中心复合设计实现阿齐沙坦-美多索米纳米乳提高其水溶性和肠道渗透性:体外和离体评价。

Girish Kumar, Tarun Virmani, Kamla Pathak, Omkulthom Al Kamaly, Asmaa Saleh
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引用次数: 10

摘要

本研究试图设计和研制阿齐沙坦美多索米纳米乳配方,以提高其水溶性和肠通透性。根据溶解度分布,选择油酸乙酯、吐温80和Transcutol P分别作为油相、表面活性剂和助表面活性剂。中心复合设计(CCD)优选出阿齐沙坦-美多索米纳米乳配方(优化后的AZL-NE配方),油含量为1.25%,Smix含量为15.73%,超声作用时间为90 s;其滴度、透过率和累积释药率分别为71.5 nm、93.46±1.13%和90.14±0.94%。其多分散性指数为0.141,zeta电位为34.05 mV,折射率为1.413±0.03,pH为6.68±0.22,粘度为28.17±0.52 cps,药物含量为96.98±0.94%。透射电子显微镜(TEM)和差示扫描量热仪(DSC)评估了优化配方中药物的增溶性。与药物混悬液相比,优化后的AZL-NE通过大鼠肠段的CDR %提高了1.71倍,累积药物透度%提高了2.1倍,激光共聚焦扫描显微镜(CLSM)研究也证实了这一点。因此,阿齐沙坦美多索米纳米乳配方保证了药物在体内的可利用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Central Composite Design Implemented Azilsartan Medoxomil Loaded Nanoemulsion to Improve Its Aqueous Solubility and Intestinal Permeability: In Vitro and Ex Vivo Evaluation.

Central Composite Design Implemented Azilsartan Medoxomil Loaded Nanoemulsion to Improve Its Aqueous Solubility and Intestinal Permeability: In Vitro and Ex Vivo Evaluation.

Central Composite Design Implemented Azilsartan Medoxomil Loaded Nanoemulsion to Improve Its Aqueous Solubility and Intestinal Permeability: In Vitro and Ex Vivo Evaluation.

Central Composite Design Implemented Azilsartan Medoxomil Loaded Nanoemulsion to Improve Its Aqueous Solubility and Intestinal Permeability: In Vitro and Ex Vivo Evaluation.

The present research attempted to design and develop a nanoemulsion formulation of azilsartan medoxomil to improve its aqueous solubility and intestinal permeability. Based on the solubility profile, ethyl oleate, tween 80, and Transcutol P were selected as the oil phase, surfactant, and co-surfactant, respectively. Central composite design (CCD) suggested an optimized azilsartan medoxomil- nanoemulsion formulation (optimized AZL-NE formulation) with 1.25% oil, 15.73% Smix, and 90 s ultrasonication time; it was found to have the droplet size, percentage transmittance, and % cumulative drug release (%CDR) of 71.5 nm, 93.46 ± 1.13%, and 90.14 ± 0.94%, respectively. Furthermore, it exhibited a 0.141 polydispersity index, 34.05 mV zeta potential, a 1.413 ± 0.03 refractive index, 6.68 ± 0.22 pH, 28.17 ± 0.52 cps viscosity, and a 96.98 ± 0.94% percentage drug content. Transmission electron microscopy (TEM) assessed the nano-sized spherical shape, and a differential scanning calorimeter (DSC) assessed the solubilization of the drug in the optimized formulation. The %CDR was 1.71 times higher and the % cumulative drug permeation was 2.1 times higher for the optimized AZL-NE formulation than for the drug suspension through an intestinal segment of a rat, which was also supported by confocal laser scanning microscopy (CLSM) studies. Thus, the nanoemulsion formulation of azilsartan medoxomil ensured the enhancement of the drug availability in the body.

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