, shapes and quantities, generated in artificial hip and knees is largely confined to the bone and joint interface. This debris interacts with periprosthetic tissue and may cause aseptic loosening. The purpose of this review is to summarize and collate findings of the recent demonstrations on debris characterization and their biological response that influences the occurrence in implant migration. A systematic review of peer-reviewed literature is performed, based on inclusion and exclusion criteria addressing mainly debris isolation, characterization, and biologic responses. Results show that debris characterization largely depends on their appropriate and accurate isolation protocol. The particles are found to be non-uniform in size and non-homogeneously distributed into the periprosthetic tissues. In addition, the sizes, shapes, and volumes of the particles are influenced by the types of joints, bearing geometry, material combination, and lubricant. Phagocytosis of wear debris is size dependent; high doses of submicron-sized particles induce significant level of secretion of bone resorbing factors. However, articles on wear debris from engineered surfaces (patterned and coated) are lacking. The findings suggest considering debris morphology as an important parameter to evaluate joint simulator and newly developed implant materials.
机译:在人工髋部和膝盖中产生的大小,形状和数量各异的磨损碎片主要局限在骨骼和关节界面。该碎片与假体周围组织相互作用,并可能导致无菌性松动。这篇综述的目的是总结和整理关于碎片表征及其影响种植体迁移发生的生物学反应的最新证据。基于主要针对碎片分离,表征和生物学响应的纳入和排除标准,对同行评议的文献进行了系统的综述。结果表明,碎片的表征很大程度上取决于其适当和准确的隔离方案。发现颗粒尺寸不均匀并且不均匀地分布在假体周围组织中。另外,颗粒的大小,形状和体积还受接头类型,轴承几何形状,材料组合和润滑剂的影响。磨损碎片的吞噬作用取决于大小。高剂量的亚微米级颗粒会诱导骨吸收因子的大量分泌。但是,缺少从工程表面(经过图案处理和涂层处理)产生的碎屑的物品。这些发现建议将碎片形态视为评估关节模拟器和新开发的植入物材料的重要参数。

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