Monetite and brushite coated magnesium: in vivo and in vitro models for degradation analysis

被引:36
作者
Shadanbaz, Shaylin [1 ]
Walker, Jemimah [1 ]
Woodfield, Tim B. F. [2 ]
Staiger, Mark P. [3 ]
Dias, George J. [1 ]
机构
[1] Univ Otago, Dept Anat, Dunedin, New Zealand
[2] Univ Otago, Dept Orthopaed Surg & Musculoskeletal Med, Christchurch, New Zealand
[3] Univ Canterbury, Dept Mech Engn, Christchurch 1, New Zealand
关键词
CALCIUM-PHOSPHATE COATINGS; CP-TI IMPLANTS; EXTRACELLULAR CALCIUM; BONE CEMENTS; CORROSION-RESISTANCE; HYDROXYAPATITE; ALLOYS; TRANSFORMATION; TITANIUM; DIFFERENTIATION;
D O I
10.1007/s10856-013-5059-2
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
The use of magnesium (Mg) as a biodegradable metallic replacement of permanent orthopaedic materials is a current topic of interest and investigation. The appropriate biocompatibility, elastic modulus and mechanical properties of Mg recommend its suitability for bone fracture fixation. However, the degradation rates of Mg can be rapid and unpredictable resulting in mass hydrogen production and potential loss of mechanical integrity. Thus the application of calcium phosphate coatings has been considered as a means of improving the degradation properties of Mg. Brushite and monetite are utilized and their degradation properties (alongside uncoated Mg controls) are assessed in an in vivo subcutaneous environment and the findings compared to their in vitro degradation behaviour in immersion tests. The current findings suggest monetite coatings have significant degradation protective effects compared to brushite coatings in vivo. Furthermore, it is postulated that an in vitro immersion test may be used as a tentative predictor of in vivo subcutaneous degradation behavior of calcium phosphate coated and uncoated Mg.
引用
收藏
页码:173 / 183
页数:11
相关论文
共 92 条
[1]   Extracellular calcium modulates in vitro bone marrow-derived Flk-1+ CD34+ progenitor cell chemotaxis and differentiation through a calcium-sensing receptor [J].
Aguirre, A. ;
Gonzalez, A. ;
Planell, J. A. ;
Engel, E. .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2010, 393 (01) :156-161
[2]   Biological response to titanium implants coated with nanocrystals calcium phosphate or type 1 collagen in a dog model [J].
Alghamdi, Hamdan S. ;
van Oirschot, Bart A. J. A. ;
Bosco, Ruggero ;
den Beucken, Jeroen J. J. P. ;
Aldosari, Abdullah Al Farraj ;
Anil, Sukumaran ;
Jansen, John A. .
CLINICAL ORAL IMPLANTS RESEARCH, 2013, 24 (05) :475-483
[3]   Refining animal models in fracture research:: seeking consensus in optimising both animal welfare and scientific validity for appropriate biomedical use [J].
Auer, Jorg A. ;
Goodship, Allen ;
Arnoczky, Steven ;
Pearce, Simon ;
Price, Jill ;
Claes, Lutz ;
Von Rechenberg, Brigitte ;
Hofmann-Amtenbrinck, Margarethe ;
Schneider, Erich ;
Mueller-Terpitz, R. ;
Thiele, F. ;
Rippe, Klaus-Peter ;
Grainger, David W. .
BMC MUSCULOSKELETAL DISORDERS, 2007, 8 (1)
[4]   Magnesium as a biodegradable and bioabsorbable material for medical implants [J].
Brar, Harpreet S. ;
Platt, Manu O. ;
Sarntinoranont, Malisa ;
Martin, Peter I. ;
Manuel, Michele V. .
JOM, 2009, 61 (09) :31-34
[5]   Extracellular calcium as an integrator of tissue function [J].
Breitwieser, Gerda E. .
INTERNATIONAL JOURNAL OF BIOCHEMISTRY & CELL BIOLOGY, 2008, 40 (08) :1467-1480
[6]   In vitro and in vivo evaluations on osteogenesis and biodegradability of a ß-tricalcium phosphate coated magnesium alloy [J].
Chai, Hongwei ;
Guo, Lei ;
Wang, Xiantao ;
Gao, Xiaoyu ;
Liu, Kui ;
Fu, Yuping ;
Guan, Junlin ;
Tan, Lili ;
Yang, Ke .
JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A, 2012, 100A (02) :293-304
[7]   Perfusion electrodeposition of calcium phosphate on additive manufactured titanium scaffolds for bone engineering [J].
Chai, Yoke Chin ;
Truscello, Silvia ;
Van Bael, Simon ;
Luyten, Frank P. ;
Vleugels, Jozef ;
Schrooten, Jan .
ACTA BIOMATERIALIA, 2011, 7 (05) :2310-2319
[8]   In vitro corrosion survey of Mg-xCa and Mg-3Zn-yCa alloys with and without calcium phosphate conversion coatings [J].
Chen, X. -B. ;
Kirkland, N. T. ;
Krebs, H. ;
Thiriat, M. -A. ;
Virtanen, S. ;
Nisbet, D. ;
Birbilis, N. .
CORROSION ENGINEERING SCIENCE AND TECHNOLOGY, 2012, 47 (05) :365-373
[9]   Calcium phosphate coating of nickel-titanium shape-memory alloys.: Coating procedure and adherence of leukocytes and platelets [J].
Choi, J ;
Bogdanski, D ;
Köller, M ;
Esenwein, SA ;
Müller, D ;
Muhr, G ;
Epple, M .
BIOMATERIALS, 2003, 24 (21) :3689-3696
[10]   In Vitro Evaluation of Degradation of a Calcium Phosphate Coating on a Mg-Zn-Ca Alloy in a Physiological Environment [J].
Choudhary, L. ;
Raman, R. K. Singh ;
Nie, J. F. .
CORROSION, 2012, 68 (06) :499-506