Department of Biomaterials Science, Institute of Dentistry and Biocity Turku Biomaterial Research Program, University of Turku, Turku 20520, Finland.
J Biomater Sci Polym Ed. 2013;24(5):565-73. doi: 10.1080/09205063.2012.699709. Epub 2012 Aug 13.
In order to endow dental resin with antibacterial activity, a series of antibacterial quaternary ammonium methacrylate monomers (QAM) with different substituted alkyl chain length (from 10 to 18) were incorporated into commonly used 2,2-bis[4-(2'-hydroxy-3'-methacryloyloxy-propoxy)-phenyl]propane (Bis-GMA)/triethyleneglycol dimethacrylate (TEGDMA) (50 wt/50 wt) dental resin as immobilized antibacterial agents. Double bond conversion (DC), flexural strength (FS) and modulus (FM), and young and mature biofilms inhibition effectiveness of prepared dental resins were studied and Bis-GMA/TEGDMA without QAM was used as reference. Results showed that there was no significant difference on DC, FS, and FM between copolymer with and without 5 wt% QAM. Substituted alkyl chain length of QAM had no influence on DC, FS, and FM of copolymer, but had influence on antibacterial activity of copolymer. Antibacterial activity of copolymer increased with increasing of substituted alkyl chain length of QAM, and the sequence followed as 5%C10 < 5%C11 ≈ 5%C12 < 5%C16 ≈ 5%C18. Copolymers containing C18 and C16 had the best inhibition effectiveness on both young biofilm and mature biofilm, copolymers containing C12 and C11 only had inhibition effectiveness on young biofilm and copolymer containing C10 had none inhibition effectiveness on neither young biofilm nor mature biofilm.
为了赋予牙科树脂抗菌活性,将一系列具有不同取代烷基链长度(从 10 到 18)的抗菌季铵甲基丙烯酸酯单体(QAM)掺入常用的 2,2-双[4-(2'-羟基-3'-甲基丙烯酰氧基丙氧基)-苯基]丙烷(Bis-GMA)/三乙二醇二甲基丙烯酸酯(TEGDMA)(50wt/50wt)牙科树脂中,作为固定化抗菌剂。研究了制备的牙科树脂的双键转化率(DC)、弯曲强度(FS)和模量(FM)以及成熟生物膜的抑制效果,并将不含 QAM 的 Bis-GMA/TEGDMA 用作参考。结果表明,含 5wt%QAM 的共聚物与不含 QAM 的共聚物之间的 DC、FS 和 FM 没有显著差异。QAM 的取代烷基链长度对共聚物的 DC、FS 和 FM 没有影响,但对共聚物的抗菌活性有影响。共聚物的抗菌活性随 QAM 的取代烷基链长度的增加而增加,顺序为 5%C10 < 5%C11 ≈ 5%C12 < 5%C16 ≈ 5%C18。含 C18 和 C16 的共聚物对年轻生物膜和成熟生物膜均具有最佳的抑制效果,含 C12 和 C11 的共聚物仅对年轻生物膜具有抑制效果,而含 C10 的共聚物对年轻生物膜和成熟生物膜均无抑制效果。