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一种基于脂质体包裹蒙脱石的新型离子交换载体,用于盐酸倍他洛尔的眼部递送。

A novel ion-exchange carrier based upon liposome-encapsulated montmorillonite for ophthalmic delivery of betaxolol hydrochloride.

作者信息

Huang Yi, Tao Qi, Hou Dongzhi, Hu Sheng, Tian Shuangyan, Chen Yanzhong, Gui Ruyi, Yang Lingling, Wang Yao

机构信息

College of Pharmacy, Guangdong Pharmaceutical University.

Key Laboratory of Mineralogy and Metallogeny, Chinese Academy of Sciences, Guangdong Provincial Key Laboratory of Mineral Physics and Materials.

出版信息

Int J Nanomedicine. 2017 Mar 2;12:1731-1745. doi: 10.2147/IJN.S122747. eCollection 2017.

Abstract

As a novel ion-exchange carrier with high surface area and excellent exchangeability, montmorillonite (Mt) was intercalated with betaxolol hydrochloride (BH) to form a nanocomposite and then encapsulated by liposomes (Mt-BH-LPs) for an ophthalmic drug-delivery system. The Mt-BH and Mt-BH-LPs were prepared by an acidification process and ethanol injection combined with ammonium sulfate gradient methods. The successful formation of Mt-BH and Mt-BH-LPs was verified by thermogravimetric analysis, X-ray diffraction, Fourier-transform infrared spectra, and transmission electron microscopy. Mt-BH-LPs possessed the favorable physical characteristics of encapsulation efficiency, drug loading, mean particle size, and ζ-potential. In vitro release studies indicated Mt-BH-LPs effectively maintained a relatively sustained slow release. Immortalized human corneal epithelial cell cytotoxicity, in vivo rabbit eye-irritation tests, and chorioallantoic membrane-trypan blue staining all revealed that Mt-BH-LPs had no obvious irritation on ocular tissues. A new in vitro tear-turnover model, including inserts containing human corneal epithelial cells, was designed to evaluate the precorneal retention time of Mt-BH-LPs. The results showed that Mt-BH-LPs maintained a certain BH concentration in tear fluid for a longer period than the BH solution. In vivo precorneal retention studies also indicated Mt-BH-LPs prolonged drug retention on the ocular surface more than the BH solution. Furthermore, pharmacodynamic studies showed that Mt-BH-LPs had a prolonged effect on decreasing intraocular optical pressure in rabbits. Our results demonstrated that Mt-BH-LPs have potential as an ophthalmic delivery system.

摘要

作为一种具有高比表面积和优异交换性的新型离子交换载体,蒙脱石(Mt)与盐酸倍他洛尔(BH)插层形成纳米复合材料,然后用脂质体包裹形成用于眼科药物递送系统的Mt-BH-LPs。通过酸化法、乙醇注入法结合硫酸铵梯度法制备了Mt-BH和Mt-BH-LPs。通过热重分析、X射线衍射、傅里叶变换红外光谱和透射电子显微镜验证了Mt-BH和Mt-BH-LPs的成功形成。Mt-BH-LPs具有包封率、载药量、平均粒径和ζ电位等良好的物理特性。体外释放研究表明,Mt-BH-LPs有效地维持了相对持续的缓慢释放。永生化人角膜上皮细胞细胞毒性、体内兔眼刺激性试验和绒毛尿囊膜台盼蓝染色均显示,Mt-BH-LPs对眼组织无明显刺激。设计了一种新的体外泪液周转模型,包括含有人类角膜上皮细胞的插入物,以评估Mt-BH-LPs在角膜前的滞留时间。结果表明,Mt-BH-LPs在泪液中维持一定的BH浓度的时间比BH溶液更长。体内角膜前滞留研究还表明,Mt-BH-LPs比BH溶液更能延长药物在眼表的滞留时间。此外,药效学研究表明,Mt-BH-LPs对降低兔眼内压有延长作用。我们的结果表明,Mt-BH-LPs有潜力作为一种眼科递送系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2c4/5340245/474a6eb1888c/ijn-12-1731Fig1.jpg

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