Literature DB >> 26342639

Effect of crosslinking density of polymers and chemical structure of amine-containing monomers on the neutralization capacity of dentin adhesives.

Xueping Ge1, Qiang Ye1, Linyong Song1, Paulette Spencer2, Jennifer S Laurence3.   

Abstract

OBJECTIVES: Neutralization of the acidic micro-environment at the tooth/material interface is expected to provide enhanced durability for dental composite restorations. The objective of this study is to explore the effect of amine-containing monomer formulations and the crosslinking density of the resultant polymers on the neutralization capacity.
MATERIALS AND METHODS: The co-monomer system was varied systematically to obtain different proportions of Bisphenol A glycerolate dimethacrylate (BisGMA) and 2-hydroxyethyl methacrylate (HEMA), while maintaining a constant amount of amine-containing methacrylate monomer. A series of amine-containing monomers covering a range of pKa values were examined. Crosslinking density of formed copolymers was controlled by adjusting the weight content of the dimethacrylate monomer BisGMA. Lactic acid (LA) was used as a probe to analyze the effectiveness of the basic polymers to neutralize acid. The neutralization capacity of each amine-containing crosslinked copolymer was characterized by measuring pH as a function of time when the specimens were soaked in 1-mM LA solution, and the results were compared to the control formulations composed solely of BisGMA and HEMA. Polymer surfaces were examined using the methyl orange (MO) assay to quantify the amount of accessible amine groups.
RESULTS: For each amine-containing crosslinked co-polymer, the neutralization capacity is enhanced by decreasing crosslinking density (e.g., by reducing BisGMA concentration in the formulation). In addition, more amine groups were accessible when crosslinking density was decreased. For different amine-containing polymers with the same BisGMA concentration, the neutralization capacity is higher when the amino monomers with higher pKa values were used in the formulations. SIGNIFICANCE: This is the first time that the neutralization capacity based on crosslinked dental polymers has been studied. The information is important for future development of durable dentin adhesives.
Copyright © 2015. Published by Elsevier Ltd.

Entities:  

Keywords:  Amine monomer; Crosslinking density; Dentin adhesive; Neutralization; pKa

Mesh:

Substances:

Year:  2015        PMID: 26342639      PMCID: PMC5515479          DOI: 10.1016/j.dental.2015.08.153

Source DB:  PubMed          Journal:  Dent Mater        ISSN: 0109-5641            Impact factor:   5.304


  36 in total

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5.  The effects of light intensity, temperature, and comonomer composition on the polymerization behavior of dimethacrylate dental resins.

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6.  The influence of water on visible-light initiated free-radical/cationic ring-opening hybrid polymerization of methacrylate/epoxy: Polymerization kinetics, crosslinking structure and dynamic mechanical properties.

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8.  The influence of resin chemistry on a dental composite's biodegradation.

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9.  Synthesis and evaluation of novel dental monomer with branched carboxyl acid group.

Authors:  Linyong Song; Qiang Ye; Xueping Ge; Anil Misra; Jennifer S Laurence; Cynthia L Berrie; Paulette Spencer
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10.  Salivary esterase activity and its association with the biodegradation of dental composites.

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Authors:  Paulette Spencer; Qiang Ye; Linyong Song; Ranganathan Parthasarathy; Kyle Boone; Anil Misra; Candan Tamerler
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2.  Probing the neutralization behavior of zwitterionic monomer-containing dental adhesive.

Authors:  Linyong Song; Qiang Ye; Xueping Ge; Anil Misra; Candan Tamerler; Paulette Spencer
Journal:  Dent Mater       Date:  2017-03-31       Impact factor: 5.304

3.  Multifunctional monomer acts as co-initiator and crosslinker to provide autonomous strengthening with enhanced hydrolytic stability in dental adhesives.

Authors:  Linyong Song; Rizacan Sarikaya; Qiang Ye; Anil Misra; Candan Tamerler; Paulette Spencer
Journal:  Dent Mater       Date:  2019-12-03       Impact factor: 5.304

4.  Modulating pH through lysine integrated dental adhesives.

Authors:  Linyong Song; Xueping Ge; Qiang Ye; Kyle Boone; Sheng-Xue Xie; Anil Misra; Candan Tamerler; Paulette Spencer
Journal:  Dent Mater       Date:  2018-09-07       Impact factor: 5.304

5.  Probing the mineralized tissue-adhesive interface for tensile nature and bond strength.

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Review 6.  Bio-Interactive Zwitterionic Dental Biomaterials for Improving Biofilm Resistance: Characteristics and Applications.

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