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含抗高血压药物眼药水的研发:厄贝沙坦/γ-环糊精水性眼药水的配方

Development of eye drops containing antihypertensive drugs: formulation of aqueous irbesartan/γCD eye drops.

作者信息

Jansook Phatsawee, Muankaew Chutimon, Stefánsson Einar, Loftsson Thorsteinn

机构信息

Faculty of Pharmaceutical Sciences, Chulalongkorn University , Bangkok , Thailand .

出版信息

Pharm Dev Technol. 2015;20(5):626-32. doi: 10.3109/10837450.2014.910811. Epub 2014 Apr 23.

Abstract

Aqueous nanoparticulated eye drop formulations based on γ-cyclodextrin (γCD) complexes were developed and tested in vitro. Three antihypertensive drugs, i.e. enalapril maleate, irbesartan and verapamil HCl, that have been shown to possess IOP-lowering activity were selected for this study. All three drugs displayed Bs-type phase-solubility diagrams in aqueous γCD solutions and had relatively low affinity for γCD. Irbesartan was selected for further formulation development. The drug was relatively stable at pH 4.5 but somewhat less stable at physiologic pH. However, presence of γCD in the aqueous media enhanced the chemical stability of irbesartan. Aqueous γCD-based eye drop formulations containing 1% and 2% (w/v) irbesartan were prepared and the effect of pH on the particles size distribution and drug release investigated. Only ∼2% of the drug was in solution in the pH 4.5 formulations but up to 45% in the pH 7 formulations. The pH 7 formulations, where larger fraction of the drug was in solution, displayed somewhat greater drug permeation flux but much lower drug permeation coefficients than the pH 4.5 formulations. Dynamic light scattering studies indicated the faster permeation was due to formation of smaller particles in presence tyloxapol.

摘要

基于γ-环糊精(γCD)复合物的水性纳米颗粒滴眼剂配方被研发并进行了体外测试。本研究选择了三种已被证明具有降低眼压活性的抗高血压药物,即马来酸依那普利、厄贝沙坦和盐酸维拉帕米。这三种药物在γCD水溶液中均呈现Bs型相溶解度图,且对γCD的亲和力相对较低。选择厄贝沙坦进行进一步的制剂研发。该药物在pH 4.5时相对稳定,但在生理pH下稳定性稍差。然而,水性介质中γCD的存在增强了厄贝沙坦的化学稳定性。制备了含1%和2%(w/v)厄贝沙坦的基于γCD的水性滴眼剂配方,并研究了pH对粒径分布和药物释放的影响。在pH 4.5的配方中,只有约2%的药物溶解,但在pH 7的配方中高达45%。在pH 7的配方中,较大比例的药物溶解,其药物渗透通量略高,但药物渗透系数远低于pH 4.5的配方。动态光散射研究表明,更快的渗透是由于在存在吐温80的情况下形成了更小的颗粒。

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