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制备聚合物纳米胶束凝胶的研究进展,该胶束凝胶是通过离子预胶凝和聚电解质复合作用形成的,作为马来酸噻吗洛尔的一种新型药物传递系统。

Development of polymeric nanoparticle gel prepared with the combination of ionic pre-gelation and polyelectrolyte complexation as a novel drug delivery of timolol maleate.

机构信息

Department of Pharmaceutics, Faculty of Pharmacy, Universitas Gadjah Mada, Yogyakarta, Indonesia.

Sekolah Tinggi Ilmu Farmasi (STIFAR) Riau, JalanKamboja, Tampan, Pekanbaru, Indonesia.

出版信息

Drug Dev Ind Pharm. 2020 Nov;46(11):1844-1852. doi: 10.1080/03639045.2020.1821053. Epub 2020 Sep 15.

DOI:10.1080/03639045.2020.1821053
PMID:32901561
Abstract

OBJECTIVE

The purpose of this study was to overcome the undesired systemic absorption of skin topical administration of timolol maleate (TM) by developing the TM nanoparticle gel.

METHODS

TM-loaded nanoparticle (TMNP) was prepared by ionic pre-gelation of pectin (PCN) and calcium ions (CI) followed with polyelectrolyte complex using chitosan (CHI). TMNP was characterized by measuring the particle size, polydispersity index, zeta potential, encapsulation efficiency (EE), and the interaction between formula constituents. TM-loaded nanoparticle gel (TMNG) was prepared by using hydroxypropyl methylcellulose (HPMC) and was characterized by measuring the spreadability, pH, viscosity, and drug content. The drug release kinetics were analyzed using DDSolver add-in program.

RESULTS

TMNP possessed particle size of 175.2 ± 19.7 nm, polydispersity index of 0.528 ± 0.113, zeta potential of -10.86 ± 0.87 mV, and EE of 27.45 ± 2.34%. The electrostatic interactions between PCN, CI, and CHI that formed the nanoparticles were confirmed by the result of vibrational spectroscopy analysis. TMNG possessed spreadability of 60.80 ± 1.38 cm, pH of 5.154 ± 0.004, viscosity of 269.07 ± 5.83 cP, and drug content of 107.38 ± 1.77%. TM showed a sustained release manner within 24 h by following Korsmeyer-Peppas kinetical model with non-Fickian release mechanism.

CONCLUSION

The prepared nanoparticle gel can be an effective controlled release system of TM that administered topically on the skin surface.

摘要

目的

本研究旨在通过开发马来酸噻吗洛尔纳米颗粒凝胶来克服马来酸噻吗洛尔(TM)经皮给药时不理想的全身吸收。

方法

采用果胶(PCN)和钙离子(CI)的离子预凝胶化,然后用壳聚糖(CHI)进行聚电解质复合,制备载 TM 的纳米颗粒(TMNP)。通过测量粒径、多分散指数、Zeta 电位、包封效率(EE)和配方成分之间的相互作用来表征 TMNP。通过使用羟丙基甲基纤维素(HPMC)制备载 TM 的纳米颗粒凝胶(TMNG),并通过测量铺展性、pH 值、粘度和药物含量来对其进行表征。使用 DDSolver 加载项程序分析药物释放动力学。

结果

TMNP 的粒径为 175.2±19.7nm,多分散指数为 0.528±0.113,Zeta 电位为-10.86±0.87mV,EE 为 27.45±2.34%。振动光谱分析结果证实了 PCN、CI 和 CHI 之间形成纳米颗粒的静电相互作用。TMNG 的铺展性为 60.80±1.38cm,pH 值为 5.154±0.004,粘度为 269.07±5.83cP,药物含量为 107.38±1.77%。TM 按照 Korsmeyer-Peppas 动力学模型以非 Fickian 释放机制在 24 小时内呈现持续释放方式。

结论

所制备的纳米颗粒凝胶可作为 TM 的有效控释系统,经皮施用于皮肤表面。

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