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两亲性环糊精作为染料木黄酮的纳米载体:光谱研究指出主体/药物复合体系的结构特性。

Amphiphilic cyclodextrins as nanocarriers of genistein: A spectroscopic investigation pointing out the structural properties of the host/drug complex system.

机构信息

Dipartimento Farmaco-Chimico, Università di Messina, V.le Annunziata, 98168 Messina, Italy.

出版信息

J Pharm Sci. 2010 Jul;99(7):3141-9. doi: 10.1002/jps.22065.

Abstract

Nanoggregates of nonionic amphiphilic cyclodextrin (ACyD) modified with hydrophobic chains of intermediate length [(2-oligo-ethyleneoxide-6-hexylthio)-beta-CyD, SC6OH] were prepared by emulsification-diffusion method. They are able to entrap an isoflavone, genistein (Gen), and the complexed species are studied at different host/guest molar ratio. The increased isoflavone solubility in the presence of the aggregates of SC6OH is investigated by UV-Vis spectroscopy, whereas size, charge, and structure of aggregates and their complexes with Gen are measured by means of static and quasi-elastic light scattering, and electrophoretic mobility measurements. On the other hand, preparing samples by the conventional method used for liposomes (hydration of an organic film of SC6OH and sonication) gives rise to aggregates with different sizes and lower colloidal stability. It is shown that the improved stability in water of ACyD aggregates both in the absence and in the presence of Gen, obtained by emulsification-diffusion is due to the existence of nanodomains of organic solvent (R(H) congruent with 120 nm) which cannot be completely removed by evaporation and freeze-drying and in which host/guest complexes are contained. This result shows that residues of organic solvent from preparation step favor the colloidal stability of the aggregate, but their presence must be taken into account in designing systems for drug delivery.

摘要

采用乳化扩散法制备了具有中等疏水链([(2-寡-氧化乙烯-6-己基硫基)-β-环糊精,SC6OH])的非离子两亲性环糊精(ACyD)的纳米聚集体。它们能够包合异黄酮染料金雀异黄素(Gen),并在不同主客体摩尔比下研究了配合物的形成。通过紫外可见光谱法研究了纳米聚集体存在时异黄酮染料溶解度的增加,而纳米聚集体及其与 Gen 复合物的大小、电荷和结构则通过静态和准弹性光散射以及电泳迁移率测量进行了测量。另一方面,通过传统方法(即 SC6OH 有机膜的水合作用和超声处理)制备样品会导致纳米聚集体的尺寸和胶体稳定性不同。结果表明,乳化扩散法制备的 ACyD 纳米聚集体在不存在和存在 Gen 的情况下在水中的稳定性得到了改善,这是由于存在有机溶剂纳米区(R(H)约为 120nm)所致,有机溶剂纳米区无法通过蒸发和冻干完全去除,并且包含了主客体配合物。该结果表明,制备步骤中有机溶剂的残留有利于纳米聚集体的胶体稳定性,但在设计药物输送系统时必须考虑到其存在。

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