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An ORMOSIL-containing orthodontic acrylic resin with concomitant improvements in antimicrobial and fracture toughness properties. | LitMetric

AI Article Synopsis

  • The rising demand for orthodontic treatments is increasing the need for acrylic resins in removable appliances and retainers, which can lead to higher risks of oral infections due to bacterial and fungal biofilms.
  • A new antibacterial and antifungal material, quaternary ammonium methacryloxy silicate (QAMS), was developed by modifying silicate with methacryloloxy functionalities and is copolymerized with polymethyl methacrylate in resin.
  • The QAMS-enhanced acrylic resins showed effective antimicrobial properties against specific bacteria and fungi while also offering improvements in toughness and resistance to water, making them a significant advancement for reducing infections during orthodontic appliance use.

Article Abstract

Global increase in patients seeking orthodontic treatment creates a demand for the use of acrylic resins in removable appliances and retainers. Orthodontic removable appliance wearers have a higher risk of oral infections that are caused by the formation of bacterial and fungal biofilms on the appliance surface. Here, we present the synthetic route for an antibacterial and antifungal organically-modified silicate (ORMOSIL) that has multiple methacryloloxy functionalities attached to a siloxane backbone (quaternary ammonium methacryloxy silicate, or QAMS). By dissolving the water-insoluble, rubbery ORMOSIL in methyl methacrylate, QAMS may be copolymerized with polymethyl methacrylate, and covalently incorporated in the pressure-processed acrylic resin. The latter demonstrated a predominantly contact-killing effect on Streptococcus mutans ATCC 36558 and Actinomyces naselundii ATCC 12104 biofilms, while inhibiting adhesion of Candida albicans ATCC 90028 on the acrylic surface. Apart from its favorable antimicrobial activities, QAMS-containing acrylic resins exhibited decreased water wettability and improved toughness, without adversely affecting the flexural strength and modulus, water sorption and solubility, when compared with QAMS-free acrylic resin. The covalently bound, antimicrobial orthodontic acrylic resin with improved toughness represents advancement over other experimental antimicrobial acrylic resin formulations, in its potential to simultaneously prevent oral infections during appliance wear, and improve the fracture resistance of those appliances.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3411672PMC
http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0042355PLOS

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