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Can gamma irradiation during radiotherapy influence the metal release process for biomedical CoCrMo and 316L alloys?

机译:放射治疗期间的伽马射线辐射能否影响生物医学CoCrMo和316L合金的金属释放过程?

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摘要

The extent of metal release from implant materials that are irradiated during radiotherapy may be influenced by irradiation‐formed radicals. The influence of gamma irradiation, with a total dose of relevance for radiotherapy (e.g., for cancer treatments) on the extent of metal release from biomedical stainless steel AISI 316L and a cobalt‐chromium alloy (CoCrMo) was investigated in physiological relevant solutions (phosphate buffered saline with and without 10 g/L bovine serum albumin) at pH 7.3. Directly after irradiation, the released amounts of metals were significantly higher for irradiated CoCrMo as compared to nonirradiated CoCrMo, resulting in an increased surface passivation (enhanced passive conditions) that hindered further release. A similar effect was observed for 316L showing lower nickel release after 1 h of initially irradiated samples as compared to nonirradiated samples. However, the effect of irradiation (total dose of 16.5 Gy) on metal release and surface oxide composition and thickness was generally small. Most metals were released initially (within seconds) upon immersion from CoCrMo but not from 316L. Albumin induced an increased amount of released metals from AISI 316L but not from CoCrMo. Albumin was not found to aggregate to any greater extent either upon gamma irradiation or in the presence of trace metal ions, as determined using different light scattering techniques. Further studies should elucidate the effect of repeated friction and fractionated low irradiation doses on the short‐ and long term metal release process of biomedical materials. © 2018 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 106B: 2673–2680, 2018.
机译:放射治疗期间从植入材料中辐射出的金属从植入材料中释放的程度可能会受到辐射形成的自由基的影响。在生理相关溶液(磷酸盐)中研究了γ射线以及总剂量的放射疗法(例如癌症治疗)对生物医学不锈钢AISI 316L和钴铬合金(CoCrMo)中金属释放程度的影响。含和不含10 g / L牛血清白蛋白的缓冲盐溶液)的pH值为7.3。辐照后,与未辐照的CoCrMo相比,辐照的CoCrMo的金属释放量明显更高,导致表面钝化增加(增强的被动条件),从而阻碍了进一步的释放。对于316L观察到类似的效果,与未辐照样品相比,初始辐照样品1 h后镍释放量更低。但是,辐射(总剂量为16.5 Gy)对金属释放以及表面氧化物组成和厚度的影响通常很小。浸入CoCrMo后,大多数金属最初(几秒钟内)释放出来,而316L没有释放。白蛋白诱导从AISI 316L而不是从CoCrMo释放的金属量增加。如使用不同的光散射技术所测定的,发现无论是在γ射线照射下还是在痕量金属离子存在下,白蛋白都不会在更大程度上聚集。进一步的研究应阐明重复摩擦和低剂量辐照剂量对生物医学材料短期和长期金属释放过程的影响。 ©2018 Wiley Periodicals,Inc. J Biomed Mater Res B部分:Appl Biomater,106B:2673-2680,2018。

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