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通过体内共聚焦拉曼光谱研究渗透促进剂通过角质层递送视黄醇的有效性。

Studying the effectiveness of penetration enhancers to deliver retinol through the stratum cornum by in vivo confocal Raman spectroscopy.

作者信息

Mélot Mickaël, Pudney Paul D A, Williamson Ann-Marie, Caspers Peter J, Van Der Pol Andre, Puppels Gerwin J

机构信息

Measurement Science Unit and Corporate Research, Unilever R&D, Colworth Science Park, Sharnbrook, Bedford, MK44 1LQ, United Kingdom.

出版信息

J Control Release. 2009 Aug 19;138(1):32-9. doi: 10.1016/j.jconrel.2009.04.023. Epub 2009 May 4.

Abstract

The purpose of this study is to monitor in vivo the effect of chemical penetration enhancers on the delivery of trans-retinol into human skin. Chemical penetration enhancers reversibly alter barrier properties of the SC by disruption of the membrane structures or maximising drug solubility with the skin. So far, most of permeation or penetration experiments are performed in vitro. Raman spectroscopy is uniquely placed to be able to measure biological processes in vivo and this paper shows for the first time that the effect of penetration enhancer on the delivery of trans-retinol can successfully be measured in vivo using this technique. Here, the volar forearm of volunteers was treated with four formulations. One formulation is a highly effective model delivery system identified from ex vivo experiments: trans-retinol in Propylene Glycol (PG)/ethanol, with PG being a well-known and efficient penetration enhancer. The other three formulations are based on 0.3% trans-retinol in Caprylic/Capric Acid Triglyceride (MYRITOL 318), an oil commonly used in skin creams but in two of them a specific penetration enhancer is added. One contains a lipid extractor, Triton X 100, whereas another formulation contains a lipid fluidiser, Oleic Acid. Solutions were applied once and measurements were performed up to 6 h after treatment. Remarkable differences in the delivery of trans-retinol between formulation with or without penetration enhancer can clearly be seen. Moreover, the type of penetration enhancer is also shown to influence the delivery. While using the Oleic Acid, which is a lipid fluidiser, a better delivery of trans-retinol in the skin can be detected. For the first time, the effect of penetration enhancer on the delivery of trans-retinol has been monitored, non invasively in vivo, with time.

摘要

本研究的目的是在体内监测化学渗透促进剂对反式视黄醇透皮递送的影响。化学渗透促进剂通过破坏膜结构或使药物在皮肤中的溶解度最大化来可逆地改变角质层的屏障特性。到目前为止,大多数渗透或穿透实验都是在体外进行的。拉曼光谱在测量体内生物过程方面具有独特优势,本文首次表明使用该技术能够在体内成功测量渗透促进剂对反式视黄醇递送的影响。在此,用四种制剂处理志愿者的掌侧前臂。一种制剂是从离体实验中鉴定出的高效模型递送系统:丙二醇(PG)/乙醇中的反式视黄醇,其中PG是一种广为人知且有效的渗透促进剂。另外三种制剂基于辛酸/癸酸甘油三酯(MYRITOL 318)中0.3%的反式视黄醇,MYRITOL 318是一种常用于护肤霜的油,但其中两种添加了特定的渗透促进剂。一种含有脂质提取剂吐温80,而另一种制剂含有脂质流化剂油酸。溶液仅涂抹一次,并在处理后长达6小时进行测量。有无渗透促进剂的制剂在反式视黄醇递送方面的显著差异清晰可见。此外,渗透促进剂的类型也显示出会影响递送。使用作为脂质流化剂的油酸时,可以检测到反式视黄醇在皮肤中的递送效果更好。首次在体内对渗透促进剂对反式视黄醇递送的影响进行了无创且随时间的监测。

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