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GM1 胶束与两性霉素 B 相互作用的生化特性

Biochemical characterization of GM1 micelles-Amphotericin B interaction.

作者信息

Leonhard Victoria, Alasino Roxana V, Bianco Ismael D, Garro Ariel G, Heredia Valeria, Beltramo Dante M

机构信息

Centro de Excelencia en Productos y Procesos de Córdoba ,Ceprocor, Ministerio de Ciencia y Tecnología de Córdoba, Pabellón Ceprocor, CP 5164, Santa María de Punilla, Córdoba - Argentina.

出版信息

Curr Drug Deliv. 2015;12(4):406-14. doi: 10.2174/1567201812666150316113355.

DOI:10.2174/1567201812666150316113355
PMID:25772153
Abstract

In this work a thorough characterization of the GM1 micelle-Amphotericin B (AmB) interaction was performed. The micelle formation as well as the drug loading occurs spontaneously, although influenced by the physicochemical conditions, pH and temperature. The chromatographic profile of GM1-AmB complexes at different molar ratios shows the existence of two populations. The differential absorbance of GM1, monomeric and aggregate AmB, allowed us to discriminate the presence of all of them in both fractions. Thus, we noted that at higher proportion of AmB in the complex, increases the larger population which is composed mainly of aggregated AmB. The physical behavior of these micelles shows that both GM1- AmB complexes were stable in solution for at least 30 days. However upon freeze-thawing or lyophilization-solubilization cycles, only the smallest population, enriched in monomeric AmB, showed a complete solubilization. In vitro, GM1-AmB micelles were significantly less toxic on cultured cells than other commercial micellar formulations as Fungizone, but had a similar behavior to liposomal formulations as Ambisome. Regarding the antifungal activity of the new formulation, it was very similar to that of other formulations. The characterization of these GM1-AmB complexes is discussed as a potential new formulation able to improve the antifungal therapeutic efficiency of AmB.

摘要

在这项工作中,对GM1胶束-两性霉素B(AmB)的相互作用进行了全面表征。胶束的形成以及药物负载是自发发生的,尽管受到物理化学条件、pH值和温度的影响。不同摩尔比下GM1-AmB复合物的色谱图谱显示存在两种群体。GM1、单体和聚集态AmB的差异吸光度使我们能够区分这两种组分中所有群体的存在。因此,我们注意到在复合物中AmB比例较高时,主要由聚集态AmB组成的较大群体增加。这些胶束的物理行为表明,两种GM1-AmB复合物在溶液中至少30天都是稳定的。然而,经过冻融或冻干-溶解循环后,只有富含单体AmB的最小群体显示出完全溶解。在体外,GM1-AmB胶束对培养细胞的毒性明显低于其他商业胶束制剂如两性霉素B注射剂,但与脂质体制剂如安必素的行为相似。关于新制剂的抗真菌活性,它与其他制剂非常相似。这些GM1-AmB复合物的表征被作为一种能够提高AmB抗真菌治疗效率的潜在新制剂进行了讨论。

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Biochemical characterization of GM1 micelles-Amphotericin B interaction.GM1 胶束与两性霉素 B 相互作用的生化特性
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