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首页> 外文期刊>Acta Biomaterialia Odontologica Scandinavica >Release of cetyl pyridinium chloride from fatty acid chelate temporary dental cement
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Release of cetyl pyridinium chloride from fatty acid chelate temporary dental cement

机译:从脂肪酸螯合剂临时性牙水泥中释放十六烷基氯化吡啶鎓

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Objective To determine whether the antimicrobial nature of a fatty acid chelate temporary dental cement can be enhanced by the addition of 5% cetyl pyridinium chloride (CPC).Materials and methods The temporary cement, Cavex Temporary was employed, and additions of CPC were made to either the base or the catalyst paste prior to mixing the cement. Release of CPC from set cement specimens was followed using reverse-phase HPLC for a period of up to 2 weeks following specimen preparation. Potential interactions between Cavex and CPC were examined by Fourier transform infrared spectroscopy (FTIR) and antimicrobial effects were determined using zone of inhibition measurements after 24?h with disc-shaped specimens in cultured Streptococcus mutans .Results FTIR showed no interaction between CPC and the components of the cement. CPC release was found to follow a diffusion mechanism for the first 6?h or so, and to equilibrate after approximately 2 weeks, with no significant differences between release profiles when the additive was incorporated into the base or the catalyst paste. Diffusion was rapid, and had a diffusion coefficient of approximately 1?×?10~(?9)?m~(2)?s~(?1) in both cases. Total release was in the range 10–12% of the CPC loading. Zones of inhibition around discs containing CPC were significantly larger than those around the control discs of CPC-free cement.Conclusions The antimicrobial character of this temporary cement can be enhanced by the addition of CPC. Such enhancement is of potential clinical value, though further in vivo work is needed to confirm this.
机译:目的确定添加5%的鲸蜡基吡啶鎓氯化物(CPC)是否可以增强脂肪酸螯合剂临时性牙科用水泥的抗菌性能。材料与方法采用临时型水泥Cavex Temporary,并添加CPC。在混合水泥之前,先加入碱或催化剂浆。在制备样品后,使用反相HPLC跟踪从凝固的水泥样品中释放CPC的时间,最多2周。用傅里叶变换红外光谱(FTIR)检测Cavex和CPC之间的潜在相互作用,并在培养的变形链球菌的圆盘状标本中放置24 h后,通过抑制区域的测定来确定抗菌效果。结果FTIR显示CPC之间没有相互作用以及水泥的成分。发现CPC的释放在最初的大约6h内遵循扩散机制,并在大约2周后达到平衡,当将添加剂掺入基础剂或催化剂浆料中时,释放曲线之间没有显着差异。扩散迅速,在两种情况下扩散系数均约为1××10 10((9))m(2)×s(1)。总释放量为CPC加载量的10–12%。含CPC的椎间盘周围的抑制区明显大于不含CPC的对照盘周围。结论结论这种临时水泥的抗菌特性可以通过添加CPC来增强。这种增强具有潜在的临床价值,尽管需要进一步的体内工作来证实这一点。

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