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Bimodal antibacterial system based on quaternary ammonium silane-coupled core-shell hollow mesoporous silica

机译:基于季铵硅烷偶联芯壳中空介孔二氧化硅的双峰抗菌系统

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摘要

Hollow mesoporous silica (HMS) have been extensively investigated as a biomaterial for drug delivery. The present study developed quaternary ammonium silane-grafted hollow mesoporous silica (QHMS) to create a metronidazole (MDZ) sustained delivery system, MDZ@QHMS, with bimodal, contact-kill and release-kill capability. The QHMS was assembled through a self-templating method. Metronidazole was incorporated within the QHMS core using solvent evaporation. Antibacterial activities of the MDZ@QHMS were investigated using single-species biofilms of Staphylococcus aureus (ATCC25923), Escherichia coli (ATCC25922) and Porphyromonas gingivalis (ATCC33277). The MDZ@QHMS maintained a hollow mesoporous structure and demonstrated sustained drug release and bacteridal actvity against the three bacterial strains at a concentration of 100 mu g/mL or above. These nanoparticles were not relatively cytotoxic to human gingival fibroblasts when employed below 100 mu g/mL. Compared with HMS, the MDZ@QHMS system at the same concentration demonstrated antibiotic-elution and contact-killing bimodal antibacterial activities. The synthesized drug carrier with sustained, bimodal antibacterial function and minimal cytotoxicity possesses potential for localized antibiotic applications.
机译:中空介孔二氧化硅(HMS)已被广泛研究作为药物递送的生物材料。本研究开发了季铵硅烷接枝的中空介孔二氧化硅(QHMS)以产生甲硝唑(MDZ)持续递送系统,MDZ QHMS,具有双峰,接触杀死和剥离杀伤能力。 QHM通过自动模板方法组装。使用溶剂蒸发在QHMS核心内纳入甲硝唑。使用葡萄球菌(ATCC25923),大肠杆菌(ATCC25922)和Porphyromonas Gingivis(ATCC33277)的单一物种生物膜来研究MDZ QHMS的抗菌活性。 MDZ @ QHMS维持中空介孔结构,并以100μg或以上的浓度呈现持续的药物释放和诱导诱导菌株和诱导菌株。当使用以下100μg/ ml时,这些纳米颗粒与人牙龈成纤维细胞没有相对细胞毒性。与HMS相比,MDZ @ QHMS系统在同一浓度下显示出抗生素洗脱和接触双峰抗菌活性。具有持续,双峰抗菌功能和最小细胞毒性的合成药物载体具有局部抗生素应用的潜力。

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