Enhancing the Mechanical Properties of Glass-Ionomer Dental Cements: A Review

被引:85
作者
Nicholson, John W. [1 ,2 ]
Sidhu, Sharanbir K. [3 ]
Czarnecka, Beata [4 ]
机构
[1] Queen Mary Univ London, Barts & London Inst Dent, Dent Mat Unit, Mile End Rd, London E1 4NS, England
[2] Bluefield Ctr Biomat, 67-68 Hatton Garden, London EC1N 8JY, England
[3] Queen Mary Univ London, Ctr Oral Bioengn, Barts & London Sch Med & Dent, Inst Dent, London E1 2AD, England
[4] Pozna Univ Med Sci, Dept Biomat & Expt Dent, Ul Bukowska 70, PL-60812 Poznan, Poland
关键词
glass-ionomer cements; resin-modified; fibre; reinforcement; nanoparticles; testing; strength; FLUORIDE-RELEASE; PHYSICAL-PROPERTIES; COMPRESSIVE STRENGTH; SILVER NANOPARTICLES; FRACTURE-TOUGHNESS; CARIOUS DENTIN; FIBERS; HYDROXYAPATITE; ADHESION; BEHAVIOR;
D O I
10.3390/ma13112510
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
This paper reviews the strategies that have been reported in the literature to attempt to reinforce glass-ionomer dental cements, both conventional and resin-modified. These cements are widely used in current clinical practice, but their use is limited to regions where loading is not high. Reinforcement might extend these applications, particularly to the posterior dentition. A variety of strategies have been identified, including the use of fibres, nanoparticles, and larger particle additives. One problem revealed by the literature survey is the limited extent to which researchers have used International Standard test methods. This makes comparison of results very difficult. However, it does seem possible to draw conclusions from this substantial body of work and these are (1) that powders with conventional particle sizes do not reinforce glass-ionomer cements, (2) certain fibres and certain nanoparticles give distinct improvements in strength, and (3) in the case of the nanoparticles these improvements are associated with differences in the morphology of the cement matrix, in particular, a reduction in the porosity. Despite these improvements, none of the developments has yet been translated into clinical use.
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页数:14
相关论文
共 107 条
[1]  
Abdulsamee N., 2017, Review. EC Dental Science, V15, P134
[2]  
Al Shaibani D, 2019, EC DENT SCI, V18, P1001
[3]   Influence of hydroxyapatite nanoparticles on the properties of glass ionomer cement [J].
Alatawi, Raedah A. S. ;
Elsayed, Nadia H. ;
Mohamed, Wael S. .
JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 2019, 8 (01) :344-349
[4]   Evaluation of Microleakage in Zirconomer (R) : A Zirconia Reinforced Glass Ionomer Cement [J].
Albeshti, Rawan ;
Shahid, Saroash .
ACTA STOMATOLOGICA CROATICA, 2018, 52 (02) :97-104
[5]   Characterising the micro-mechanical behaviour of the carious dentine of primary teeth using nano-indentation [J].
Angker, L ;
Swain, MV ;
Kilpatrick, N .
JOURNAL OF BIOMECHANICS, 2005, 38 (07) :1535-1542
[6]   Conventional glass-ionomer materials: A review of the developments in glass powder, polyacid liquid and the strategies of reinforcement [J].
Baig, Mirza Shahzad ;
Fleming, Garry J. P. .
JOURNAL OF DENTISTRY, 2015, 43 (08) :897-912
[7]   On the R-curve behavior of human tooth enamel [J].
Bajaj, Devendra ;
Arola, Dwayne D. .
BIOMATERIALS, 2009, 30 (23-24) :4037-4046
[8]   MODIFIED POLYALKENOATE (GLASS-IONOMER) CEMENT - A STUDY [J].
BANSAL, RK ;
TEWARI, US ;
SINGH, P ;
MURTHY, DVS .
JOURNAL OF ORAL REHABILITATION, 1995, 22 (07) :533-537
[9]   Enhancing Mechanical Properties of Glass Ionomer Cements with Basalt Fibers [J].
Bao, Xiaozhen ;
Garoushi, Sufyan K. ;
Liu, Fang ;
Lassila, Lippo L. J. ;
Vallittu, Pekka K. ;
He, Jingwei .
SILICON, 2020, 12 (08) :1975-1983
[10]   Resin-modified Glass-ionomer Setting Reaction Competition [J].
Berzins, D. W. ;
Abey, S. ;
Costache, M. C. ;
Wilkie, C. A. ;
Roberts, H. W. .
JOURNAL OF DENTAL RESEARCH, 2010, 89 (01) :82-86