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首页> 外文期刊>International Journal of Pharmaceutics >Stabilization of unilamellar catanionic vesicles induced by beta-cyclodextrins: A strategy for a tunable drug delivery depot
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Stabilization of unilamellar catanionic vesicles induced by beta-cyclodextrins: A strategy for a tunable drug delivery depot

机译:β-环糊精诱导的Unilamellar Catanionic囊泡的稳定:可调谐药物送货码的策略

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摘要

The limited stability of catanionic vesicles has discouraged their wide use for encapsulation and controlled release of active substances. Their structure can easily break down to form lamellar phases, micelles or rearrange into multilamellar vesicles, as a consequence of small changes in their composition. However, despite the limited stability, catanionic vesicles possess an attractive architecture, which is able to efficiently encapsulate both hydrophobic and hydrophilic molecules. Therefore, improving the stability of the vesicles, as well as the control on unilamellar structures, are prerequisites for their wider application range. This study focuses on the impact of beta-cyclodextrins for the stabilization of SDS/CTAB catanionic vesicles. Molar ratio and sample preparation procedures have been investigated to evaluate the temperature stability of catanionic vesicles. Diffusion and spectroscopic techniques evidenced that when beta-cyclodextrins are added, unilamellar structures are stabilized above the multilamellar-unilamellar vesicles critical temperature. The results evidence encouraging perspectives for the use of vesicular nanoreservoirs for drug depot applications.
机译:无限囊泡的有限稳定性不鼓励它们广泛用于封装和控制释放活性物质。由于其组成的少量变化,它们的结构可以容易地分解成形成层状阶段,胶束或重新排列到多硅囊泡中。然而,尽管稳定性有限,但浓度的囊泡具有有吸引力的架构,能够有效地包封疏水和亲水分子。因此,提高囊泡的稳定性,以及对单玻璃结构的控制,是其更广泛的应用范围的先决条件。本研究重点介绍β-环糊精对SDS / CTAB浓度囊泡的稳定的影响。已经研究了摩尔比和样品制备程序以评估菌囊泡的温度稳定性。扩散和光谱技术证明:当添加β-环糊精时,单叶片结构稳定在多层 - 单硅烷囊泡临界温度之上。结果令人令人令人令人振奋的观点,用于使用凹凸纳米液用于药物库应用。

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