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两亲性药物的聚氧乙烯脂肪酸酯胶束降低了溶血潜能。

Polymeric micelles of pluronic F127 reduce hemolytic potential of amphiphilic drugs.

机构信息

Department of Biochemical and Pharmaceutical Technology, School of Pharmaceutical Sciences, University of São Paulo(USP), São Paulo, Brazil; Bionanomanufacturing Center, Institute for Technological Research(IPT), São Paulo, Brazil.

Department of Biochemical and Pharmaceutical Technology, School of Pharmaceutical Sciences, University of São Paulo(USP), São Paulo, Brazil.

出版信息

Colloids Surf B Biointerfaces. 2019 Aug 1;180:177-185. doi: 10.1016/j.colsurfb.2019.04.045. Epub 2019 Apr 22.

Abstract

One of the main toxicities associated to intravenous administration of amphiphilic drugs is pronounced hemolytic activity. To overcome this limitation, we investigated the anti-hemolytic properties of polymeric micelles of Pluronics, triblock copolymers of poly(ethylene oxide) and poly(propylene oxide). We studied the encapsulation of the amphiphilic compound miltefosine (HePC) into polymeric micelles of Pluronics F108, F68, F127, L44, and L64. In vitro hemolysis indicated that, among the five copolymers studied, only F127 completely inhibited hemolytic effect of HePC at 50 μg/mL, this effect was also observed for other two amphiphilic molecules (cetyltrimethylammonium bromide and cethylpyridinium chloride). To better understand this interaction, we analyzed the HC (concentration causing 50% of hemolysis) for HePC free and loaded into F127 micelles. Copolymer concentration influenced the hemolytic profile of encapsulated HePC; for F127 the HC increased relative to free HePC (40 μg/mL) up to 184, 441, 736 and 964 μg/mL, for 1, 3, 6 and 9% F127, respectively. Interestingly, a linear relationship was found between HC-HePC and F127 concentration. At 3% of F127, it is possible to load up to 300 μg/mL of HePC with no hemolytic effect. By achieving this level of hemolysis protection, a promising application is on the view, bringing the parenteral use of HePC and other amphiphilic drugs. Additionally, small-angle X-ray scattering (SAXS) was used to asses structural information on the interactions between HePC and F127 micelles.

摘要

与亲脂性药物静脉给药相关的主要毒性之一是明显的溶血活性。为了克服这一限制,我们研究了聚氧乙烯和聚氧丙烯嵌段共聚物泊洛沙姆的聚合物胶束的抗溶血特性。我们研究了两性化合物米替福新(HePC)封装在泊洛沙姆 F108、F68、F127、L44 和 L64 聚合物胶束中的情况。体外溶血实验表明,在所研究的五种共聚物中,只有 F127 在 50μg/mL 时完全抑制了 HePC 的溶血作用,这种作用也出现在另外两种两亲性分子(十六烷基三甲基溴化铵和十六烷基吡啶氯)中。为了更好地理解这种相互作用,我们分析了 HePC 游离和负载于 F127 胶束中的 HC(引起 50%溶血的浓度)。共聚物浓度影响包封 HePC 的溶血谱;对于 F127,与游离 HePC(40μg/mL)相比,HC 增加到 184、441、736 和 964μg/mL,分别为 1%、3%、6%和 9%的 F127。有趣的是,发现 HC-HePC 与 F127 浓度之间存在线性关系。在 3%的 F127 时,可以加载高达 300μg/mL 的 HePC 而没有溶血作用。通过达到这种水平的溶血保护,可以期望实现 HePC 和其他两亲性药物的静脉给药。此外,还使用小角 X 射线散射(SAXS)来评估 HePC 和 F127 胶束之间相互作用的结构信息。

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