季铵盐聚乙烯亚胺纳米颗粒的合成及其在口腔材料中的抗菌作用

Nathan Zaltsman, Dana Kesler-Shvero, E. Weiss, N. Beyth
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引用次数: 18

摘要

基于树脂的牙科材料允许细菌在其表面生长,并且缺乏抗菌活性,导致功能和美观失败。季铵聚乙烯亚胺(QPEI)纳米颗粒(NPs)以2% wt/wt掺入树脂基复合材料中,已证明对细菌生长有长期和完全的抑制作用。本研究的重点是优化QPEI NP的合成,以降低细菌生长抑制所需的浓度。这里的目的是通过过量碱中和,使用磷酸或盐酸,并通过使用表面活性剂来提高抗菌效果。方法:采用NaHCO3控制中和酸,HCl或H3PO4控制中和碳酸盐离子,n -月桂酰肌氨酸或单硬脂酸甘油处理,制备QPEI NP变体。研究了掺入口腔材料的NPs对粪肠球菌的抗菌作用。结果控制NaHCO3的添加导致修饰的QPEI NPs具有增强的抑制细菌生长的能力。在丙烯酸酯和环氧树脂基牙科材料中,n-月桂酰肌氨酸表面处理在0.5% wt/wt浓度下增强了抗菌活性。结论通过控制NaHCO3的加入、过量碱的中和和表面剂效应,可显著提高QPEI NP的抗菌效果。
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Synthesis Variants of Quaternary Ammonium Polyethyleneimine Nanoparticles and Their Antibacterial Efficacy in Dental Materials
Background Resin-based dental materials allow bacterial growth on their surface and lack antibacterial activity, leading to functional and esthetic failure. Quaternary ammonium polyethyleneimine (QPEI) nanoparticles (NPs) incorporated in resin-based composite at 2% wt/wt have demonstrated prolonged and complete inhibition of bacterial growth. This study focused on optimization of QPEI NP synthesis to reduce the concentration required for bacterial growth inhibition. The objective here was to enhance antimicrobial efficacy by excess base neutralization, using phosphoric or hydrochloric acid, and by using surfactants. Methods QPEI NP variants were prepared (i) under controlled neutralization of acid, using NaHCO3, (ii) under controlled carbonate ion neutralization with HCl or H3PO4 and (iii) by treatment with N-lauroylsarcosine or glycerol monostearate. NPs incorporated in the dental materials were examined for their antibacterial effect against Enterococcus faecalis. Results Controlled addition of NaHCO3 resulted in modified QPEI NPs with an increased ability to inhibit bacterial growth. Surface treatment with N-lauroylsarcosine resulted in enhanced antibacterial activity at 0.5% wt/wt concentration in acrylate and epoxy resin-based dental materials. Conclusions The antimicrobial efficacy of QPEI NP may be improved significantly by controlling the addition of NaHCO3, neutralization of excess base and the surface-agent effect.
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来源期刊
Journal of Applied Biomaterials & Biomechanics
Journal of Applied Biomaterials & Biomechanics 生物-材料科学:生物材料
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