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荭草苷与布洛芬在 DMPC 模型膜中的相互作用。

Interaction of the Saponin Aescin with Ibuprofen in DMPC Model Membranes.

机构信息

Physical and Biophysical Chemistry , Bielefeld University , Universitätsstr. 25 , 33615 Bielefeld , Germany.

ESRF-The European Synchrotron , 71, Avenue des Martyrs , 38043 Grenoble Cedex 9 , France.

出版信息

Mol Pharm. 2018 Oct 1;15(10):4446-4461. doi: 10.1021/acs.molpharmaceut.8b00421. Epub 2018 Aug 30.

Abstract

In the present work, we study the interaction of the saponin aescin with the nonsteroidal anti-inflammatory drug (NSAID) ibuprofen at concentrations of 1.2-2.5 mM. These amounts are higher than those usually used for medication (10-300 μM) to show possible structures and formulations for orally absorbed drug delivery systems. It is shown how the interaction of both substances, separately or together, alters the thermotropic phase behavior of the 1,2-dimyristoyl- sn-glycero-3-phosphocholine (DMPC) bilayer in the presence of different amounts of aescin, ranging from 20 μM to 1 mM. The methods of choice are differential scanning calorimetry (DSC), and additionally wide-angle (WAXS) and small-angle X-ray scattering (SAXS). We found that these two additives, aescin and ibuprofen, alter the temperature-dependent structural appearance of the DMPC membrane depending on the aescin and drug content. The presence of the saponin and the drug become visible on different length scales, i.e., ranging from a global structural change to inner-membrane interactions. DSC reveals that the drug and saponin alter the cooperativity of the DMPC phase transition in a concentration-dependent manner. Furthermore, there is a significant difference between the drug-containing compared to the drug-free systems. By WAXS, we could resolve that aescin reverses the strong impact of ibuprofen on the diffraction peak of DMPC. Both molecules interact strongly with the phospholipid headgroups. This becomes visible in a changing area per lipid and shifting phase transition to higher temperatures. SAXS experiments reveal that the addition of ibuprofen leads to major morphological changes in the phospholipid bilayer. SAXS experiments performed on representative samples do not only cover the drug-saponin interaction within the bilayer from the structural perspective but also confirm the visually observed macroscopic concentration and temperature-dependent phase behavior. Vesicular shape of extruded samples is conserved at low aescin contents. At intermediate aescin content, aggregation between vesicles occurs, whereby the strength of aggregation is reduced by ibuprofen. At high aescin contents, DMPC bilayers are solubilized. The kind of formed structures depends on temperature and drug content. At low temperature, separated bilayer sheets are formed. Their size increases with ibuprofen in a concentration-dependent manner. At high temperature, the drug-free system reorganizes into stacked sheets. Whereas sheets at 5 mol % ibuprofen close to vesicles, the ones with 10 mol % of the drug increase massively in size. Altogether, ibuprofen was found to rather enhance than inhibit structural and thermotropic membrane modifications induced by the aescin on the DMPC model membrane.

摘要

在本工作中,我们研究了皂角苷 aescin 与非甾体抗炎药 (NSAID) 布洛芬在 1.2-2.5mM 浓度下的相互作用。这些浓度高于通常用于药物治疗的浓度 (10-300μM),以展示可能的口服药物传递系统的结构和配方。结果表明,两种物质的相互作用(单独或一起)如何改变不同 aescin 浓度(20μM 至 1mM)下 1,2-二肉豆蔻酰基-sn-甘油-3-磷酸胆碱 (DMPC) 双层的热致相行为。选择的方法是差示扫描量热法 (DSC),以及广角 (WAXS) 和小角 X 射线散射 (SAXS)。我们发现,这两种添加剂,皂角苷和布洛芬,根据皂角苷和药物含量的不同,改变了 DMPC 膜的温度依赖性结构外观。药物和皂角苷的存在在不同的长度尺度上变得可见,即从全局结构变化到内膜相互作用。DSC 表明,药物和皂角苷以浓度依赖的方式改变 DMPC 相变的协同性。此外,含药系统与无药系统之间存在显著差异。通过 WAXS,我们可以分辨出皂角苷逆转了布洛芬对 DMPC 衍射峰的强烈影响。两种分子都与磷脂头部基团强烈相互作用。这在每个脂质的面积变化和相变温度升高中变得可见。SAXS 实验表明,添加布洛芬会导致磷脂双层的形态发生重大变化。代表性样品的 SAXS 实验不仅从结构角度涵盖了双层内的药物-皂角苷相互作用,还证实了宏观观察到的浓度和温度依赖性相行为。低 aescin 含量下挤出样品的囊泡形状得以保留。在中间 aescin 含量下,囊泡之间发生聚集,ibuprofen 降低了聚集的强度。在高 aescin 含量下,DMPC 双层被溶解。形成的结构类型取决于温度和药物含量。在低温下,分离的双层片形成。它们的大小随 ibuprofen 浓度的增加而增加。在高温下,无药系统重新组织成堆叠的片层。而不含药物的系统在 5mol%ibuprofen 时接近囊泡,在 10mol%ibuprofen 时则显著增大。总之,ibuprofen 被发现增强而不是抑制了 aescin 对 DMPC 模型膜引起的结构和热致膜改性。

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