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利多卡因通过转化为离子液体,自我牺牲式地提高了酸性且水溶性差的药物依托度酸的皮肤渗透性。

Lidocaine self-sacrificially improves the skin permeation of the acidic and poorly water-soluble drug etodolac via its transformation into an ionic liquid.

作者信息

Miwa Yasushi, Hamamoto Hidetoshi, Ishida Tatsuhiro

机构信息

MEDRx Co., Ltd, 431-7 Nishiyama, Higashikagawa-city, Kagawa 769-2712, Japan.

Institute of Biomedical Sciences, Tokushima University, 1-78-1 Sho-machi, Tokushima 770-8505, Japan.

出版信息

Eur J Pharm Biopharm. 2016 May;102:92-100. doi: 10.1016/j.ejpb.2016.03.003. Epub 2016 Mar 2.

Abstract

Poor transdermal penetration of active pharmaceutical ingredients (APIs) impairs both bioavailability and therapeutic benefits and is a major challenge in the development of transdermal drug delivery systems. Here, we transformed a poorly water-soluble drug, etodolac, into an ionic liquid in order to improve its hydrophobicity, hydrophilicity and skin permeability. The ionic liquid was prepared by mixing etodolac with lidocaine (1:1, mol/mol). Both the free drug and the transformed ionic liquid were characterized by differential scanning colorimetry (DSC), infrared spectroscopy (IR), and saturation concentration measurements. In addition, in vitro skin-permeation testing was carried out via an ionic liquid-containing patch (Etoreat patch). The lidocaine and etodolac in ionic liquid form led to a relatively lower melting point than either lidocaine or etodolac alone, and this improved the lipophilicity/hydrophilicity of etodolac. In vitro skin-permeation testing demonstrated that the Etoreat patch significantly increased the skin permeation of etodolac (9.3-fold) compared with an etodolac alone patch, although an Etoreat patch did not increase the skin permeation of lidocaine, which was consistent with the results when using a lidocaine alone patch. Lidocaine appeared to self-sacrificially improve the skin permeation of etodolac via its transformation into an ionic liquid. The data suggest that ionic liquids composed of approved drugs may substantially expand the formulation preparation method to meet the challenges of drugs which are characterized by poor rates of transdermal absorption.

摘要

活性药物成分(APIs)经皮渗透性差会损害生物利用度和治疗效果,这是经皮给药系统开发中的一个重大挑战。在此,我们将一种水溶性差的药物依托度酸转化为离子液体,以改善其疏水性、亲水性和皮肤渗透性。该离子液体通过将依托度酸与利多卡因(1:1,摩尔/摩尔)混合制备。游离药物和转化后的离子液体均通过差示扫描量热法(DSC)、红外光谱法(IR)和饱和浓度测量进行表征。此外,通过含离子液体的贴剂(Etoreat贴剂)进行体外皮肤渗透测试。离子液体形式的利多卡因和依托度酸的熔点比单独的利多卡因或依托度酸相对更低,这改善了依托度酸的亲脂性/亲水性。体外皮肤渗透测试表明,与单独的依托度酸贴剂相比,Etoreat贴剂显著提高了依托度酸的皮肤渗透率(9.3倍),尽管Etoreat贴剂并未提高利多卡因的皮肤渗透率,这与单独使用利多卡因贴剂时的结果一致。利多卡因似乎通过转化为离子液体而自我牺牲地提高了依托度酸的皮肤渗透率。数据表明,由已批准药物组成的离子液体可能会大幅扩展制剂制备方法,以应对经皮吸收速率较差的药物所带来的挑战。

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