角质层
拉曼光谱
共焦
化学
离体
透皮
渗透剂(生化)
生物利用度
拉曼显微镜
人体皮肤
共焦显微镜
生物物理学
拉曼散射
药理学
体外
病理
生物化学
光学
医学
物理
生物
有机化学
遗传学
作者
Panagiota Zarmpi,Maria Alice Maciel Tabosa,Pauline Vitry,Annette L. Bunge,Natalie A. Belsey,Dimitrios Tsikritsis,Timothy J. Woodman,M. Begoña Delgado‐Charro,Richard H. Guy
标识
DOI:10.1021/acs.molpharmaceut.3c00755
摘要
Confocal Raman spectroscopy is being assessed as a tool with which to quantify the rate and extent of drug uptake to and its clearance from target sites of action within the viable epidermis below the skin's stratum corneum (SC) barrier. The objective of this research was to confirm that Raman can interrogate drug disposition within the living layers of the skin (where many topical drugs elicit their pharmacological effects) and to identify procedures by which Raman signal attenuation with increasing skin depth may be corrected and normalized so that metrics descriptive of topical bioavailability may be identified. It was first shown in experiments on skin cross-sections parallel to the skin surface that the amide I signal, originating primarily from keratin, was quite constant with depth into the skin and could be used to correct for signal attenuation when confocal Raman data were acquired in a "top-down" fashion. Then, using 4-cyanophenol (CP) as a model skin penetrant with a strong Raman-active C≡N functionality, a series of uptake and clearance experiments, performed as a function of time, demonstrated clearly that normalized spectroscopic data were able to detect the penetrant to at least 40–80 μm into the skin and to distinguish the disposition of CP from different vehicles. Metrics related to local bioavailability (and potentially bioequivalence) included areas under the normalized C≡N signal versus depth profiles and elimination rate constants deduced post-removal of the formulations. Finally, Raman measurements were made with an approved dermatological drug, crisaborole, for which delivery from a fully saturated formulation into the skin layers just below the SC was detectable.
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