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壳聚糖-麒麟菜胶纳米粒包封增强甘草酸的抗炎活性。

Enhancement of anti-inflammatory activity of glycyrrhizic acid by encapsulation in chitosan-katira gum nanoparticles.

机构信息

Department of Bio & Nano Technology, Guru Jambheshwar University of Science & Technology, Hisar, Haryana 125001, India.

Department of Pharmaceutical Sciences, Guru Jambheshwar University of Science & Technology, Hisar 125001, India.

出版信息

Eur J Pharm Biopharm. 2016 Aug;105:141-7. doi: 10.1016/j.ejpb.2016.06.003. Epub 2016 Jun 7.

Abstract

Efforts were made to improve the bioavailability and efficacy of Glycyrrhizic acid, a triterpentine saponin obtained from Glycyrrhiza glabra, having several pharmacological properties, by its encapsulation in biocompatible biopolymeric nanoparticles. Polycationic chitosan and polyanionic gum katira were used to prepare nanoparticles by ionic complexation method. Glycyrrhizic acid was loaded into the nanoparticles and was then examined for change in its in vivo anti-inflammatory activity against carrageenan-induced rat hind paw inflammation. The effects of concentrations of glycyrrhizic acid, chitosan and katira gum, upon particle size and encapsulation efficiency of glycyrrhizic acid were studied with the help of response surface methodology employing 3-factor, 3-level central composite experimental design. Particle size and encapsulation efficiency of optimized nanoparticulate formulation were 175.8nm and 84.77%, respectively. Particles were observed in transmission electron microscopy to be spherical in shape and 80nm in size. FTIR analysis indicated electrostatic interactions between carboxyl groups of ammonium glycyrrhizinate and amino groups of chitosan. In vitro drug release studies indicated that glycyrrhizic acid was released from the nanoparticles following zero-order kinetics and that there was a sustained release of the drug with 90.71% of it being released over a 12h period, and that the mechanism of release of glycyrrhizic acid from the nanoparticles was a combination of diffusion and erosion of the polymer matrix. In-vivo anti inflammatory efficacy of glycyrrhizic acid clearly improved upon encapsulation in chitosan-katira gum nanoparticles, by overcoming the limited bioavailability of its other forms.

摘要

为了提高甘草酸(一种从甘草中提取的三萜皂苷,具有多种药理作用)的生物利用度和疗效,研究人员将其包封于生物相容性的生物聚合物纳米粒子中。采用离子络合法,使用阳离子壳聚糖和阴离子瓜尔胶来制备纳米粒子。将甘草酸载入纳米粒子中,然后考察其对卡拉胶诱导的大鼠后爪炎症的体内抗炎活性的变化。借助 3 因素 3 水平的中心组合实验设计的响应面法,研究了甘草酸浓度、壳聚糖和瓜尔胶浓度对载药纳米粒子的粒径和包封效率的影响。优化的纳米粒制剂的粒径和包封效率分别为 175.8nm 和 84.77%。透射电子显微镜观察到粒子呈球形,粒径为 80nm。傅里叶变换红外光谱分析表明,铵盐甘草酸的羧基基团与壳聚糖的氨基基团之间存在静电相互作用。体外药物释放研究表明,甘草酸从纳米粒子中以零级动力学释放,药物的释放具有持续性,在 12 小时内释放了 90.71%的药物,并且甘草酸从纳米粒子中的释放机制是扩散和聚合物基质侵蚀的结合。将甘草酸包封于壳聚糖-瓜尔胶纳米粒子中后,其体内抗炎疗效明显提高,克服了其其他形式生物利用度有限的问题。

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