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用于口服给药的尼莫地平纳米晶体的制剂

Formulation of nimodipine nanocrystals for oral administration.

作者信息

Li Jianwen, Fu Qiang, Liu Xiaohong, Li Mo, Wang Yongjun

机构信息

School of Pharmacy, Shenyang Pharmaceutical University, Mailbox 59#, No. 103, Wenhua Road, Shenyang, 110016, China.

GE Healthcare, No.1, HuaTuo Road, Zhangjiang Hi-tech Park, Shanghai, 210203, China.

出版信息

Arch Pharm Res. 2016 Feb;39(2):202-212. doi: 10.1007/s12272-015-0685-5. Epub 2015 Nov 19.

Abstract

The aim of this paper is to optimize nimodipine (NMD) nanocrystals (NCs) for oral administration. The effects of independent process variables (microprecipitation temperature, shearing speed, shearing time, homogenization pressure and number of cycles) on the particle size have been studied. Experiments were conducted to optimize the formulation composition. A single factor exploration was used to screen the primary stabilizers. Then, the selected polymers/surfactants were further optimized using an L9 (3(4)) orthogonal design. The optimal formulation was composed of NMD (0.7 %, w/v), F127 (0.4 %, w/v), HPMC-E5 (0.1 %, w/v), and sodium deoxycholate (0.05 %, w/v) and was rod-shaped as shown by SEM observations, and it had a particle size of 833.3 ± 20.6 nm, determined by laser diffraction. These aqueous NCs were physically stable for 15 days. To further improve the stability, the NCs were freeze-dried. The powder obtained exhibited acceptable flowability and was physically stable for at least 24 months. Additionally, the NMD NCs displayed much higher dissolution profiles than the bulk drug. The pharmacokinetic results showed that the relative bioavailability was 397 % in comparison with Nimotop(®), suggesting that NCs are an efficient strategy for improving the oral bioavailability of poorly water-soluble drugs.

摘要

本文旨在优化用于口服给药的尼莫地平(NMD)纳米晶体(NCs)。研究了独立工艺变量(微沉淀温度、剪切速度、剪切时间、均质压力和循环次数)对粒径的影响。进行实验以优化制剂组成。采用单因素探索法筛选主要稳定剂。然后,使用L9(3(4))正交设计对所选聚合物/表面活性剂进行进一步优化。最佳制剂由NMD(0.7%,w/v)、F127(0.4%,w/v)、HPMC-E5(0.1%,w/v)和脱氧胆酸钠(0.05%,w/v)组成,扫描电子显微镜观察显示其为棒状,通过激光衍射测定其粒径为833.3±20.6nm。这些水性NCs在15天内物理稳定。为进一步提高稳定性,对NCs进行冷冻干燥。所得粉末表现出可接受的流动性,并且在至少24个月内物理稳定。此外,NMD NCs的溶出曲线比原料药高得多。药代动力学结果表明,与尼膜同(Nimotop®)相比,相对生物利用度为397%,表明NCs是提高难溶性药物口服生物利用度的有效策略。

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