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壳聚糖纳米粒口服递药系统传递富马酸替诺福韦二吡呋酯:制剂优化、表征及体外和体内评价其在大鼠体内的摄取机制。

Chitosan nanoparticles for the oral delivery of tenofovir disoproxil fumarate: formulation optimization, characterization and ex vivo and in vivo evaluation for uptake mechanism in rats.

机构信息

a Department of Pharmacy , BITS-Pilani, Hyderabad Campus , Jawaharnagar , India.

出版信息

Drug Dev Ind Pharm. 2018 Jul;44(7):1109-1119. doi: 10.1080/03639045.2018.1438459. Epub 2018 Feb 26.

Abstract

OBJECTIVE

Design chitosan based nanoparticles for tenofovir disoproxil fumarate (TDF) with the purpose of enhancing its oral absorption.

SIGNIFICANCE

TDF is a prodrug that has limited intestinal absorption because of its susceptibility to gut wall esterases. Hence, design of chitosan based polymeric novel nanocarrier systems can protect TDF from getting metabolized and also enhance the oral absorption.

METHODS

The nanoparticles were prepared using the ionic gelation technique. The factors impacting the particle size and entrapment efficiency of the nanoparticles were evaluated using design of experiments approach. The optimized nanoparticles were characterized and evaluated for their ability to protect TDF from esterase metabolism. The nanoparticles were then studied for the involvement of active transport in their uptake during the oral absorption process. Further, in vivo pharmacokinetic studies were carried out for the designed nanoparticles.

RESULTS

The application of design of experiments in the optimization process was useful to determine the critical parameters and evaluate their interaction effects. The optimized nanoparticles had a particle size of 156 ± 5 nm with an entrapment efficiency of 48.2 ± 1%. The nanoparticles were well characterized and provided metabolic protection for TDF in the presence of intestinal esterases. The nanoparticles were able to increase the AUC of tenofovir by 380%. The active uptake mechanisms mainly involving clathrin-mediated uptake played a key role in increasing the oral absorption of tenofovir.

CONCLUSIONS

These results show the ability of the designed chitosan based nanoparticles in enhancing the oral absorption of TDF along the oral route by utilizing the active endocytic uptake pathways.

摘要

目的

设计基于壳聚糖的纳米粒,用于将替诺福韦二吡呋酯(TDF)包封其中,以提高其口服吸收。

意义

TDF 是一种前药,由于其易被肠道壁酯酶代谢,肠道吸收有限。因此,设计基于壳聚糖的新型聚合物纳米载体系统可以保护 TDF 不被代谢,并增强其口服吸收。

方法

采用离子凝胶化技术制备纳米粒。采用实验设计方法考察影响纳米粒粒径和包封率的因素。对优化后的纳米粒进行表征,并评价其保护 TDF 免受酯酶代谢的能力。研究纳米粒在口服吸收过程中是否通过主动转运参与摄取。进一步,对设计的纳米粒进行体内药代动力学研究。

结果

实验设计在优化过程中的应用有助于确定关键参数并评价其相互作用效应。优化后的纳米粒粒径为 156±5nm,包封率为 48.2±1%。纳米粒具有良好的特征,在存在肠道酯酶的情况下,为 TDF 提供了代谢保护。纳米粒能够使替诺福韦的 AUC 增加 380%。主动摄取机制主要涉及网格蛋白介导的摄取,在增加替诺福韦的口服吸收方面发挥了关键作用。

结论

这些结果表明,设计的基于壳聚糖的纳米粒能够通过利用主动内吞摄取途径,增强 TDF 通过口服途径的口服吸收。

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