版权说明:本文档由用户提供并上传,收益归属内容提供方,若内容存在侵权,请进行举报或认领
文档简介
1、111 211(1.400050; 2. 400050 :TG172.7:A :1005453720110100100811Na +K +Ca 2+Mg 2+Cl HPO 2 4HCO 33723420nm 100nm3 51:1112311:131431Á Ü : Ð · ± º ÕÙ²ß ¿ 15 ÆCu · ÔÀØ Cu O Ƭ ¬ ¸ 3 Mudali U K, Sridhar T M,
2、 Raj B. Corrosion of bioimplants J. 28: 601-637 ¥Ø ÆCu · ± Þ Í £ £ Pinto 4 YanSadhana, 2003, F, Chen G F. Review of the absorpH H, Zhao S Û Æ Cu · À Ø ¹Æ tion mechanism for proteins on metal surfaces J. Chin. ¹
3、6; À Cu ÀË µØ Cu/ J. Oral Implantol., 1997, 2(4: 189-193 ( ¡ °. » ¸ ÚÑ »Ú¢ ÍÆ ¾ Cu Ø±Þ £ J. ¦ ÎÏ ª Ú« Þ 1997 2(4: 189-193 ¨ ¶ ° ¹¯
4、; Ôر Þ S F, Yang P, al. Investigation Ç Æ Ô ¸ ß/¸ 5 Li G C, Zhu quartz crystaletmicrobalance J. of protein adsorption by Sens. World, ¥ ´§²´ · 1£ 2007, 12: 6-10 ( Ê Ö ¾Ý.
5、9; » ½ Ñ »ÝÄÚ J. ¢· 2007, 12: 6-10 4 6 Yan H H, Zhao S F, Chen G F. Research methods for protein absorption on the surface of biomedical metal maÀ¹¯Ù Ô Ø¶ ¶ ƨ terials J. Chin. J. Oral Implantol., 1998, 3(
6、2: 89-92 ¾ ¥¹¯Ù Ôغ / ±Þ « ( ¡ °. » ÖÏ Ö¸ ÚÑ »Ú ¶ £° Æ ¶ Æ° ¹¯ Ôر J. ¦ ÎÏ ª Ú« Þ 1
7、998 3(2: 89-92 Þ À¹¯· ÓÍ ÀØ 7 Zhong B, Zhang H. Evolution of theoretical study on protein adsorption on solid substrates J. J. Shenyang Normal ¹ ¶ ¶ ·§ ¶ Ó À± Univ. (Nat. Sci., 2006, 24(2: 158-160 Þ
8、 ÍØµÓ Á£ Ø ´Ï»¾ ÆË Ú. À»¸ Ñ » © J. Ò Ø (§ ½ É ×½ À¹¯ Ô Ø Ð ¶ ¾ «« , 2006, 24(2 158-160 8 Haynes C A, N
9、orde W. Globular proteins at solid/liquid ¬Ö Ô· Í Ó¨½ ¨Í ¬ Â/Æ interfaces J. Coll. Surf. B: Biointerfaces, 1994; 2: 517 · · · Ó¨Ã Ô ÍÝ 566 ½
10、219;«Ø ÆÖÛ¬Ö § ØÓ¨ ¨pH 9 Baier R. Conditioning surface to suit the biomedical enviÛ ß ¥ Æ¥ ¯ º£ ronment recent progress J. J. Biomech. Eng., 1982, 104: 257-271 Ø
11、23; ¸¥Û«Ø £½ ÆÇ 10 Arnebrant T, Ivarsson B, Larsson K, et al. Bilayer forma¶ ° ¹¯ Ôر Þ Æ Ç£ ³ tion at adsorption of proteins from aqueous solutions on Ñ ¶ Ø Ü Æ
12、80;¥Ç £ ظ metal surfaces J. Prog. Colloid Polym. Sci., 1985, 70: º· Ø ¶ £ 62-66 ¨ ɸƼ ¶ ° ¹ 11 Li Y, Cheng R S. Development of studying for protein adsorption on the solid surface J. Chin. Polym.
13、Bull., 2007, ¯ ÔØ±Þ ¦£ · « 3: 41-49 ¨1« ¶ غ §Õ Æ × ( ¹ Å ¸Ý. Ñ À»¸ »Ú J. , 2007, 3: 41-49 º § ¨ º § ´ÏØÅ
14、207; Saramago B, al. Bovine serum ¨2« Ýß § Æ Ó¨³Æ Ú 12 Serro A, Fernandes AonC,titania surfacesetand its relation to albumin adsorption ¼¿ Ó¨ ÓÛ ©§£ ¹¯À wettabil
15、ity aspects J. J. Biomed. Mater. Res., 1999, 46: 376-381 Ø Ð¶ · Æ« © §¬ Ø 13 Zhou H, Huo D Q. Study of adsorption and competitive ¤Ã Ø Ì£ adsorption of plasma proteins onto the surfaces of bioma¨3« « À
16、5;¯· ÓÍ Ø Ð terial D. Chongqing: Chongqing University, 2007 ¶ Æ ¹ ØÌ ´ Ô Í¨ ؽ . Æ Ñ Ö Ï Ö¸ Ú » Ð » (Æ ß D. É É
17、171;, 2007 µ ¹ À¹¯ ÍØ Ô Í¨¶ C Lee Y S. The stainless Æ·§ ¹ ¹¯· ØÔÍÍ ÔÍÓ 14 Kang andK,the correlation surface modication ofproperties steel between the surfac
18、e ¨ ÔÍ ¨Û صÓȤ§ £ and protein adsorption J. J. Mater. Sci.: Mater. Med., 1 2 67,68 2+ ß 1 Li S P. Introduction of Biomedical Materials M. Wuhan: Wuhan University of Technology Press, 2000: 52-55 Ð ( ( ¢ . 20
19、00 52-55 Ö Ï² ÖÕ © M. Ì : Ì Ö« M. ° «Ë 2 Cui F Z, Feng Q L. Biomaterials Science M. Beijing: Tsinghua University Press, 2004: 8-10 Ð ° 2004: 8-10 É Û. Ö Ï : ÇÑ «Ë 2007, 18: 1389-1398 15
20、 Krajewski A, Piancastelli A, Malavolti R. Albumin adhesion on ceramics and correlation with their Z-potential J. Biomaterials, 1998, 19: 637-641 16 Huang J, Le Y L, Zheng C Q. Vorman eect of plasma protein adsorption to biomaterials surfaces J. J. Biomed. Eng., 1999, 66(3: 371-376 ( . Vorman J. , 1
21、999, 66(3: 371-376 17 Norde W, Lyklema J. Why proteins prefer interfaces J. J. Biomater. Sci. Polym., 1991, 2: 183-202 Ù ¸¦ Ó Ê Æ Ñ ÖÏ Ö¸ »ÝÚ Ù Öϲ« Å« Þ 16 £ ̱ Þ
22、À ¨ 31 18 Willams R L, Willams D F. Albumin adsorption on metal surface J. Biomaterials, 1988, 9: 206-212 19 Klinger A, Steinberg D, Kohavi M N. Mechanism of adsorption of human albumin to titanium in vitro J. J. Biomed. Mater. Res., 1997, 36: 387-392 20 Clark G C F, Williams D F. The eect
23、s of proteins on metallic corrosion J. Biomed. Mater. Res., 1982, 16: 125-134 21 Contu F, Elsener B, Bohni H. Characterization of implant materials in fetal bovine serum and sodium sulfate by electrochemical impedance spectroscopy. I. Mechanically polished samples J. J. Biomed. Mater. Res., 2002, 62
24、: 412421 22 Okazaki Y, Tateishi T, Ito Y. Corrosion resistance of implant alloys in pseudo physiological solution and role of alloying elements in passive lms J. Mater. Trans., 1997, 38: 78-84 23 Williams R L, Brown S A, Merritt K. Electrochemical studies on the inuence of proteins on the corrosion
25、of implant alloys J. Biomaterials, 1988, 9: 181-186 24 Sousa S R, Barbosa M A. Corrosion resistance of titanium CP in saline physiological solutions with calcium phosphate and proteins J. Clin. Mater., 1993, 14: 287-294 25 Speck K M, Fraker A C. Anodic polarization behavior of Ti-Ni and Ti-6AI-4V in
26、 simulated physiological solutions J. J. Dent. Res., 1980, 59: 1590-1595 26 Rondelli G, Torricelli P, Fini M, et al. In vitro corrosion study by EIS of an equiatomic NiTi alloy and an implant quality AISI 316 stainless steel J. J. Biomed. Mater. Res. Part B: Appl. Biomat., 2006, 79B: 320-324 27 Chen
27、g X L, Sharon G R. Corrosion behavior of titanium in the presence of calcium phosphate and serum proteins J. Biomaterials, 2005, 26: 7350-7356 28 Hanawa T, Kohayama Y, Hiromoto S, et al. Eects of biological factors on the repassivation current of titanium J. Mater. Trans., 2004, 45: 1635-1639 29 Kha
28、n M A, Williams R L, Williams D F. The corrosion behavior of Ti6Al4V, Ti6Al7Nb and Ti13Nb13Zr in protein solutions J. Biomaterials, 1999, 20: 631-637 30 Querd A, A-Dumont C, Normand B, et al. Reactivity of titanium in physiological medium J. J. Electrochem. Soc., 2007, 154: C593-C601 31 Lima J, Sous
29、a S R, Ferreira A, et al. Interactions between calcium, phosphate, and albumin on the surface of titanium J. J. Biomed. Mater. Res., 2001, 55: 45-53 32 Lewis A C, Heard P J. The eect of calcium phosphate deposition upon corrosion of CoCr alloys and the potential for implant failure J. J. Biomed. Mat
30、er. Res., 2005, 75A: 365-373 33 Takemoto S, Hattori M, Yoshinari M, et al. Corrosion behavior and surface characterization of titanium in solution containing uoride and albumin J. Biomaterials, 2005, 26: 829-837 34 Ide K, Hattori M, Hasegawa K, et al. The eect of uoride and albumin on corrosion of t
31、itanium J. J. Dent. Res., 2001, 80: 663-670 35 Ide K, Hattori M, Yoshinari M, et al. The inuence of albumin on corrosion resistance of titanium in uoride solution J. J. Dent. Mater, 2003, 22(3: 359-70 36 Huang H H. Eect of uoride and albumin concentration on the corrosion behavior of Ti-6Al-4V alloy
32、 J. Biomaterials, 2003, 24: 275-282 37 Khan M A, Williams R L, Williams D F. Conjoint corrosion and wear in titanium alloys J. Biomaterials, 1999, 20: 765-772 38 Brown S A, Merritt K, Fraker A C, et al. Second Symposium of Corrosion and Degradation of Implant Materials C. Philadelphia, 1985: 105-116
33、 39 Contu F, Elsener, Bohni H. A study of the potentials achieved during mechanical abrasion and the repassivation rate of titanium and Ti6Al4V in inorganic buer solutions and bovine serum J. Electrochim. Acta, 2004, 50: 33-41 40 Hiromoto S, Mischler S. The inuence of proteins on the fretting-corros
34、ion behavior of a Ti6Al4V alloy J. Wear, 2006, 261: 1002-1011 41 Kocijan A, Milosev I. The inuence of complexing agent and proteins on the corrosion of stainless and their metal components J. J. Mater. Sci.: Mater. Med., 2003, 14: 69-77 42 Tang Y C, Katsuma S, Fujimoto S, et al. Electrochemical stud
35、y of type 304 and 316 stainless steels in simulated body uids and cell cultures J. Electrochim. Acta, 2006, 2: 709-715 43 Sousa S R, Barbosa M A. Electrochemistry of AISI 316L stainless steel in calcium phosphate and protein solutions J. J. Mater. Sci.: Mater. Med., 1991, 2: 19-26 44 Brown S A, Merr
36、itt K. Electrochemical corrosion in saline and serum J. J. Biomed. Mater. Res., 1980, 14, 173-175 45 Valero V C, Igual M A. Electrochemical characterization of biomedical alloys for surgical implants in simulated body uids J. Corros. Sci., 2008, 50: 1954-1961 46 Omanovic S, Roscoe S. Electrochemical
37、 studies of the adsorption behavior of bovine serum albumin on stainless steel J. Langmuir, 1999, 15: 8315-8321 47 Guo L, Liang C H, Guo H X, et al. Eect of brinogen on corrosion behavior of stainless steel in articial blood solution J. J. Biomed. Eng., 2001, 18(4: 565-567 ( ËÐ Â
38、3; Ý. ÀÑ È© ± » ¦ ¤ ´ Ú Ñ J. Öϲ« Å« Þ, 2001, 18(4: 565567 48 Frateur I, Lartundo-R L, Methivier C, et al. Inuence of bovine serum albumin in sulphuric acid aqueous solution on the corrosion and the passiv
39、ation of an iron-chromium J. Electrochim.Acta, 2006, 51: 1550-1557 49 Hsu H M, Buchanan R A. Serum concentration eects on the biocorrosion of surgical stainless steel J. Trans. Soc. Biomat., 1984, 7: 128-132 50 Rondelli G, Torricelli P, Fini M. et al. In vitro corrosion study by EIS of a nickel-free
40、 stainless steel for orthopaedic applications J. Biomaterials, 2005, 26: 739-744 51 Singh R, Dahotre N B. Corrosion degradation and prevention by surface modication of biometallic materials J. J. Mater. Sci.: Mater. Med., 2007, 18: 725-751 52 Badawy W A, Al-Khara F M, Al-Ajimi J R. Electrochemical b
41、ehavior of cobalt in aqueous solutions of dierent pH J. J. Appl. Electrochem., 2000, 30: 693-704 53 Milosev I, Strehblow H H. The composition of the surface passive lm formed on CoCrMo alloy in simulated 1 Á Ü:Ð · ± º ÕÙ²ß 62 ¿ 17 54 55 56 57 58
42、 59 60 61 physiological solution J. Electrochim. Acta, 2003, 48: 2767-2774 Lewis A C, Kilburn M R, Allen G C, et al. Eect of synovial uid, phosphate-buered saline solution, and water on the dissolution and corrosion properties of CoCrMo alloys as used in orthopedic implants J. J. Biomed. Mater. Res.
43、, 2005, 73A: 456-467 Hallab N J, Skipor A, Jacobs J J. Interfacial kinetics of titanium- and cobalt-based implant alloys in human serum: Metal release and biolm formation J. J. Biomed. Mater. Res., 2003, 65A: 311-318 Liang C H, Guo H X, Zheng R F. The eect of brinogen on the corrosion behavior of Co
44、CrNi alloys in PBS simulated body uid J. Rare Met. Mater. Eng., 2006, 35: 528-532 Querd A, A-Dumont C, Normand B, et al. Reactivity of CoCrMo alloy in physiological medium: Electrochemical characterization of the metal/protein interface J. Electrochem. Acta, 2008, 53:4461-4469 Yan Y, Neville A, Dows
45、on D. Biotribocorrosion of CoCrMo orthopaedic implant materials-Assessing the formation and eect of the biolm J. Tribol. Int., 2007, 40: 14921499 Yan Y, Neville A, Dowson D. Tribo-corrosion properties of cobalt-based medical implant alloys in simulated biological environments J. Wear, 2007, 263: 110
46、5-1111 Sun D, Wharton J A, Wood R J K, et al. Microabrasoncorrosion of cast CoCrMo alloy in simulated body uids J. Tribol. Int., 2009, 42: 99-110 Witte F, Fischer J, Nellesen J, et al. In vitro and in vivo 63 64 65 66 67 68 corrosion measurement of magnesium alloys J. Biomaterials, 2006, 27: 1013-10
47、18 Yamamoto A, Hiromoto S. Eect of inorganic salts, amino acids and proteins on the degradation of pure magnesium in vitro J. Mater. Sci. Eng., 2009, C 29: 1559-1568 Liu C L, Xin Y C, Tian X B, et al. Degradation susceptibility of surgical magnesium alloy in articial albumincontaining biological uid
48、 J. J. Mater. Res., 2007, 22: 1806-1814 Rettig R, Virtanen S. Time-dependent electrochemical characterization of the corrosion of a magnesium rareearth alloy in simulated body uids J. J. Biomed. Mater. Res., 2008, 85(1: 167-175 Rettig R, Virtanen S. Composition of corrosion layers on a magnesium rare-earth alloy in simulated body uids J. J. Biomed. Mater. Res., 2009, 88(2: 359-369 Zhu J J, Xu N X. Study of corrosion behavior for copper in simulated ute
温馨提示
- 1. 本站所有资源如无特殊说明,都需要本地电脑安装OFFICE2007和PDF阅读器。图纸软件为CAD,CAXA,PROE,UG,SolidWorks等.压缩文件请下载最新的WinRAR软件解压。
- 2. 本站的文档不包含任何第三方提供的附件图纸等,如果需要附件,请联系上传者。文件的所有权益归上传用户所有。
- 3. 本站RAR压缩包中若带图纸,网页内容里面会有图纸预览,若没有图纸预览就没有图纸。
- 4. 未经权益所有人同意不得将文件中的内容挪作商业或盈利用途。
- 5. 人人文库网仅提供信息存储空间,仅对用户上传内容的表现方式做保护处理,对用户上传分享的文档内容本身不做任何修改或编辑,并不能对任何下载内容负责。
- 6. 下载文件中如有侵权或不适当内容,请与我们联系,我们立即纠正。
- 7. 本站不保证下载资源的准确性、安全性和完整性, 同时也不承担用户因使用这些下载资源对自己和他人造成任何形式的伤害或损失。
最新文档
- 课题申报参考:健康老龄化背景下社区老年运动健康促进典型案例与创新模式研究
- 2025版大型商业综合体水电安装工程分包合同范本2篇
- 二零二五年度生物医药创新平台建设合同:地方政府与生物医药企业的合作3篇
- 2025版学校食堂承包合同包含食品安全培训与监督3篇
- 2025版微信公众号与电商平台跨界合作服务合同3篇
- 二零二五版绿化苗木培育与种植服务合同3篇
- 二零二五年度城市基础设施大数据信息服务与维护合同4篇
- 二零二五年度便利店便利店加盟店员劳动合同3篇
- 2025年二手车买卖广告宣传合作协议4篇
- 二零二五年度便利店品牌授权及区域保护合同3篇
- 销售与销售目标管理制度
- 人教版(2025新版)七年级下册英语:寒假课内预习重点知识默写练习
- 2024年食品行业员工劳动合同标准文本
- 全屋整装售后保修合同模板
- 高中生物学科学推理能力测试
- GB/T 44423-2024近红外脑功能康复评估设备通用要求
- 2024-2030年中国减肥行业市场发展分析及发展趋势与投资研究报告
- 运动技能学习
- 2024年中考英语专项复习:传统文化的魅力(阅读理解+完型填空+书面表达)(含答案)
- 公转私人转账协议
- 液压阻尼器工作原理
评论
0/150
提交评论