首页> 外文期刊>Journal of Microencapsulation: Microcapsules Liposomes Nanoparticles Microcells Microspheres >Preparation of nano cationic liposome as carrier membrane for polyhexamethylene biguanide chloride through various methods utilizing higher antibacterial activities with low cell toxicity
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Preparation of nano cationic liposome as carrier membrane for polyhexamethylene biguanide chloride through various methods utilizing higher antibacterial activities with low cell toxicity

机译:用较高抗菌活性的各种方法制备纳米阳离子脂质体作为多烷亚甲基双甲基双氯化物的载体膜

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摘要

This study suggested successful encapsulation of polyhexamethylene biguanide chloride (PHMB) into nano cationic liposome as a biocompatible antibacterial agent with less cytotoxicity and higher activities. Phosphatidylcholine, cholesterol and stearylamine were used to prepare nano cationic liposome using thin film hydration method along with sonication or homogeniser. Sonication was more effective in PHMB loaded nano cationic liposome preparation with smaller size (34 nm). FTIR, H-1 NMR and XRD analyses were used to confirm the encapsulation of PHMB into nano cationic liposome. PHMB inclusion in nano cationic liposome was beneficial for increased antibacterial activity against Staphylococcus aureus and Escherichia coli. PHMB-loaded cationic liposome enables to deliver high concentrations of the antibacterial agent into the infectious cell. The cytotoxicity of PHMB entrapped in positively charged liposome was prominently reduced showing no significant visible detrimental effect on normal primary human skin fibroblast cell lines morphology confirming the effective role of cationic liposome encapsulation. Comparing with PHMB alone, encapsulation of PHMB in nano cationic liposome resulted in significant increase in cell viability from 2.4 to 63%.
机译:本研究表明,作为生物相容性抗菌剂的纳米阳离子脂质体,将聚环亚甲基双氯化物(PHMB)封装成具有较小细胞毒性和更高的活性的生物相容性抗菌剂。使用薄膜水合法以及超声处理或均化器制备磷脂酰胆碱,胆固醇和硬脂胺用于制备纳米阳离子脂质体。超声处理在PHMB负载纳米阳离子脂质体制剂中更有效,尺寸较小(34nm)。 FTIR,H-1 NMR和XRD分析用于确认PHMB的包封成纳米阳离子脂质体。 PHMB包含在纳米阳离子脂质体中是有益于对金黄色葡萄球菌和大肠杆菌的抗菌活性增加。 PHMB加载的阳离子脂质体使能够将高浓度的抗菌剂进入传染性细胞。 PHMB捕获在正电荷脂质体中的pHMB的细胞毒性显着降低显示对正常的原发性人体皮肤成纤维细胞系形态没有显着的可见性损害,证实阳离子脂质体包封的有效作用。单独比较pHMB,纳米阳离子脂质体中PHMB的封装导致细胞活力显着增加2.4-63%。

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