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Electrochemical Hydroxyapatite Coatings on Nitinol Stents for the Reduction of Metal Ions Elution

机译:镍钛合金支架上的电化学羟基磷灰石涂层,用于减少金属离子洗脱

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Nitinol was coated with biocompatible calcium phosphate materials by pulsed electrolytic deposition (ELD) to reduce toxic metal-ions elution. The pulse ELD for the stents was carried out with changing the current off-periods (t_(off)) of the pulse wave. The pulse ELD suppressed the generation of H_2 gas due to the electrolysis of water on a calcium phosphate layer and improved the adhesiveness of the coating layer on nitinol compared with a conventional DC-ELD. The coating layers were identified to be octacalcium phosphate (OCP) at lower t_(off), while they were transformed to dicalcium phosphate anhydraous (DCPA) with an increase of t_(off). The layers of OCP or DCPA on the nitinol surface were subjected to a NaOH treatment at 60°C for 3days to transform them into hydroxyapatite (HAp). From results of a metal-ions elution test, the deposited calcium phosphates suppressed nickel ions elution at one quarter compared with the bare nitinol stent. These results indicate that the pulse ELD of biocompatible calcium phosphate materials on the nitinol stent was one of the best techniques to create firmly attached coating on it and reduce toxic nickel ions elution.
机译:通过脉冲电解沉积(ELD)涂覆有生物相容性磷酸钙材料的镍钛醇,以减少毒性金属离子洗脱。通过改变脉冲波的电流关闭周期(T_(OFF))来执行支架的脉冲ELD。由于常规的DC-ELD,脉冲ELD由于在磷酸钙层上的电解而抑制了H_2气体的产生,并改善了与常规DC-ELD相比纳米醇上的涂层的粘附性。将涂层层鉴定为在较低的T_(OFF)下磷酸叔钯(OCP),同时随着T_(OFF)的增加,将它们转化为磷酸二钙卤水(DCPA)。在60℃下对Nitinol表面上的OCP或DCPA的层进行NaOH处理,使其转化为羟基磷灰石(HAP)。从金属离子洗脱试验的结果,与裸硝基吲哚支架相比,沉积的磷酸钙抑制了四分之一的镍离子洗脱。这些结果表明,镍钛烯醇支架上的生物相容性磷酸钙材料的脉冲层是产生牢固连接涂层的最佳技术之一,并减少毒性镍离子洗脱。

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