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庆大霉素包裹于pH敏感脂质体中的细胞内递送及抗菌活性

Intracellular delivery and antibacterial activity of gentamicin encapsulated in pH-sensitive liposomes.

作者信息

Lutwyche P, Cordeiro C, Wiseman D J, St-Louis M, Uh M, Hope M J, Webb M S, Finlay B B

机构信息

Inex Pharmaceuticals Corporation, Burnaby, British Columbia, Canada V5J 5J8.

出版信息

Antimicrob Agents Chemother. 1998 Oct;42(10):2511-20. doi: 10.1128/AAC.42.10.2511.

Abstract

Cell membranes are relatively impermeable to the antibiotic gentamicin, a factor that, along with the toxicity of gentamicin, precludes its use against many important intracellular bacterial infections. Liposomal encapsulation of this drug was used in order to achieve intracellular antibiotic delivery and therefore increase the drug's therapeutic activity against intracellular pathogens. Gentamicin encapsulation in several dipalmitoylphosphatidylcholine (DPPC) and pH-sensitive dioleoylphosphatidylethanolamine (DOPE)-based carrier systems was characterized. To systematically test the antibacterial efficacies of these formulations, a tissue culture assay system was developed wherein murine macrophage-like J774A.1 cells were infected with bacteria and were then treated with encapsulated drug. Of these formulations, DOPE-N-succinyl-DOPE and DOPE-N-glutaryl-DOPE (70:30;mol:mol) containing small amounts of polyethyleneglycol-ceramide showed appreciable antibacterial activities, killing greater than 75% of intracellular vacuole-resident wild-type Salmonella typhimurium compared to the level of killing of the control formulations. These formulations also efficiently eliminated intracellular infections caused by a recombinant hemolysin-expressing S. typhimurium strain and a Listeria monocytogenes strain, both of which escape the vacuole and reside in the cytoplasm. Control non-pH-sensitive liposomal formulations of gentamicin had poor antibacterial activities. A fluorescence resonance energy transfer assay indicated that the efficacious formulations undergo a pH-dependent lipid mixing and fusion event. Intracellular delivery of the fluorescent molecules encapsulated in these formulations was confirmed by confocal fluorescence microscopy and was shown to be dependent on endosomal acidification. This work shows that encapsulation of membrane-impermeative antibiotics in appropriately designed lipid-based delivery systems can enable their use in treating intracellular infections and details the development of a general assay for testing the intracellular delivery of encapsulated drug formulations.

摘要

细胞膜对抗生素庆大霉素相对不通透,这一因素连同庆大霉素的毒性,使得它无法用于治疗许多重要的细胞内细菌感染。为了实现细胞内抗生素递送并因此提高该药物对细胞内病原体的治疗活性,人们采用了脂质体包裹这种药物的方法。对庆大霉素包裹于几种基于二棕榈酰磷脂酰胆碱(DPPC)和pH敏感的二油酰磷脂酰乙醇胺(DOPE)的载体系统进行了表征。为了系统地测试这些制剂的抗菌效果,开发了一种组织培养测定系统,其中将鼠巨噬细胞样J774A.1细胞用细菌感染,然后用包裹的药物进行处理。在这些制剂中,含有少量聚乙二醇神经酰胺的DOPE-N-琥珀酰-DOPE和DOPE-N-戊二酰-DOPE(70:30;摩尔:摩尔)表现出可观的抗菌活性,与对照制剂的杀灭水平相比,能杀死超过75%的细胞内液泡驻留的野生型鼠伤寒沙门氏菌。这些制剂还能有效消除由表达重组溶血素的鼠伤寒沙门氏菌菌株和单核细胞增生李斯特菌菌株引起的细胞内感染,这两种菌株都会逃离液泡并存在于细胞质中。庆大霉素的对照非pH敏感脂质体制剂抗菌活性较差。荧光共振能量转移测定表明,有效的制剂会发生pH依赖性的脂质混合和融合事件。共聚焦荧光显微镜证实了包裹在这些制剂中的荧光分子的细胞内递送,并表明其依赖于内体酸化。这项工作表明,将膜不通透性抗生素包裹在适当设计的基于脂质的递送系统中可以使其用于治疗细胞内感染,并详细介绍了一种用于测试包裹药物制剂细胞内递送的通用测定方法的开发。

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