Effects of Long-Term Water-Aging on Novel Anti-Biofilm and Protein-Repellent Dental Composite

Int J Mol Sci. 2017 Jan 18;18(1):186. doi: 10.3390/ijms18010186.

Abstract

The aims of this study were to: (1) synthesize an anti-biofilm and protein-repellent dental composite by combining 2-methacryloyloxyethyl phosphorylcholine (MPC) with quaternary ammonium dimethylaminohexadecyl methacrylate (DMAHDM); and (2) evaluate the effects of water-aging for 180 days on protein resistance, bacteria-killing ability, and mechanical properties of MPC-DMAHDM composite. MPC and DMAHDM were added into a resin composite. Specimens were stored in distilled water at 37 °C for 1, 30, 90, and 180 days. Mechanical properties were measured in three-point flexure. Protein attachment onto the composite was evaluated by a micro bicinchoninic acid approach. An oral plaque microcosm biofilm model was employed to evaluate oral biofilm viability vs. water-aging time. Mechanical properties of the MPC-DMAHDM composite after 180-day immersion matched those of the commercial control composite. The composite with 3% MPC + 1.5% DMAHDM had much stronger resistance to protein adhesion than control (p < 0.05). MPC + DMAHDM achieved much stronger biofilm-eradicating effects than MPC or DMAHDM alone (p < 0.05). Biofilm colony-forming units on the 3% MPC + 1.5% DMAHDM composite were three orders of magnitude lower than commercial control. The protein-repellent and antibacterial effects were durable and showed no loss in water-aging from 1 to 180 days. The novel MPC-DMAHDM composite possessed strong and durable resistance to protein adhesion and potent bacteria-eradicating function, while matching the load-bearing ability of a commercial dental composite. The novel MPC-DMAHDM composite represents a promising means of suppressing oral plaque growth, acid production, and secondary caries.

Keywords: antibacterial; caries inhibition; dental composite; long-term durability; protein repellent; water-aging.

MeSH terms

  • Acrylic Resins / pharmacology*
  • Adsorption
  • Biofilms / drug effects*
  • Colony-Forming Units Assay
  • Composite Resins / pharmacology*
  • Lactic Acid / metabolism
  • Methacrylates / pharmacology
  • Microbial Viability / drug effects
  • Phosphorylcholine / analogs & derivatives
  • Phosphorylcholine / pharmacology
  • Polyurethanes / pharmacology*
  • Proteins / chemistry*
  • Water / pharmacology*

Substances

  • Acrylic Resins
  • Composite Dental Resin
  • Composite Resins
  • Methacrylates
  • Polyurethanes
  • Proteins
  • Water
  • Phosphorylcholine
  • Lactic Acid
  • 2-methacryloyloxyethyl phosphorylcholine