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首页> 外文期刊>Biological & pharmaceutical bulletin >In vitro skin permeation of morphine hydrochloride during the finite application of penetration-enhancing system containing water, ethanol and l-menthol.
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In vitro skin permeation of morphine hydrochloride during the finite application of penetration-enhancing system containing water, ethanol and l-menthol.

机译:在水,乙醇和l-薄荷醇等渗透促进体系的有限应用中,盐酸吗啡的体外皮肤渗透作用。

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摘要

The effects of composition of applied solutions, containing water, ethanol (EtOH) and l-menthol (LM) as penetration enhancers, on the in vitro permeation of morphine hydrochloride (MPH) through excised hairless rat skin were examined in finite application experiments. Three of the five different applied solutions contained almost saturated LM and two contained levels of LM below the limit of solubility. Despite similar pseudo steady-state fluxes (maximum fluxes observed) of MPH from the solutions, lag time for the permeation of MPH from the saturated systems was shorter than that from the unsaturated systems. Lag times for the permeation of EtOH and LM from the saturated systems were also shorter than those from the unsaturated systems. Thermodynamic activity of LM is important for the enhancing effect against MPH permeation. At the beginning for the permeation experiment, the activity of LM in the unsaturated systems was lower than that in the saturated solutions. As the skin permeability of EtOH was higher than that of other components, the content of EtOH in the applied solution gradually decreased with time, while the activity of LM increased eventually showing a sufficient enhancing effect. Solvent drag effect was not important for the permeation of MPH, since penetration rate of MPH was independent of the time course of that of EtOH. The amount of LM migrating into skin appeared to be the most important parameter for the penetration-enhancing effect of the mixed system in the in vitro permeation of MPH through excised hairless rat skin.
机译:在有限的应用实验中,研究了含有水,乙醇(EtOH)和l-薄荷醇(LM)作为渗透促进剂的施药溶液组成对盐酸吗啡(MPH)在离体无毛大鼠皮肤上的体外渗透的影响。五个不同应用溶液中的三个包含几乎饱和的LM,两个包含低于溶解度极限的LM。尽管从溶液中得到的MPH的假稳态通量类似(观察到最大通量),但从饱和系统中渗透MPH的滞后时间却比从不饱和系统中渗透的滞后时间短。饱和体系中EtOH和LM渗透的滞后时间也比不饱和体系中的滞后时间短。 LM的热力学活性对于增强对MPH渗透的作用是重要的。在渗透实验开始时,LM在不饱和体系中的活性要低于饱和溶液。当EtOH的皮肤渗透性高于其他组分时,施用溶液中EtOH的含量随时间逐渐降低,而LM的活性最终显示出足够的增强作用。溶剂的拖曳效应对于MPH的渗透并不重要,因为MPH的渗透速率与EtOH的渗透时间无关。 LM迁移到皮肤中的数量似乎是混合系统在经切除的无毛大鼠皮肤的MPH体外渗透中增强渗透力的最重要参数。

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