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首页> 外文期刊>International Journal of Nanomedicine >A novel ion-exchange carrier based upon liposome-encapsulated montmorillonite for ophthalmic delivery of betaxolol hydrochloride
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A novel ion-exchange carrier based upon liposome-encapsulated montmorillonite for ophthalmic delivery of betaxolol hydrochloride

机译:一种新型的基于脂质体包裹的蒙脱土的离子交换载体,用于眼科盐酸倍他洛尔的眼药水输送

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摘要

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.
机译:作为一种具有高表面积和出色交换性的新型离子交换载体,将蒙脱石(Mt)与盐酸倍他洛尔(BH)插入形成纳米复合材料,然后用脂质体(Mt-BH-LPs)封装以用于眼科药物输送系统。 Mt-BH和Mt-BH-LPs是通过酸化过程和乙醇注射与硫酸铵梯度法相结合制备的。通过热重分析,X射线衍射,傅立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具有良好的包封效率,载药量,平均粒径和ζ电位等物理特性。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。永生化的人类角膜上皮细胞细胞毒性,体内兔眼刺激试验以及绒膜尿囊膜-锥虫蓝染色均显示Mt-BH-LPs对眼组织无明显刺激性。设计了一种新的体外泪液翻转模型,包括含有人角膜上皮细胞的插入物,以评估Mt-BH-LPs在角膜前的保留时间。结果表明,与BH溶液相比,Mt-BH-LPs在泪液中维持一定的BH浓度的时间更长。体内角膜前滞留研究还表明,与BH溶液相比,Mt-BH-LPs在眼表的保留时间更长。此外,药效学研究表明,Mt-BH-LPs对降低兔眼内光压具有延长的作用。我们的结果表明,Mt-BH-LPs具有作为眼科给药系统的潜力。

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