Application of Calcium Phosphate Materials in Dentistry

被引:154
作者
Al-Sanabani, Jabr S. [1 ]
Madfa, Ahmed A. [2 ]
A-Sanabani, Fadhel A. [2 ]
机构
[1] Univ Thamar, Fac Dent, Dept Oral Med & Oral Diag, Dhamar 87407, Yemen
[2] Univ Thamar, Fac Dent, Dept Conservat Dent, Dhamar 87407, Yemen
关键词
D O I
10.1155/2013/876132
中图分类号
TB3 [工程材料学]; R318.08 [生物材料学];
学科分类号
0805 ; 080501 ; 080502 ;
摘要
Calcium phosphate materials are similar to bone in composition and in having bioactive and osteoconductive properties. Calcium phosphate materials in different forms, as cements, composites, and coatings, are used in many medical and dental applications. This paper reviews the applications of these materials in dentistry. It presents a brief history, dental applications, and methods for improving their mechanical properties. Notable research is highlighted regarding (1) application of calcium phosphate into various fields in dentistry; (2) improving mechanical properties of calcium phosphate; (3) biomimetic process and functionally graded materials. This paper deals with most common types of the calcium phosphate materials such as hydroxyapatite and tricalcium phosphate which are currently used in dental and medical fields.
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页数:12
相关论文
共 171 条
[1]   Tensile properties, tension-tension fatigue and biological response of polyetheretherketone-hydroxyapatite composites for load-bearing orthopedic implants [J].
Abu Bakar, MS ;
Cheng, MHW ;
Tang, SM ;
Yu, SC ;
Liao, K ;
Tan, CT ;
Khor, KA ;
Cheang, P .
BIOMATERIALS, 2003, 24 (13) :2245-2250
[2]  
Abu Kasim N. H., 2013, Patent no, WO, Patent No. [2013043039(A2), 2013043039]
[3]   3D-FE analysis of functionally graded structured dental posts [J].
Abu Kasim, Noor H. ;
Madfa, Ahmed A. ;
Hamdi, Mohd ;
Rahbari, Ghahnavyeh R. .
DENTAL MATERIALS JOURNAL, 2011, 30 (06) :869-880
[4]  
Albee FH, 1920, ANN SURG, V71, P32
[5]   Osteoinduction, osteoconduction and osseointegration [J].
Albrektsson, T ;
Johansson, C .
EUROPEAN SPINE JOURNAL, 2001, 10 (Suppl 2) :S96-S101
[6]   Fabrication of low temperature macroporous hydroxyapatite scaffolds by foaming and hydrolysis of an α-TCP paste [J].
Almirall, A ;
Larrecq, G ;
Delgado, JA ;
Martínez, S ;
Planell, JA ;
Ginebra, MP .
BIOMATERIALS, 2004, 25 (17) :3671-3680
[7]   Mechanical properties of visible light-cured resins reinforced with hydroxyapatite for dental restoration [J].
Arcís, RW ;
López-Macipe, A ;
Toledano, M ;
Osorio, E ;
Rodríguez-Clemente, R ;
Murtra, J ;
Fanovich, MA ;
Pascual, CD .
DENTAL MATERIALS, 2002, 18 (01) :49-57
[8]   A comparative study of biphasic calcium phosphate ceramics for human mesenchymal stem-cell-induced bone formation [J].
Arinzeh, TL ;
Tran, T ;
Mcalary, J ;
Daculsi, G .
BIOMATERIALS, 2005, 26 (17) :3631-3638
[9]   Predictive modeling of the mechanical properties of particulate hydroxyapatite reinforced polymer composites [J].
Balac, I ;
Uskokovic, PS ;
Aleksic, R ;
Uskokovic, D .
JOURNAL OF BIOMEDICAL MATERIALS RESEARCH, 2002, 63 (06) :793-799
[10]   Osteogenecity of octacalcium phosphate coatings applied on porous metal implants [J].
Barrère, F ;
van der Valk, CM ;
Dalmeijer, RAJ ;
Meijer, G ;
van Blitterswijk, CA ;
de Groot, K ;
Layrolle, P .
JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A, 2003, 66A (04) :779-788