Faculty of Chemistry, Bu-Ali Sina University, Hamedan, Iran.
Faculty of Chemistry, Bu-Ali Sina University, Hamedan, Iran; Autophagy Research Center, Shiraz University of Medical Sciences, Shiraz, Iran.
J Pharm Sci. 2023 Aug;112(8):2249-2259. doi: 10.1016/j.xphs.2023.03.005. Epub 2023 Mar 14.
A serious challenge in transdermal iontophoresis (IP) delivery of insulin (INS) is the low permeability of the drug across the skin. In this paper, we introduced deep eutectic solvent (DESs) as novel chemical penetration enhancers (CPEs) for transdermal IP of INS across rat skin, both in vitro and in vivo. Three different DESs based on choline chloride (ChCl), namely, ChCl/UR (ChCl and urea), ChCl/GLY (ChCl and glycerol), and ChCl/EG (ChCl and ethylene glycol) in the 1:2 molar ratios have been prepared. To evaluate the capability of studied DESs as CPEs for IP delivery of INS, the rat skin sample was treated with each DES. The effects of different experimental parameters (current density, formulation pH, INS concentration, NaCl concentration, and treatment time) on the in vitro transdermal iontophoretic delivery of INS were investigated. The in vitro permeation studies exhibited that INS was easily delivered employing ChCl/EG, and ChCl/GLY treatments, compared with ChCl/UR: the cumulative amount of permeated INS at the end of the experiment (Q) was found to be 131.0, 89.4, and 29.6 µg cm in the presence of ChCl/EG, ChCl/GLY, and ChCl/UR, respectively. The differences in Q values of INS are due to the different capabilities of the studied DESs to treat the epidermis layer of skin. In vivo experiments revealed that the blood glucose level in diabetic rats could be decreased using ChCl/EG, and ChCl/GLY as novel CPEs in the IP delivery of INS. The presented work will open new doors towards searching for novel CPEs in the development of transdermal IP of INS.
经皮离子电渗(IP)递药胰岛素(INS)的一个严重挑战是药物经皮渗透低。在本文中,我们介绍了深共晶溶剂(DESs)作为新型化学渗透增强剂(CPEs)用于 INS 经皮 IP 递药,进行了体外和体内研究。基于氯化胆碱(ChCl)制备了三种不同的 DESs,即 ChCl/UR(ChCl 和尿素)、ChCl/GLY(ChCl 和甘油)和 ChCl/EG(ChCl 和乙二醇),摩尔比为 1:2。为了评估研究的 DESs 作为 INS IP 递药 CPEs 的能力,用每种 DES 处理大鼠皮肤样本。考察了不同实验参数(电流密度、制剂 pH 值、INS 浓度、NaCl 浓度和处理时间)对 INS 经皮 IP 传递的影响。体外渗透研究表明,与 ChCl/UR 相比,INS 经 ChCl/EG 和 ChCl/GLY 处理更容易递药:实验结束时累积渗透 INS 量(Q)分别为 131.0、89.4 和 29.6µg cm-2。INS 的 Q 值差异归因于研究的 DESs 处理皮肤表皮层的不同能力。体内实验表明,ChCl/EG 和 ChCl/GLY 作为新型 CPEs 可用于 INS 的经皮 IP 递药,降低糖尿病大鼠的血糖水平。该工作将为 INS 经皮 IP 递药中寻找新型 CPEs 开辟新途径。