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钴铬金属对金属髋关节置换术中金属离子释放的临床意义。

The clinical significance of metal ion release from cobalt-chromium metal-on-metal hip joint arthroplasty.

作者信息

Cobb A G, Schmalzreid T P

机构信息

Epsom General Hospital, Epsom, Surrey, United Kingdom.

出版信息

Proc Inst Mech Eng H. 2006 Feb;220(2):385-98. doi: 10.1243/09544119JEIM78.

Abstract

Metal-on-metal (MOM) bearings offer extremely low wear and the avoidance of polyethylene but generate metallic wear particles. Although their total volume is dramatically smaller than polyethylene debris, these particles are in the nanometre size range and are many times more numerous. Metallic particles are ingested by macrophages or may be disseminated via lymphatics to the reticuloendothelial system. They corrode, and metal ions are present in the circulation and concentrated in erythrocytes. Excretion of metal ions via the kidneys seems to balance their generation in patients with MOM implants. However, highly sensitive detection methods can be used to show that levels of circulating cobalt and chromium ions are several times the normal level. These concentrations are well within the limits identified as dangerous to health in workers exposed to industrial chemicals, and also considerably lower than the levels found to cause cell toxicity in vitro. The local concentrations of particles and metal ions in the synovial tissue may occasionally exceed these limits and cause tissue necrosis. Clinical experience of lysis is rare in association with MOM bearings, as are hypersensitivity reactions and MOM bearings have had an excellent record over four decades and have a favourable benefit to risk ratio. Further reduction in risk will be achieved by improvement of materials, engineering, and accuracy of insertion.

摘要

金属对金属(MOM)轴承磨损极低,无需使用聚乙烯,但会产生金属磨损颗粒。尽管这些颗粒的总体积远小于聚乙烯碎片,但它们处于纳米尺寸范围,数量要多很多倍。金属颗粒会被巨噬细胞吞噬,或者可能通过淋巴管扩散到网状内皮系统。它们会发生腐蚀,金属离子存在于循环系统中,并在红细胞中富集。对于植入MOM的患者,通过肾脏排出金属离子似乎可以平衡其生成。然而,使用高灵敏度检测方法可以发现,循环中的钴离子和铬离子水平是正常水平的几倍。这些浓度完全在接触工业化学品的工人中被认定为对健康有害的限度之内,而且也远低于在体外发现会导致细胞毒性的水平。滑膜组织中颗粒和金属离子的局部浓度偶尔可能会超过这些限度,导致组织坏死。与MOM轴承相关的溶解临床经验很少见,过敏反应也很少见,而且MOM轴承在过去四十年里有着出色的记录,风险收益比良好。通过改进材料、工程技术和植入精度将进一步降低风险。

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