Literature DB >> 29175492

Shrinkage / stress reduction and mechanical properties improvement in restorative composites formulated with thio-urethane oligomers.

Atais Bacchi1, Jonathan A Yih2, Jacqueline Platta2, Joseph Knight2, Carmem S Pfeifer3.   

Abstract

Thio-urethane oligomers (TUs) have been shown to favorably modify methacrylate networks to reduce stress and significantly increase fracture toughness. Since those are very desirable features in dental applications, the objective of this work was to characterize restorative composites formulated with the addition of TUs. TUs were synthesized by combining thiols - pentaerythritol tetra-3-mercaptopropionate (PETMP) or trimethylol-tris-3-mercaptopropionate (TMP) - with isocyanates - 1,6-Hexanediol-diissocyante (HDDI) (aliphatic) or 1,3-bis(1-isocyanato-1-methylethyl)benzene (BDI) (aromatic) or dicyclohexylmethane 4,4'-Diisocyanate (HMDI) (cyclic), at 1:2 isocyanate:thiol, leaving pendant thiols. 20wt% TU were added to BisGMA-TEGDMA (70-30%). To this organic matrix, 70wt% silanated inorganic fillers were added. Near-IR was used to follow methacrylate conversion and rate of polymerization (Rpmax). Mechanical properties were evaluated in three-point bending (ISO 4049) for flexural strength/modulus (FS/FM) and toughness (T), and notched specimens (ASTM Standard E399-90) for fracture toughness (KIC). Polymerization stress (PS) was measured on the Bioman. Volumetric shrinkage (VS) was measured with the bonded disk technique. Glass transition temperature (Tg) and heterogeneity of network were obtained with dynamic mechanical analysis. The addition of TUs led to an increase in mechanical properties (except for Tg and FS). Fracture toughness ranged from 1.6-1.94MPam1/2 for TU-modified groups, an increase of 33-61% in relation to the control (1.21 ± 0.1MPam1/2). Toughness showed a two-fold increase in relation to the control: from 0.91MPa to values ranging from 1.70-1.95MPa. Flexural modulus was statistically higher for the TU-modified groups. The Tg, as expected, decreased for all TU groups due to the greater flexibility imparted to the network (which also explains the increase in toughness and fracture toughness). Narrower tan-delta peaks suggest more homogeneous networks for the TU-modified materials, though differences were marked only for TMP_AL. Degree of conversion was not affected by the addition of TUs. VS was similar for all groups, with one exception where VS dropped (PETMP-cyclic). Finally, PS showed a reduction of 23-57% for TU-modified groups (6.7 ± 1.3 to 11.9 ± 1.0MPa) in relation to the control (15.56 ± 1.4MPa). The addition of thio-urethane oligomers was able to reduce polymerization stress by up to 57% while increasing fracture toughness by up to 61%.
Copyright © 2017 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Composite resin; Dynamic mechanical analysis; Mechanical strength; Polymerization stress; Thio-urethane oligomers; Volumetric shrinkage

Mesh:

Substances:

Year:  2017        PMID: 29175492      PMCID: PMC5758407          DOI: 10.1016/j.jmbbm.2017.11.011

Source DB:  PubMed          Journal:  J Mech Behav Biomed Mater        ISSN: 1878-0180


  18 in total

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Journal:  J Dent Res       Date:  1997-08       Impact factor: 6.116

5.  Resin-based composite performance: are there some things we can't predict?

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6.  Investigations of step-growth thiol-ene polymerizations for novel dental restoratives.

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Review 8.  Thiol-ene click chemistry.

Authors:  Charles E Hoyle; Christopher N Bowman
Journal:  Angew Chem Int Ed Engl       Date:  2010-02-22       Impact factor: 15.336

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Authors:  A Bacchi; A Dobson; J L Ferracane; R Consani; C S Pfeifer
Journal:  J Dent Res       Date:  2014-09-23       Impact factor: 6.116

10.  Rheological and mechanical properties and interfacial stress development of composite cements modified with thio-urethane oligomers.

Authors:  Ataís Bacchi; Carmem S Pfeifer
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  13 in total

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Journal:  J Mech Behav Biomed Mater       Date:  2019-06-10

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Authors:  M C G Erhardt; M Goulart; R C Jacques; J A Rodrigues; C S Pfeifer
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4.  In vitro performance of 2-step, total etch adhesives modified by thiourethane additives.

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Journal:  Int J Adhes Adhes       Date:  2020-08-02       Impact factor: 3.189

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Authors:  André L Faria-E-Silva; Andressa Dos Santos; Angela Tang; Emerson M Girotto; Carmem S Pfeifer
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8.  Thiourethane filler functionalization for dental resin composites: Concentration-dependent effects on toughening, stress reduction and depth of cure.

Authors:  M Goulart; A P Fugolin; S H Lewis; J A Rodrigues; M C Erhardt; C S Pfeifer
Journal:  Mater Sci Eng C Mater Biol Appl       Date:  2020-09-18       Impact factor: 7.328

9.  Physicochemical and Microbiological Assessment of an Experimental Composite Doped with Triclosan-Loaded Halloysite Nanotubes.

Authors:  Diana A Cunha; Nara S Rodrigues; Lidiane C Souza; Diego Lomonaco; Flávia P Rodrigues; Felipe W Degrazia; Fabrício M Collares; Salvatore Sauro; Vicente P A Saboia
Journal:  Materials (Basel)       Date:  2018-06-25       Impact factor: 3.623

10.  Adhesive strength of fiberglass posts treated with thio-urethane-based experimental silanes.

Authors:  Vitoria Massoneto Piccolli; Carmem Silvia Pfeifer; Ana Paula Piovezan Fugolin; Marcos Cezar Pomini; Roberta Araujo de Paula Ramos; Rafael Leonardo Xediek Consani
Journal:  Eur Oral Res       Date:  2021-05-04
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