New polymeric materials for use in glass-ionomer cements.

Abstract:

:The polymeric materials currently used in GIC are based on poly(acrylic acid), poly(acrylic acid-co-itaconic acid), or poly(acrylic acid-co-maleic acid). For the visible light cured (VLC) type GIC, the polymeric material is chemically modified to have pendant free-radical polymerizable double bonds, with the aqueous formulation solution also containing a monomer having methacrylate groups. Exploring ways to improve both conventional and VLC GIC, routes to new acrylic acid copolymers have been explored, where acid groups are made more available for salt-bridge formation. In particular, amino acid modified acrylic acid copolymers have been prepared and shown to provide improved GIC. Also, it was discovered that the monomer N-vinylpyrrolidone (NVP) could be used to modify acrylic acid copolymers to provide a path to improved GIC. A new route to develop VLC GIC, based on the reaction of the acid copolymer, in water, with a cyclic imino ether (oxazoline) functionalized methacrylate monomer was developed. Looking for ways to change the microstructure of the acrylic acid copolymers, as a possible route to improve GIC, acrylic acid copolymers have been prepared under super critical conditions. A review of the aforesaid areas of research is provided in this manuscript.

journal_name

J Dent

journal_title

Journal of dentistry

authors

Culbertson BM

doi

10.1016/j.jdent.2005.08.008

keywords:

subject

Has Abstract

pub_date

2006-09-01 00:00:00

pages

556-65

issue

8

eissn

0300-5712

issn

1879-176X

pii

S0300-5712(06)00027-3

journal_volume

34

pub_type

杂志文章,评审
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  • Bond strength to dentine of two light-activated glass polyalkenoate (ionomer) cements.

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  • The effect of unstimulated and stimulated whole saliva on extrinsic staining in vitro--a developmental method.

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  • Glass ionomer microleakage from preparations by an Er/YAG laser or a high-speed handpiece.

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  • Probiotics for managing caries and periodontitis: Systematic review and meta-analysis.

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  • Comparison of three types of fiber-reinforced composite molar crowns on their fracture resistance and marginal adaptation.

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