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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Corrosion of and changes in biological effects of cobalt chrome alloy and 316L stainless steel prosthetic particles with age.
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Corrosion of and changes in biological effects of cobalt chrome alloy and 316L stainless steel prosthetic particles with age.

机译:钴铬合金和316L不锈钢假体颗粒随年龄的腐蚀及其生物学效应的变化。

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摘要

The biological response to prosthetic wear particles is thought to stimulate the bone loss that often leads to prosthetic joint failure. This in vitro study investigates how metal particles corrode under physiological conditions and how biological responses to particles may change as particles age. Cobalt chrome alloy (CoCr) and 316L stainless steel (SS) particles of a similar size, shape, and concentration to those found in revision tissues were used. The release of soluble metal (Co and Cr from CoCr particles and Fe from 316L SS) was markedly reduced with time under physiological conditions. CoCr particles released far more Co than Cr. The biological responses to aged and freshly produced particles were tested using human monocytes because wear particles are usually associated with this type of cell in the periarticular tissues. Aged particles of both metals were markedly less toxic to monocytes than freshly produced particles. Aged particles also appeared to stimulate the release of more IL-6 and prostaglandin E(2) from monocytes. The results show that CoCr and 316L SS particles become less toxic but may induce more bone resorbing mediators as they age in vivo. Copyright 2000 John Wiley & Sons, Inc.
机译:对假体磨损颗粒的生物学反应被认为刺激了通常导致假体关节衰竭的骨质流失。这项体外研究调查了金属粒子在生理条件下如何腐蚀以及随着粒子年龄的增长,对粒子的生物学反应也可能发生变化。使用的钴铬合金(CoCr)和316L不锈钢(SS)颗粒的大小,形状和浓度与翻新组织中的相似。在生理条件下,可溶性金属(CoCr颗粒中的Co和Cr以及316L SS中的Fe)的释放随时间显着减少。 CoCr颗粒释放的Co远多于Cr。使用人单核细胞测试了对衰老和新鲜产生的颗粒的生物学反应,因为磨损颗粒通常与关节周围组织中的这种类型的细胞有关。两种金属的老化颗粒对单核细胞的毒性均比新鲜产生的颗粒低。老年的颗粒也似乎刺激单核细胞释放更多的IL-6和前列腺素E(2)。结果表明,CoCr和316L SS颗粒的毒性降低,但随着它们在体内老化,可能会诱导更多的骨吸收介质。版权所有2000 John Wiley&Sons,Inc.

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