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基于挥发性微乳模板制备抗高血脂纳米依折麦布以改善溶出度

Formation of Antihyperlipidemic Nano-Ezetimibe from Volatile Microemulsion Template for Enhanced Dissolution Profile.

作者信息

Saleem Muhammad Atif, Yasir Siddique Muhammad, Nazar Muhammad Faizan, Khan Salah Ud-Din, Ahmad Ashfaq, Khan Rawaiz, Hussain Syed Zajif, Mat Lazim Azwan, Azfaralariff Ahmad, Mohamed Mazlan

机构信息

Department of Chemistry, University of Gujrat, Gujrat 50700, Pakistan.

Sustainable Energy Technologies (SET) Center, College of Engineering, King Saud University, P.O. Box 800, Riyadh 11421, Saudi Arabia.

出版信息

Langmuir. 2020 Jul 14;36(27):7908-7915. doi: 10.1021/acs.langmuir.0c01016. Epub 2020 Jul 2.

Abstract

Nanostructures play an important role in targeting sparingly water-soluble drugs to specific sites. Because of the structural flexibility and stability, the use of template microemulsions (μEs) can produce functional nanopharmaceuticals of different sizes, shapes, and chemical properties. In this article, we report a new volatile oil-in-water (o/w) μE formulation comprising ethyl acetate/ethanol/brij-35/water to obtain the highly water-dispersible nanoparticles of an antihyperlipidemic agent, ezetimibe (EZM-NPs), to enhance its dissolution profile. A pseudoternary phase diagram was delineated in a specified brij-35/ethanol ratio (1:1) to describe the transparent, optically isotropic domain of the as-formulated μE. The water-dilutable μE formulation, comprising an optimum composition of ethyl acetate (18.0%), ethanol (25.0%), brij-35 (25.0%), and water (32.0%), showed a good dissolvability of EZM around 4.8 wt % at pH 5.2. Electron micrographs showed a fine monomodal collection of EZM-loaded μE droplets (∼45 nm) that did not coalesce even after lyophilization, forming small spherical EZM-NPs (∼60 nm). However, the maturity of nanodrug droplets observed through dynamic light scattering suggests the affinity of EZM to the nonpolar microenvironment, which was further supported through peak-to-peak correlation of infrared analysis and fluorescence measurements. Moreover, the release profile of the as-obtained EZM-nanopowder increased significantly >98% in 30 min, which indicates that a reduced drug concentration will be needed for capsules or tablets in the future and can be simply incorporated into the multidosage formulation of EZM.

摘要

纳米结构在将难溶性药物靶向输送到特定部位方面发挥着重要作用。由于其结构的灵活性和稳定性,使用模板微乳液(μE)可以制备出具有不同尺寸、形状和化学性质的功能性纳米药物。在本文中,我们报道了一种新的水包油(o/w)μE制剂,其由乙酸乙酯/乙醇/聚山梨醇酯-35/水组成,用于制备抗高血脂药物依泽替米贝的高度水分散性纳米颗粒(EZM-NPs),以改善其溶出度。在特定的聚山梨醇酯-35/乙醇比例(1:1)下绘制了伪三元相图,以描述所制备的μE的透明、光学各向同性区域。该水可稀释的μE制剂,其最佳组成为乙酸乙酯(18.0%)、乙醇(25.0%)、聚山梨醇酯-35(25.0%)和水(32.0%),在pH 5.2时,依泽替米贝在约4.8 wt%时显示出良好的溶解性。电子显微镜照片显示,负载依泽替米贝的μE液滴(约45 nm)形成了精细的单峰聚集体,即使在冻干后也不会聚结,形成了小球形的EZM-NPs(约60 nm)。然而,通过动态光散射观察到的纳米药物液滴的成熟度表明依泽替米贝对非极性微环境的亲和力,这通过红外分析和荧光测量的峰峰相关性得到了进一步支持。此外,所获得的依泽替米贝纳米粉末在30分钟内的释放率显著增加>98%,这表明未来胶囊或片剂所需的药物浓度将降低,并且可以简单地纳入依泽替米贝的多剂量制剂中。

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