Please wait a minute...
Chin J Mater Res  2011, Vol. 25 Issue (2): 193-198    DOI:
论文 Current Issue | Archive | Adv Search |
Biocompatibility and Antibacterial Property of a Fluoride Coating on AZ31B Magnesium Alloy
LI Qi1,  LIU Xinjie1,  WANG Zeqing1,  YAN Tingting2,  TAN Lili2,  ZHANG Bingchun2,  YANG Ke2
1.School of Chemistry, Liaoning University, Shenyang 110036
2.Institute of Metal Research, Chinese Academy of Science, Shengyang 110016
Cite this article: 

LI Qi LIU Xinjie WANG Zeqing YAN Tingting TAN Lili ZHANG Bingchun YANG Ke. Biocompatibility and Antibacterial Property of a Fluoride Coating on AZ31B Magnesium Alloy. Chin J Mater Res, 2011, 25(2): 193-198.

Download:  PDF(599KB) 
Export:  BibTeX | EndNote (RIS)      
Abstract  A fluoride coating was prepared on AZ31B magnesium alloy by chemical conversion treatment in order to control the biodegradation rate and further increase the biocompatibility of AZ31B alloy. The surface morphology, in vitro biocompatibility and antibacterial property of the coated alloy were investigated in the study. The result showed that the fluoride coating was compact and presented obvious decrease of the hemolytic rate and non- cytotoxicity, meeting the requirement on biomaterials. The result also showed a better behavior against blood coagulation of the coated AZ31B alloy than that of 316L stainless steel, as well as an  excellent antibacterial ability.
Key words:  surface and interface in the materials      magnesium alloy      fluoride coating      biocompatibility      antibacterial property     
Received:  20 December 2010     
ZTFLH: 

R318

 

URL: 

https://www.cjmr.org/EN/     OR     https://www.cjmr.org/EN/Y2011/V25/I2/193

1 XU Tao, HUO Chunbao, Magnesium and human health, Guangdong Trace Elements Science, 10(6), 11(2003)

(许涛, 贺春宝, 镁与人体健康, 广东微量元素科学, 10(6), 11(2003))

2 Hideyuki Kuwahara, Yousel A1-Abdulat, Naoko Mazaki, Precipitation of magnesium apatite on pure magnesium surface during immersing in Hanks solution, Materials Transactions, 42, 1317(2001)

3 ZHANG Jin, ZHANG Zonghe, Magnesium alloys and their applications, (Beijing, Chemical Industry Press, 2004) p.211

(张津, 章宗和, 镁合金及应用, (北京, 化学工业出版社, 2004) p.211)

4 SONG Guangling, SONG Shizhe, The corrosion behavior of magnesium in the simulated body fluid, Acta Physico Chimica Sinica, 22(10), 1222(2006)

(宋光铃, 宋诗哲, 镁在人体模拟液中的腐蚀行为, 物理化学学报, 22(10), 1222(2006))

5 G.L.SONG, S.Z.SONG, A Possible Biodegradable magnesium implant material, Advanced Engineering Materials, 9(4), 298(2007)

6 HUANG Jingjing, Study on magnesium-based degradable implant material, PhD Thesis, Shenyang, Institute of Metal Research, Chinese Academy of Sciences, (2008)

(黄晶晶, 可降解镁基植入材料的研究, 博士学位论文, 中国科学院金属研究所, (2008))

7 J.Z.Li, J.G.Huang, Y.W.Tian, C.S.Liu, Corrosion action and passivation mechanism of magnesium alloy in fluoride solution, Transanctions of Nonferrous Metals Society of China, 19, 50(2009)

8 K.Y.Chiu, M.H.Wong, F.T.Cheng, H.C.Man, Characetrization and corrosion studies of fluoride conversion coating on degradable Mg implants, Surface and Coatings Technology, 202(3), 590(2007)

9 S.M.Hamza, G.H.Nancollas, Kinetics of dissolution of magnesium fluoride in aqueous solution, Langmuir, 1, 573(1985)

10 JIANG Wenshu, YIN Guangfu, ZHENG Changqiong, Research on stability of hemocompatibility of DLC Film/Ti6Al4V gradient material using image analysis method, Journal of Biomedical Engineering, 19(4), 642(2002)

(蒋书文, 尹光福, 郑昌琼, 图像分析方法研究DLC膜/Ti6Al4V梯度材料的血液相容性稳定性, 生物医学工程学杂志, 19(4), 642(2002))

11 YU Songting, WENG Mingqing, The basis of biomedical engineering and clinical (Tianjin, Tianjin Science and Technology Press, 1989) p.135

(虞颂庭, 翁铭庆,  生物医学工程的基础与临床  (天津, 天津科学技术出版社, 1989) p.135)

12 Hays, Anterograde coil closure of patent ductus arteriosus using a modified bioptome delivery technique, Catheterization Cardiovasc Diagn, 39(3), 287(1996)

13 Y.Cheng, M.Li, C.Ting, T.Yuan, Preparation of titanium substrate biomaterials by using microarc oxidation and measurement of blood compatibility, Journal of Clinical Rehabilitative Tissue Engineering Research, 11(31), 6315(2007)

14 Lourdes S´anchez, Ver´onica Mart´?nez, M.Rosa Infante, Montserrat Mitjans and M.Pilar Vinardell, Hemolysis and antihemolysis induced by amino acid-based surfactants, Toxicology Letters, 169, 177(2007)

15 Wang ZM, Li L, Zheng BS, Normakhamatov N, Guo SY, Preparation and anticoagulation activity of sodium cellulose sulfate, International Journal of Biological Macromolecules, 41(4), 376(2007)

16 MENG Hao, Biomaterials research interactions with blood, Journal of Biomedical Engineering, 22(6), 1271(2005)

(孟浩, 生物材料与血液相互作用的研究进展, 生物医学工程学杂志, 22(6), 1271(2005))

17 Naorungroj S, Wei HH, Arnold RR, Swift EJ Jr, Walter R, Antibacterial surface properties of fluoridecontaining resin-based sealants, Journal of Dentistry, 38(5), 387(2010)

18 Yoshinari M, Oda Y, Kato T, Okuda K, Influence of surface modifications to titanium on antibacterial activity in vitro, Biomaterials, 22, 2043(2001)

19 Jonathan Lellouche, Edith Kahana, Sivan Elias, Aharon Gedanken and Ehud Banin, Antibiofilm activity of nanosized magnesium fluoride, Biomaterials, 30(30), 5969(2009)
[1] WANG Qian, PU Lei, JIA Caixia, LI Zhixin, LI Jun. Inhomogeneity of Interface Modification of Carbon Fiber/Epoxy Composites[J]. 材料研究学报, 2023, 37(9): 668-674.
[2] LU Yimin, MA Lifang, WANG Hai, XI Lin, XU Manman, YANG Chunlai. Carbon-base Protective Coating Grown by Pulsed Laser Deposition on Copper Substrate[J]. 材料研究学报, 2023, 37(9): 706-712.
[3] FENG Ye, CHEN Zhiyong, JIANG Sumeng, GONG Jun, SHAN Yiyin, LIU Jianrong, WANG Qingjiang. Effect of a NiCrAlSiY Coating on Cyclic Oxidation and Room Temperature Tensile Properties of Ti65 Alloy Plate[J]. 材料研究学报, 2023, 37(7): 523-534.
[4] LI Pengyu, LIU Zitong, KANG Shumei, CHEN Shanshan. Effect of Plasma Treatment on Performance of Polybutylene Adipate Coating on Biomedical AZ31 Mg-alloy[J]. 材料研究学报, 2023, 37(4): 271-280.
[5] XIE Feng, GUO Jianfeng, WANG Haitao, CHANG Na. Construction of ZnO/CdS/Ag Composite Photocatalyst and Its Catalytic and Antibacterial Performance[J]. 材料研究学报, 2023, 37(1): 10-20.
[6] CHEN Kaiwang, ZHANG Penglin, LI Shuwang, NIU Xianming, HU Chunlian. High-temperature Tribological Properties for Plasma Spraying Coating of Ni-P Plated Mullite Powders[J]. 材料研究学报, 2023, 37(1): 39-46.
[7] SHAN Weiyao, WANG Yongli, LI Jing, XIONG Liangyin, DU Xiaoming, LIU Shi. High Temperature Oxidation Resistance of Cr Based Coating on Zirconium Alloy[J]. 材料研究学报, 2022, 36(9): 699-705.
[8] ZHANG Hongliang, ZHAO Guoqing, OU Junfei, Amirfazli Alidad. Superhydrophobic Cotton Fabric Based on Polydopamine via Simple One-Pot Immersion for Oil Water Separation[J]. 材料研究学报, 2022, 36(2): 114-122.
[9] CUI Li, SUN Lili, GUO Peng, MA Xin, WANG Shuyuan, WANG Aiying. Effect of Deposition Time on Structure and Performance of Diamond-like Carbon Films on PEEK[J]. 材料研究学报, 2022, 36(11): 801-810.
[10] LI Jianzhong, ZHU Boxuan, WANG Zhenyu, ZHAO Jing, FAN Lianhui, YANG Ke. Preparation and Properties of Copper-carrying Polydopamine Coating on Ureteral Stent[J]. 材料研究学报, 2022, 36(10): 721-729.
[11] LI Rui, WANG Hao, ZHANG Tiangang, NIU Wei. Microstructure and Properties of Laser Clad Ti2Ni+TiC+Al2O3+CrxSy Composite Coating on Ti811 Alloy[J]. 材料研究学报, 2022, 36(1): 62-72.
[12] LI Xiuxian, QIU Wanqi, JIAO Dongling, ZHONG Xichun, LIU Zhongwu. Promotion Effect of α-Al2O3 Seeds on Low-temperature Deposition of α-Al2O3 Films by Reactive Sputtering[J]. 材料研究学报, 2022, 36(1): 8-12.
[13] FAN Jinhui, LI Pengfei, LIANG Xiaojun, LIANG Jiangping, XU Changzheng, JIANG Li, YE Xiangxi, LI Zhijun. Interface Evolution During Rolling of Ni-clad Stainless Steel Plate[J]. 材料研究学报, 2021, 35(7): 493-500.
[14] GU Jiaqing, TANG Weineng, XU Shiwei. Microstructure Evolution During Tensile Deformation of an Extruded Mg-0.4Zn Alloy Plate[J]. 材料研究学报, 2021, 35(7): 553-560.
[15] ZHANG Huichen, QI Xuelian. Super Low Friction Characteristics Initiated by Running-in Process in Water-based Lubricant for Ti-Alloy[J]. 材料研究学报, 2021, 35(5): 349-356.
No Suggested Reading articles found!