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通过准纳米乳液沉淀法制备的伊曲康唑液晶纳米粒的中间相和尺寸调控

Mesophase and size manipulation of itraconazole liquid crystalline nanoparticles produced via quasi nanoemulsion precipitation.

作者信息

Mugheirbi Naila A, Tajber Lidia

机构信息

School of Pharmacy and Pharmaceutical Sciences, Trinity College Dublin, Dublin 2, Ireland.

School of Pharmacy and Pharmaceutical Sciences, Trinity College Dublin, Dublin 2, Ireland.

出版信息

Eur J Pharm Biopharm. 2015 Oct;96:226-36. doi: 10.1016/j.ejpb.2015.08.005. Epub 2015 Aug 8.

Abstract

The fabrication of drug nanoparticles (NPs) with process-mediated tunable properties and performances continues to grow rapidly during the last decades. This study investigates the synthesis and phase tuning of nanoparticulate itraconazole (ITR) mesophases using quasi nanoemulsion precipitation from acetone/water systems to seek out an alternative pathway to the nucleation-based NP formation. ITR liquid crystalline (LC) phases were formed and nematic-smectic mesomorphism was achieved via controlling solvent:antisolvent temperature difference (ΔTS:AS). The use of ΔTS:AS=49.5°C was associated with a nematic assembly, while intercalated smectic A layering was observed at ΔTS:AS=0°C, with both phases confined in the nanospheres at room temperature. The quasi emulsion system has not been investigated at the nanoscale to date and in contrary to the microscale, quasi nanoemulsion was observed over the solvent:antisolvent viscosity ratios of 1:7-1:1.4. Poly(acrylic acid) in the solvent phase exhibited a concentration dependent interaction when ITR formed NPs. This nanodroplet-based approach enabled the preparation of a stable ITR nanodispersion using Poloxamer 407 at 80°C, which was unachievable before using precipitation via nucleation. Findings of this work lay groundwork in terms of rationalised molecular assembly as a tool in designing pharmaceutical LC NPs with tailored properties.

摘要

在过去几十年中,具有过程介导的可调性质和性能的药物纳米颗粒(NPs)的制备持续快速发展。本研究利用丙酮/水体系的准纳米乳液沉淀法研究纳米级伊曲康唑(ITR)中间相的合成和相调谐,以寻找一种替代基于成核的NP形成的途径。通过控制溶剂:反溶剂温度差(ΔTS:AS)形成了ITR液晶(LC)相并实现了向列相-近晶相的介晶现象。使用ΔTS:AS = 49.5°C与向列组装相关,而在ΔTS:AS = 0°C时观察到插层近晶A层状结构,在室温下这两个相都局限于纳米球中。准乳液体系在纳米尺度上尚未被研究,与微尺度相反,在溶剂:反溶剂粘度比为1:7 - 1:1.4时观察到准纳米乳液。当ITR形成NP时,溶剂相中的聚丙烯酸表现出浓度依赖性相互作用。这种基于纳米液滴的方法能够在80°C下使用泊洛沙姆407制备稳定的ITR纳米分散体,这在以前通过成核沉淀是无法实现的。这项工作的发现为将合理的分子组装作为设计具有定制性质的药物LC NPs的工具奠定了基础。

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