氢化可的松在合成膜、小鼠皮肤和表皮培养皮肤中的扩散。

John Mark Christensen, Monica Chang Chuong, Hang Le, Loan Pham, Ehab Bendas
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引用次数: 29

摘要

目的:研究六种外用非处方产品中的氢化可的松(HC)和一种处方乳膏通过培养的正常人源性表皮角质形成细胞(Epiderm™)、小鼠皮肤和合成尼龙膜的渗透,并利用直立弗朗茨细胞(立式Franz Cell)研究预洗对皮肤的补水效果。方法与结果:HC通过表皮、小鼠皮肤和合成膜的通透性在7种产品中最高,分别为198±32µg/cm(2)、746.32±12.43µg/cm(2)和1882±395.18µg/cm(2)。预洗保湿皮肤增强HC穿透表皮™和小鼠皮肤。预洗凝胶经表皮和小鼠皮肤的24小时HC释放量分别为198.495±32µg/cm(2)和746.32±12.43µg/cm(2);未预洗凝胶经表皮和小鼠皮肤的24小时HC释放量分别为67.2±7.41µg/cm(2)和653.43±85.62µg/cm(2)。HC通过合成膜的穿透力是通过小鼠皮肤和表皮的十倍。一般来说,每个商业产品的HC通过每个膜的扩散形状、模式和等级顺序是相似的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Hydrocortisone Diffusion Through Synthetic Membrane, Mouse Skin, and Epiderm™ Cultured Skin.

Hydrocortisone Diffusion Through Synthetic Membrane, Mouse Skin, and Epiderm™ Cultured Skin.

Hydrocortisone Diffusion Through Synthetic Membrane, Mouse Skin, and Epiderm™ Cultured Skin.

Hydrocortisone Diffusion Through Synthetic Membrane, Mouse Skin, and Epiderm™ Cultured Skin.

OBJECTIVES: The penetration of hydrocortisone (HC) from six topical over-the-counter products along with one prescription cream through cultured normal human-derived epidermal keratinocytes (Epiderm™), mouse skin and synthetic nylon membrane was performed as well as the effect hydrating the skin by pre-washing was explored using the Upright Franz Cell. METHOD AND RESULTS: Permeation of HC through EpiDerm™, mouse skin and synthetic membrane was highest with the topical HC gel formulation with prewash treatment of the membranes among seven products evaluated, 198 ± 32 µg/cm(2), 746.32 ± 12.43 µg/cm(2), and 1882 ± 395.18 µg/cm(2), respectively. Pre-washing to hydrate the skin enhanced HC penetration through EpiDerm™ and mouse skin. The 24-hour HC released from topical gel with prewash treatment was 198.495 ± 32 µg/cm(2) and 746.32 ± 12.43 µg/cm(2) while without prewash, the 24-h HC released from topical gel was 67.2 ± 7.41 µg/cm(2) and 653.43 ± 85.62 µg/cm(2) though EpiDerm™ and mouse skin, respectively. HC penetration through synthetic membrane was ten times greater than through mouse skin and EpiDerm™. Generally, the shape, pattern, and rank order of HC diffusion from each commercial product was similar through each membrane.

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