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Blood compatibility of zinc-calcium phosphate conversion coating on Mg-1.33Li-O.6Ca alloy
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作者 Yu-Hong ZOU Rong-Chang ZENG +4 位作者 Qing-Zhao WANG Li-Jun LIU Qian-Qian XU Chuang WANG Zhi-Wei LIU 《Frontiers of Materials Science》 SCIE CSCD 2016年第3期281-289,共9页
Magnesium alloys as a new class of biomaterials possess biodegradability and biocompatibility in comparison with currently used metal implants. However, their rapid corrosion rates are necessary to be manipulated by a... Magnesium alloys as a new class of biomaterials possess biodegradability and biocompatibility in comparison with currently used metal implants. However, their rapid corrosion rates are necessary to be manipulated by appropriate coatings. In this paper, a new attempt was used to develop a zinc-calcium phosphate (Zn-Ca-P) conversion coating on Mg-1.33Li-0.6Ca alloys to increase the biocompatibility and improve the corrosion resistance. In vitro blood biocompatibility of the alloy with and without the Zn-Ca-P coating was investigated to determine its suitability as a degradable medical biomaterial. Blood biocompatibility was assessed from the hemolysis test, the dynamic cruor time test, blood cell count and SEM observation of the platelet adhesion to membrane surface. The results showed that the Zn-Ca-P coating on Mg-1.33Li-0.6Ca alloys had good blood compatibility, which is in accordance with the requirements for medical biomaterials. 展开更多
关键词 magnesium alloy LITHIUM biomaterial BIOCOMPATIBILITY zinc-calciumphosphate coating
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