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促进萜类化合物对法莫替丁皮肤渗透的作用

Promoting Activity of Terpenes on Skin Permeation of Famotidine.

作者信息

Xu Qihui, Wu Yifan, Saito Hiroki, Ofuchi Yuki, Setoyama Haruna, Furuishi Takayuki, Fukuzawa Kaori, Yonemochi Etsuo, Obata Yasuko

机构信息

School of Pharmacy and Pharmaceutical Sciences, Hoshi University.

Graduate School of Pharmaceutical Science, Osaka University.

出版信息

Chem Pharm Bull (Tokyo). 2023;71(2):111-119. doi: 10.1248/cpb.c22-00568.

Abstract

Famotidine (FMT) is a competitive histamine-2 (H2) receptor antagonist that inhibits gastric acid secretion for the treatment of Gastroesophageal reflux disease. To study the promoting effect and mechanism of terpenes, including l-menthol, borneol, and geraniol, as chemical enhancers, FMT was used as a model drug. Attenuated total reflectance-Fourier transform IR spectroscopy (ATR-FTIR) and differential scanning calorimetry (DSC) were used to explore the effects of terpenes on the skin. Hairless mouse skin was mounted on Franz-type diffusion cell, and skin permeation experiment of FMT hydrogel was carried out. The results suggested that the thermodynamic activity influenced the permeability of the drug, and the main mechanism of terpenes to enhance skin permeation of the drug was based on increasing the fluidity of the intercellular lipids. Moreover, it was revealed that l-menthol simultaneously relaxed the packing structure and lamellar structure, whereas geraniol had a great influence on the lamellar structure only. Collectively, all terpenes had a promoting effect on skin permeation of FMT, indicating their potential as chemical enhancers to change the microstructure of stratum corneum and improve the permeation of FMT through the skin, and it has great potential to be used in transdermal formulations of FMT.

摘要

法莫替丁(FMT)是一种竞争性组胺-2(H2)受体拮抗剂,可抑制胃酸分泌,用于治疗胃食管反流病。为了研究包括L-薄荷醇、冰片和香叶醇在内的萜类化合物作为化学促进剂的促进作用及机制,将FMT用作模型药物。采用衰减全反射傅里叶变换红外光谱(ATR-FTIR)和差示扫描量热法(DSC)来探究萜类化合物对皮肤的影响。将无毛小鼠皮肤安装在Franz型扩散池上,进行FMT水凝胶的皮肤渗透实验。结果表明,热力学活性影响药物的渗透性,萜类化合物增强药物皮肤渗透的主要机制是基于增加细胞间脂质的流动性。此外,研究发现L-薄荷醇同时使堆积结构和层状结构松弛,而香叶醇仅对层状结构有很大影响。总体而言,所有萜类化合物均对FMT的皮肤渗透有促进作用,表明它们作为化学促进剂具有改变角质层微观结构并改善FMT经皮渗透的潜力,在FMT透皮制剂中具有很大的应用潜力。

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