Drug Delivery System Excellence Centre, Department of Pharmaceutical Technology, Faculty of Pharmaceutical Sciences, Prince of Songkla University, Hat-Yai, Songkhla 90112, Thailand.
Computational Chemistry Unit, Dr. Panjwani Centre for Molecular Medicine and Drug Research, International Centre for Chemical and Biological Sciences, University of Karachi, Karachi 75270, Pakistan.
J Pharm Sci. 2017 Dec;106(12):3574-3582. doi: 10.1016/j.xphs.2017.08.013. Epub 2017 Aug 26.
This study presents the mode of interaction, structural features, and micellization of amphotericin B (AmB) with sodium deoxycholate sulfate (SDCS) as small lipid molecule at different ratios, as revealed by molecular docking simulations and nuclear magnetic resonance (NMR). AmB-SDCS micelles were synthesized by single pot rinsing method. Solid-state C NMR revealed hydrogen (H)-bonding as the main interaction, occurring at different positions between AmB and SDCS at various ratios. Molecular docking elucidated that AmB-SDCS complex was stabilized by multiple H-bonds and van der Waals forces between SDCS and AmB. SDCS molecules wrap around the AmB in a head-to-tail fashion into a nanomicellar structure. AmB-SDCS micelles were stable after freeze-drying and presented zeta potential values between -27.5 and -42.6 mV and particle size in the range of 63.9 to 203.1 nm, upon rehydration in water. Hematological toxicity of AmB was controlled by exposure versus release of drug from SDCS micelles and concentration of SDCS to envelop the drug. Hemolysis of human erythrocytes was significantly reduced as compared to market formulation Fungizone and pure AmB. This study explained the chemical interaction of micellization of AmB in lipids, which can have greater implications in designing toxicologically safe formulations of hydrophobic drugs.
本研究通过分子对接模拟和核磁共振(NMR)揭示了两性霉素 B(AmB)与去氧胆酸钠硫酸盐(SDCS)作为小分子脂质在不同比例下的相互作用模式、结构特征和胶束化。AmB-SDCS 胶束通过单锅冲洗法合成。固态 C NMR 揭示了氢键是主要相互作用,发生在不同比例的 AmB 和 SDCS 之间的不同位置。分子对接阐明了 AmB-SDCS 复合物通过 SDCS 和 AmB 之间的多个氢键和范德华力稳定。SDCS 分子以头到尾的方式围绕 AmB 包裹成纳米胶束结构。AmB-SDCS 胶束在冷冻干燥后稳定,并在重新水合时呈现出介于-27.5 至-42.6 mV 的 ζ 电位值和 63.9 至 203.1nm 的粒径范围。AmB 的血液毒性通过暴露于 SDCS 胶束中药物的释放和包裹药物的 SDCS 浓度来控制。与市售制剂 Fungizone 和纯 AmB 相比,人红细胞的溶血显著降低。本研究解释了两性霉素 B 在脂质中胶束化的化学相互作用,这可能对设计具有毒理学安全性的疏水性药物制剂具有更大的意义。