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通过二甘醇单乙醚介导的微乳液辅助微针改善乌头碱的生物安全性和透皮递送

Improved Biosafety and Transdermal Delivery of Aconitine via Diethylene Glycol Monoethyl Ether-Mediated Microemulsion Assisted with Microneedles.

作者信息

Zhang Yongtai, Hu Hongmei, Jing Qian, Wang Zhi, He Zehui, Wu Tong, Feng Nian-Ping

机构信息

Department of Pharmaceutical Sciences, Shanghai University of Traditional Chinese Medicine, Shanghai 201203, China.

出版信息

Pharmaceutics. 2020 Feb 17;12(2):163. doi: 10.3390/pharmaceutics12020163.

Abstract

In the current study, diethylene glycol monoethyl ether-mediated microemulsions were combined with microneedles for enhanced transdermal aconitine delivery. The oil-in-water microemulsion increasedaconitine solubility and enhanced transdermal drug delivery and assistance with metal microneedles enhanced permeation of the aconitine-loaded microemulsion. Carried by the microemulsion, the in vitro permeability of aconitine was significantly enhanced, and further improved using microneedles. In vivo microdialysis revealed that the subcutaneous local drug concentration reached a high level within 30 min and remained relatively consistent to the end of the experimental period. AUC of the microemulsion group was significantly higher than that of the aqueous solution group, and the microemulsion combined with microneedles group achieved the highest AUC among the tested groups. The microemulsion and microdialysis probe also showed good biocompatibility with skin tissue. The microemulsion could be internalized by HaCaT and CCC-ESF-1 cells via lysosomes. The in vitro cytotoxicity of aconitine toward skin cells was reduced via encapsulation by microemulsion, and the prepared microemulsion developed no skin irritation. Hence, transdermal aconitine delivery and drug biosafety were effectively improved by loading into the microemulsion and assisting with microneedles, and in vivo microdialysis technique is suitable for realtime monitoring of transdermal drug delivery with microemulsion-based drug vehicles.

摘要

在本研究中,将二乙二醇单乙醚介导的微乳与微针相结合,以增强乌头碱的经皮递送。水包油型微乳提高了乌头碱的溶解度,增强了经皮给药,而金属微针的辅助作用增强了载乌头碱微乳的渗透。在微乳的携带下,乌头碱的体外渗透率显著提高,使用微针进一步改善。体内微透析显示,皮下局部药物浓度在30分钟内达到高水平,并在实验期结束时保持相对稳定。微乳组的AUC显著高于水溶液组,微乳与微针联合组在测试组中AUC最高。微乳和微透析探针与皮肤组织也显示出良好的生物相容性。微乳可通过溶酶体被HaCaT和CCC-ESF-1细胞内化。微乳包封降低了乌头碱对皮肤细胞的体外细胞毒性,且所制备的微乳未产生皮肤刺激性。因此,通过负载到微乳中并辅以微针,有效提高了乌头碱的经皮递送和药物生物安全性,体内微透析技术适用于基于微乳的药物载体经皮给药的实时监测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cddc/7076442/678f9c296a36/pharmaceutics-12-00163-g001.jpg

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