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首页> 外文期刊>International Journal of Pharmaceutics >Influence of penetration enhancer on drug permeation from volatile formulations
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Influence of penetration enhancer on drug permeation from volatile formulations

机译:渗透促进剂对挥发性制剂中药物渗透的影响

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摘要

Previously we have reported the influence of supersaturation on the permeation of fentanyl across model membranes and skin. The findings indicated that the vehicle and, specifically its residence time in skin, influence the ability of the formulation to enhance membrane drug permeation. The aim of the present study was to probe the role of vehicle components on (trans)dermal drug delivery in more detail. To this end, three commonly used chemical penetration enhancers were selected for investigation namely, propylene glycol (PG), octyl salicylate (OSAL) and isopropyl myristate (IPM). A further objective was to clarify the mechanism of action of OSAL. Model spray formulations were prepared consisting of 10% (v/v) of individual enhancers in ethanol. Saturated and supersaturated systems were evaluated for their ability to promote fentanyl transport across human skin in vitro. Mass balance studies and determination of the extent of uptake of enhancers by skin were also conducted. The results indicated that increasing the degree of drug saturation (DS) does not promote drug permeation for formulations in PG but increasing drug DS did promote drug permeation for IPM and some OSAL systems. This probably reflects faster depletion of PG compared with IPM and OSAL. Non-linear modelling of the permeation data indicated that PG and IPM act to promote drug solubility in the membrane whereas OSAL appears to act as a skin penetration enhancer by increasing drug diffusivity in the skin.
机译:以前我们已经报道过饱和度对芬太尼在模型膜和皮肤上的渗透的影响。该发现表明,媒介物,特别是其在皮肤中的停留时间,影响制剂增强膜药物渗透的能力。本研究的目的是更详细地探讨媒介物成分在(经)皮药物输送中的作用。为此,选择了三种常用的化学渗透促进剂进行研究,即丙二醇(PG),水杨酸辛酯(OSAL)和肉豆蔻酸异丙酯(IPM)。另一个目标是阐明OSAL的作用机制。制备了由10%(v / v)的单个增强剂的乙醇溶液组成的模型喷雾剂。评价了饱和和过饱和系统在体外促进人体内芬太尼转运的能力。还进行了质量平衡研究,并确定了皮肤吸收增强剂的程度。结果表明,增加药物饱和度(DS)不会促进PG中制剂的药物渗透,但是增加药物DS确实会促进IPM和某些OSAL系统的药物渗透。与IPM和OSAL相比,这可能反映了PG的更快耗尽。渗透数据的非线性建模表明,PG和IPM起到促进药物在膜中溶解的作用,而OSAL似乎通过增加药物在皮肤中的扩散性而充当皮肤渗透促进剂。

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