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格列美脲的透皮给药:一种使用纳米胶束包埋微针的新方法。

Transdermal Delivery of Glimepiride: A Novel Approach Using Nanomicelle-Embedded Microneedles.

作者信息

Pervez Sadia, Nasir Fazli, Hidayatullah Talaya, Khattak Muzna Ali, Alasmari Fawaz, Zainab Syeda Rabqa, Gohar Shazma, Tahir Arbab, Maryam Gul E

机构信息

Department of Pharmacy, University of Peshawar, Peshawar 25000, Pakistan.

Department of Pharmacology and Toxicology, College of Pharmacy, King Saud University, Riyadh 11451, Saudi Arabia.

出版信息

Pharmaceutics. 2023 Jul 26;15(8):2019. doi: 10.3390/pharmaceutics15082019.

Abstract

Glimepiride (GM) is a hydrophobic drug that dissolves slowly and yields inconsistent clinical responses after oral administration. Transdermal drug delivery (TDD) is an appropriate alternative to oral administration. Microneedles (MNs) offer a promising delivery system that penetrates the skin, while polymeric micelles can enhance the solubility; hence, the combination of both results in high drug bioavailability. This study aims to improve glimepiride's solubility, dissolution rate, and bioavailability by incorporating nanomicelles into MNs for TDD. The nanomicelles formulated with 10% Soluplus (SP) and 40% GM had a mean particle size of 82.6 ± 0.54, PDI of 0.1 ± 0.01, -16.2 ± 0.18 zeta potential, and achieved a 250-fold increase in solubility. The fabricated pyramid shaped GM-dissolving MNs were thermally stable and had no formulation incompatibility, as confirmed by thermal and FTIR analysis. The in vitro dissolution profile revealed that the GM release from nanomicelles and nanomicelle-loaded DMN was concentration-independent following non-Fickian transport mechanism. Improved pharmacokinetic parameters were obtained with dose of 240 µg as compared to 1 mg of GM oral tablet, in healthy human volunteers. The observed C, T and MRT were 1.56 μg/mL ± 0.06, 4 h, and 40.04 h ± 3.37, respectively. The safety profile assessment indicated that microneedles are safe with no adverse effects on skin or health. This study provides an alternative delivery system for the administration of glimepiride, resulting in improved bioavailability, enhanced patient compliance, and reduced dosing frequency.

摘要

格列美脲(GM)是一种疏水性药物,口服后溶解缓慢且临床反应不一致。经皮给药(TDD)是口服给药的一种合适替代方法。微针(MNs)提供了一种有前景的穿透皮肤的给药系统,而聚合物胶束可以提高溶解度;因此,两者结合可实现高药物生物利用度。本研究旨在通过将纳米胶束纳入用于经皮给药的微针中来提高格列美脲的溶解度、溶解速率和生物利用度。用10%的Solupuls(SP)和40%的GM配制的纳米胶束平均粒径为82.6±0.54,多分散指数(PDI)为0.1±0.01,ζ电位为-16.2±0.18,溶解度增加了250倍。经热分析和傅里叶变换红外光谱(FTIR)分析证实,制备的金字塔形格列美脲溶解微针热稳定性良好,且无制剂不相容性。体外溶出曲线显示,纳米胶束和载纳米胶束的微针中格列美脲的释放遵循非菲克转运机制,与浓度无关。在健康人类志愿者中,与1mg格列美脲口服片剂相比,240μg剂量的药物获得了改善的药代动力学参数。观察到的血药浓度(C)、达峰时间(T)和平均驻留时间(MRT)分别为1.56μg/mL±0.06、4小时和40.04小时±3.37。安全性评估表明,微针是安全的,对皮肤或健康无不良影响。本研究为格列美脲的给药提供了一种替代给药系统,提高了生物利用度,增强了患者顺应性,并减少了给药频率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32d9/10459310/8c8296f4944d/pharmaceutics-15-02019-g001.jpg

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