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用于增强膜转运的利多卡因-薄荷醇二元体系的物理化学研究。

Physicochemical studies of lidocaine-menthol binary systems for enhanced membrane transport.

作者信息

Kang L, Jun H W, McCall J W

机构信息

Department of Pharmaceutical and Biomedical Sciences, College of Pharmacy, The University of Georgia, Athens, GA 30602, USA.

出版信息

Int J Pharm. 2000 Sep 25;206(1-2):35-42. doi: 10.1016/s0378-5173(00)00505-6.

Abstract

The melting properties of lidocaine and l-menthol binary systems were studied using differential scanning calorimetry (DSC). A eutectic mixture was obtained for the lidocaine:menthol ratio of 30:70 (w:w) with a eutectic point of 26 degrees C. The binary melt systems formed within a range of 30:70-50:50 (w:w) remained as homogeneous oils at ambient temperature. The solubilities of pure lidocaine and lidocaine from the binary melt systems were determined with and without propylene glycol in pH 8.0 phosphate buffer. Lidocaine from the melt systems was less soluble in the buffers due to the partition of lidocaine between the oil and aqueous phases. The addition of propylene glycol to the buffer significantly increased both the solubility and heat of solubilization of lidocaine. The permeation rates of lidocaine from the binary melt systems across shed snake-skin were concentration dependent and significantly higher than those from the reference solutions.

摘要

使用差示扫描量热法(DSC)研究了利多卡因和L-薄荷醇二元体系的熔化特性。对于利多卡因与薄荷醇比例为30:70(重量比)的体系,获得了一种共晶混合物,其共晶点为26℃。在30:70 - 50:50(重量比)范围内形成的二元熔体体系在环境温度下保持为均匀的油状物。在pH 8.0的磷酸盐缓冲液中,测定了纯利多卡因以及二元熔体体系中利多卡因在有无丙二醇存在下的溶解度。由于利多卡因在油相和水相之间的分配,熔体体系中的利多卡因在缓冲液中的溶解度较低。向缓冲液中添加丙二醇显著增加了利多卡因的溶解度和溶解热。二元熔体体系中的利多卡因透过蛇蜕的渗透速率与浓度有关,且显著高于参考溶液中的渗透速率。

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