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镁合金被认为是一种革命性的可生物降解医用金属材料。然而,在组织的愈合期间合金局部腐蚀过快,以致服役期力学性能下降或产生对人体有毒副作用的产物,严重限制了其在临床上的应用。合金化是提高镁合金力学性能和生物相容性的一种有效方法。全面综述了生物医用镁合金的合金化研究进展,包括添加生物营养元素(Ca、Sr、Zn 等),微量无毒元素(Zr、Nd、Y)及有毒元素(Al、Li、Ce 等)对合金的体内外细胞毒性、组织反应、耐腐蚀性能和力学性能的影响。此外,还简单总结了镁合金中多种合金化元素复合添加的最新研究情况,展望了可降解镁合金材料合金化研究的方向。

Magnesium based alloys have been considered as a revolutionary biodegradable metal for biomedical applications.However,in the healing of human body tissues,fast local degradation of the alloys gives rise to the de-crease in mechanical properties during the service period and the formation of unexpected products which have toxic effects on the human body,thus their clinical application have been severely limited.Alloying is an effective method to improve the mechanical properties and biocompatibility of magnesium alloys.The research progress of biodegradable magnesium based alloys on the alloying is comprehensively reviewed,including the influences of adding biological nut-rient elements (Ca,Sr,Zn etc.),trace nontoxic elements (Zr,Nd,Y),and toxic elements (Al,Li,Ce etc.)on their cytotoxicity in vivo and in vitro,local tissue reaction,anti-corrosion performance and mechanical properties.Be-sides,the latest research situation about combinatorial addition of various alloying elements in magenesium alloys is briefly summarized.Finally,the development trends in alloying of biodegradable magnesium alloys are prospected.

参考文献

[1] Staigera M P;Pietaka A M;Huadmai J et al.Magnesium materials, and its alloys as orthopedic biomaterials:A review[{?}J].,2006,27(9):1728.
[2] Revell P A;Damien E;Zhang X S.The effect of 256:447 on titanium alloys implants[J].Key Engineering Materials,2004:254.
[3] Vormann J .Magnesium: nutrition and metabolism.[J].Molecular Aspects of Medicine: An Interdisciplinary Review Journal,2003(1/3):27-37.
[4] Witte F;Kaese V;Haferkamp H;Switzer E;Meyer Lindenberg A;Wirth CJ;Windhagen H .In vivo corrosion of four magnesium alloys and the associated bone response.[J].Biomaterials,2005(17):3557-3563.
[5] Gu X N;Zheng Y F;Cheng Y et al.In vitro corrosion and rials, biocompatibility of binary magnesium alloys[{?}J].,2009,30(4):484.
[6] Li Z J;Gu X N;Lou S Q et al.The development of binary[J].BIOMATERIALS,2008,29(10):1329.
[7] Li, Y.;Hodgson, P.D.;Wen, C. .The effects of calcium and yttrium additions on the microstructure, mechanical properties and biocompatibility of biodegradable magnesium alloys[J].Journal of Materials Science,2011(2):365-371.
[8] Woo-Cheol Kim;Jung-Gu Kim;Ji-Young Lee;Hyun-Kwang Seok .Influence of Ca on the corrosion properties of magnesium for biomaterials[J].Materials Letters,2008(25):4146-4148.
[9] Pietak A;Mahoney P;Dias GJ;Staiger MP .Bone-like matrix formation on magnesium and magnesium alloys[J].Journal of Materials Science. Materials in Medicine,2008(1):407-415.
[10] Yizao Wan;Guangyao Xiong;Honglin Luo;Fang He;Yuan Huang;Xiaoshong Zhou .Preparation and characterization of a new biomedical magnesium-calcium alloy[J].Materials & design,2008(10):2034-2037.
[11] Wu G H;Fan Y;Gao H T et al.The effect of Ca and rare earth elements on the microstructure,mechanical properties and corrosion behavior of AZ91D[J].MATERIALS SCIENCE & ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING,2005,408(1-2):255.
[12] Kannan MB;Raman RKS .In vitro degradation and mechanical integrity of calcium-containing magnesium alloys in modified-simulated body fluid[J].Biomaterials,2008(15):2306-2314.
[13] Seiler H G;Sigel H;Sigel A.Handbook on toxicity of inor-ganic compounds[M].New York:Marcel Dekker,Inc,1988:5.
[14] Gu,X.N.;Xie,X.H.;Li,N.;Zheng,Y.F.;Qin,L. .In vitro and in vivo studies on a Mg-Sr binary alloy system developed as a new kind of biodegradable metal[J].Acta biomaterialia,2012(6):2360-2374.
[15] Ragamouni,S.;Kumar,J.M.;Mushahary,D.;Nemani,H.;Pande,G. .Histological analysis of cells and matrix mineralization of new bone tissue induced in rabbit femur bones by Mg-Zr based biodegradable implants[J].Acta Histochemica: Zeitschrift fur Histologische Topochemie,2013(7):748-756.
[16] Brar H S;Wong J;Manuel M V et al.Investigation of the mechanical and degradation properties of Mg-Sr and Mg-Zn-Sr alloys for use as potential biodegradable implant materials[J].Mech Behav Biomed Mater,2012,7:87.
[17] Bornapour,M.;Muja,N.;Shum-Tim,D.;Cerruti,M.;Pekguleryuz,M. .Biocompatibility and biodegradability of Mg-Sr alloys: The formation of Sr-substituted hydroxyapatite[J].Acta biomaterialia,2013(2):5319-5330.
[18] Brand?o-Neto J;Stefan V;Mendon?a B B et al.The essen-tial role of zinc in growth[J].NUTRITION RESEARCH,1995,15(3):335.
[19] Zhang S;Zhang X;Zhao .Research on an Mg-Zn alloy as a degradable biomaterial.[J].Acta biomaterialia,2010(2):626-640.
[20] HE YaoHua,TAO HaiRong,ZHANG Yan,JIANG Yao,ZHANG ShaoXiang,ZHAO ChangLi,LI JiaNan,ZHANG BeiLei,SONG Yang,ZHANG XiaoNong.Biocompatibility of bio-Mg-Zn alloy within bone with heart, liver, kidney and spleen[J].科学通报(英文版),2009(03):484-491.
[21] Yunfei Ding;Cuie Wen;Peter Hodgson .Effects of alloying elements on the corrosion behavior and biocompatibility of biodegradable magnesium alloys: a review[J].Journal of Materials Chemistry, B. materials for biology and medicine,2014(14):1912-1933.
[22] Z. G. Huan;M. A. Leeflang;J. Zhou;L. E. Fratila-Apachitei;J. Duszczyk .In vitro degradation behavior and cytocompatibility of Mg-Zn-Zr alloys[J].Journal of Materials Science. Materials in Medicine,2010(9):2623-2635.
[23] Song Y W;Han E H;Shan D Y et al.The effect of Zn concentration on the corrosion behavior of Mg-xZn alloys[J].Corrosion Science,2012,65:322.
[24] Gu X N;Zheng Y F;Zhong S P et al.Corrosion of and Biomaterials, cellular responses to Mg-Zn-Ca bulk metallic glasses[J].,2010,31(6):1093.
[25] Erikson K M;Syversen T;Aschner J L et al.Interactions col, ficiency in neurodegeneration[{?}J].,2005,19(3):415.
[26] Ding D;Roth J;Salvi R .Manganese is toxic to spiral ganglion neurons and hair cells in vitro.[J].Neurotoxicology,2011(2):233-241.
[27] Bock NA;Paiva FF;Nascimento GC;Newman JD;Silva AC .Cerebrospinal fluid to brain transport of manganese in a non-human primate revealed by MRI.[J].Brain research,2008(0):160-170.
[28] 范晓明,万朋,文红艳.Mn含量对含铁AZ91镁合金铸态组织与性能的影响[J].中国铸造装备与技术,2008(06):16-18.
[29] 周世杰,黄楠,龚旭,景凤娟,游天雪.Mg-Zn-Mn、Mg-Zn-Sr三元生物镁合金的制备与研究[J].轻金属,2013(11):49-52.
[30] Rosalbino F;Negri S D;Saccone A et al.Bio-corrosion biomedical applications[J].Materials Science:Materials in Medicine,2010,21(4):1091.
[31] 杨宝林 .生物医用Mg-Sn-Zn-Mn合金的显微组织及性能研究[D].哈尔滨工程大学,2012.
[32] Pennington J A T .Silicon in foods and diets[J].Food Ad-dit Contam,1991,8(1):97.
[33] Guangling Song .Control of biodegradation of biocompatable magnesium alloys[J].Corrosion Science: The Journal on Environmental Degradation of Materials and its Control,2007(4):1696-1701.
[34] Sripanyakorn S;Jugdaohsingh R;Dissayabutr W et al.The comparative absorption of silicon from different foods[Z].
[35] Zheng Y F;Gu X N;Witte F.Biodegradable metals[J].J and food supplements
[36] Zheng Y F;Gu X N;Witte F .Biodegradable metals[J].BRITISH JOURNAL OF NUTRITION,2009,102(6):825.
[37] Zheng Y F;Gu X N;Witte F .Biodegradable metals Mater Sci Technol[J].,2013,29(6):489.
[38] 胡勇,饶丽.Sn对AM60镁合金显微组织和力学性能的影响[J].热加工工艺,2012(02):28-29.
[39] Ben-Hamu G;Eliezer D;Shin K S .The role of Mg2 Si on termetallics, the corrosion behavior of wrought Mg-Zn-Mn alloy[{?}J].,2008,16(7):860.
[40] Saldana L;Mendez-Vilas A;Jiang L;Multigner M;Gonzalez-Carrasco JL;Perez-Prado MT;Gonzalez-Martin ML;Munuera L;Vilaboa N .In vitro biocompatibility of an ultrafine grained zirconium.[J].Biomaterials,2007(30):4343-4354.
[41] Thomsen P;Larsson C;Ericson LE;Sennerby L;Lausmaa J;Kasemo B .Structure of the interface between rabbit cortical bone and implants of gold, zirconium and titanium[J].Journal of Materials Science. Materials in Medicine,1997(11):653-665.
[42] StJohn D H;Qian M;Easton M A.Grain refinement(7):1 669 of magnesium alloys[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,2005:36.
[43] Li Y C;Wen C E;Mushahary D.Mg-Zr-Sr alloys as(8):31 77 biodegradable implant materials[J].ACTA BIOMATERIALIA,2012(8)
[44] Zhou Y L;Luo D M;Hu W Y et al.Compressive proper-ties of hot-rolled Mg-Zr-Ca alloys for biomedical applications[J].Adv Mater Res,2011,197-198:56.
[45] Zhou, Y.-L.;Li, Y.;Luo, D.-M.;Wen, C.;Hodgson, P. .Microstructures, mechanical properties and in vitro corrosion behaviour of biodegradable Mg-Zr-Ca alloys[J].Journal of Materials Science,2013(4):1632-1639.
[46] Delongeas J L;Burnel D;Netter P et al.Toxicity and pharmacokinetics of zirconium oxychloride in mice and rats[J].Fundamental and Clinical Pharmacology,1983,14:437.
[47] Yamamoto A;Honma R;Sumita M et al.Cytotoxicity teoblastic cells[J].Biomed Mater Res,1998,39(2):331.
[48] Ghosh S;Sharma A;Talukder G .Cytotoxic effects of zirco-Res Lett, nium oxychloride on bone marrow cells of mice[{?}J].,1990,243(1):29.
[49] 曹剑锋,张鹏英,陈靠山.稀土钕元素的生物学效应及机制研究进展[J].植物生理学通讯,2010(04):325-328.
[50] 朱兆金 .骨科新型医用可降解植入材料 JDBM 镁合金的生物毒性、髓内针及植入物感染细菌生物膜的基础研究[D].苏州:苏州大学,2013.
[51] 刘玉,陈祖义,王元兴.钕在小鼠体内的分布与蓄积及对孕酮分泌的影响[J].中国稀土学报,2001(05):447-449.
[52] 陈祖义,朱旭东.稀土元素的骨蓄积性、毒性及其对人群健康的潜在危害[J].生态与农村环境学报,2008(01):88-91.
[53] 廖治东 .Nd 对 Mg-Zn-Mn-Ca 合金组织和性能的影响研究[D].重庆:重庆大学,2012.
[54] 许春香,王星,张金山,张照光.稀土元素Nd、Yb对Mg-Zn-Zr合金组织与性能的影响[J].稀有金属材料与工程,2014(08):1809-1814.
[55] Wu W;Wang X;Zeng X et al.Effect of neodymium on me-chanical behavior of Mg-Zn-Zr magnesium alloy[J].Materials Science Letters,2003,22:445.
[56] 李伟 .生物可降解稀土镁合金血管支架无缝管材的制备技术及性能研究[D].重庆大学,2011.
[57] H?nzi A C;Gerber I;Schinhammer M et al.On the in Biomater, sponse of new biodegradable Mg-Y-Zn Alloys[{?}J].,2010,6(5):1824.
[58] Witte F;Hort N;Vogt C et al.Degradable biomaterials based on magnesium corrosion[{?}J].CURRENT OPINION IN SOLID STATE & MATERIALS SCIENCE,2008,12(5-6):63.
[59] Giles JJ;Bannigan JG .Teratogenic and developmental effects of lithium.[J].Current pharmaceutical design,2006(12):1531-1541.
[60] Hal Aral;Angelica Vecchio-Sadus .Toxicity of lithium to humans and the environment-A literature review[J].Ecotoxicology and Environmental Safety,2008(3):349-356.
[61] 乐启织;崔建忠;李红斌 等.Mg-Li 合金研究最新进展及其应[J].材料导报,2003,17(12):1.
[62] Feyerabend F;Fischer J;Holtz J et al.Evaluation of Biomater, magnesium alloys on primary cells and cell lines[{?}J].,2010,6(5):1834.
[63] Peng Q;Wang J L;Wu Y M et al.The effect of La or Ce Zr alloys[J].Materials Characterization,2008,59(4):435.
[64] Zhang X;Kevorkov D;Pekguleryuz M .Stoichiometry study on the binary compounds in the Mg-Ce system-Part I[J].Journal of Alloys and Compounds,2009,475(1-2):361.
[65] 陈江英;李翔 .微合金化元素 Ce 对 AZ91 镁合金显微组织和力学性能的影响[J].铸造技术,2014,35(7):1441.
[66] Yamasaki M;Hayashi N;Izumi S et al.Corrosion beha-NaCl solution[J].Corrosion Science,2007,49(1):255.
[67] Zhang, JH;Zhang, DP;Tian, Z;Wang, J;Liu, K;Lu, HY;Tang, DX;Meng, J .Micro structures, tensile properties and corrosion behavior of die-cast Mg-4Al-based alloys containing La and/or Ce[J].Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing,2008(1/2):113-119.
[68] 李琮,李明照,王跃琪,许并社.Nd对挤压态AZ31镁合金耐腐蚀性能的影响[J].稀有金属材料与工程,2011(01):156-160.
[69] J. Zhang;C. Fang;F. Yuan .Grain refinement of as cast Mg-Mn alloy by simultaneous addition of trace Er and Al[J].International Journal Cast Metals Research,2012(6):335-340.
[70] Zhang J;Ma Q;Pan F S .Effects of trace Er addition on the[J].Materials and Design,2010,31:4043.
[71] Peng Q;Dong H;Wu Y et al.Age hardening and mecha- nical properties of Mg-Gd-Er alloy[{?}J].Journal of Alloys and Compounds,2008,456(1-2):395.
[72] Rosalbino F;Angelini E;Negri S D et al.Electrochemical(RE = Ce,Er)[J].INTERMETALLICS,2006,14(12):1487.
[73] Rosalbino F;Angelini E;Negri S D et al.Effect of erbium termetallics, addition on the corrosion behaviour of Mg-Al alloys[{?}J].,2005,13(1):55.
[74] 章晓波,毛琳,袁广银,王章忠.心血管支架用Mg-Nd-Zn-Zr生物可降解镁合金的性能研究[J].稀有金属材料与工程,2013(06):1300-1305.
[75] Liu X L;Xi T F;Zheng Y D et al.Compared study of vas-cular cell response to Mg-Zn-Y-Nd and WE43 as biodegrada-ble stents[J].Adv Eng Res,2014,915-916:962.
[76] Zhu S J;Liu Q;Qian Y F et al.Effect of different proces-sings on mechanical property and corrosion behavior in simu-lated body fluid of Mg-Zn-Y-Nd alloy for cardiovascular stent application[J].Frontiers Mater Sci,2014,8(3):256.
[77] Patrick K. Bowen;Jaroslaw Drelich;Jeremy Goldman .Zinc Exhibits Ideal Physiological Corrosion Behavior for Bioabsorbable Stents[J].Advanced Materials,2013(18):2577-2582.
[78] Yao C Z;Wang Z C;Tay S L et al.Effects of Mg on mi-crostructure and corrosion properties of Zn-Mg alloy[J].Journal of Alloys and Compounds,2014,602(25):101.
[79] 屈功奇 .一种医用生物可降解锌合金毛细管材的制备方法[P].中国,CN 103789711A,2014-05-14.
[80] Nakamura Y;Tsumura Y;Tonogai Y et al.Differences in administered intravenously to rats behavior among the chlorides of seven rare earth elements[J].Toxicological Sciences,1997,37(2):106.
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