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Hemocompatibility of DLC coatings synthesized by ion beam assisted deposition

Hemocompatibility of DLC coatings synthesized by ion beam assisted deposition
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摘要 Ion beam-assisted diamond-like carbon (DLC) coatings have beenused for growing the human platelet, fibrinogen, and albumin in the control environment in order to assess their hemocompatibility. The hard carbon films were prepared on polymethylmethacrylate (PMMA) at room temperature using ion beam assisted deposition (IBAD). Raman spectroscopic analysis proved that the carbon films on PMMA are diamond-like with a higher fraction of sp\+3 bonds in the structure of mixed sp\+2+sp\+3 bonding. The blood protein adsorption tests showed that DLC coatings can adsorb more albumin and are slightly more fibrinogen than the PMMA chosen as a control sample. The platelets adhered on DLC coatings were reduced significantly in number. These results indicate good hemocompatibility of DLC coatings. Ion beam-assisted diamond-like carbon (DLC) coatings have been used for growing the human platelet, fibrinogen, and albumin in the control environment in order to assess their hemocompatibility. The hard carbon films were prepared on polymethylmethacrylate (PMMA) at room temperature using ion beam assisted deposition (IBAD). Raman spectroscopic analysis proved that the carbon films on PMMA are diamond-like with a higher fraction of sp3 bonds in the structure of mixed sp2+sp3 bonding. The blood protein adsorption tests showed that DLC coatings can adsorb more albumin and are slightly more fibrinogen than the PMMA chosen as a control sample. The platelets adhered on DLC coatings were reduced significantly in number. These results indicate good hemocompatibility of DLC coatings.
出处 《Science China(Technological Sciences)》 SCIE EI CAS 2001年第4期427-431,共5页 中国科学(技术科学英文版)
基金 This work is supported by the National Natural Science Foundation of China ( Grant No. 10075034) Foundation for University Key Teacher by the Ministry of Education of China.
关键词 像钻石的碳 离子横梁帮助了免职 蛋白质吸附 hemocompatibility diamond-like carbon ion beam assisted deposition protein adsorption hemocompatibility
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