Morphologic basis for a pore-pathway in mammalian stratum corneum.

G K Menon, P M Elias
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引用次数: 125

Abstract

Although prior morphologic studies have shown that both polar and nonpolar materials permeate across the stratum corneum (SC) via a paracellular route, the actual pathway through these heterogeneous domains is unknown. We applied hydrophilic and hydrophobic tracers in vivo to murine skin under basal conditions and/or after permeation enhancement with occlusion, vehicle enhancers, a lipid synthesis inhibitor, sonophoresis, and iontophoresis. Ruthenium tetroxide, ruthenium red plus osmium tetroxide, in situ precipitation with osmium vapor, and microwave postfixation methods were used to visualize penetration pathways. Tracers invariably localized to discrete lacunar domains embedded within the extracellular lamellar membrane system, regardless of their polarity or the enhancement method. Moreover, while the lacunar domains remained discontinuous under basal conditions, they appeared to gain structural continuity with permeation enhancement. These results indicate that extracellular lacunar domains comprise a pore pathway for penetration of polar and nonpolar molecules across the SC.

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哺乳动物角质层孔隙通路的形态学基础。
虽然先前的形态学研究表明极性和非极性物质通过细胞旁途径渗透角质层,但通过这些异质结构域的实际途径尚不清楚。我们将亲水性和疏水性示踪剂应用于小鼠皮肤,在基础条件下和/或在闭塞、载体增强剂、脂质合成抑制剂、声透和离子透后进行渗透增强。采用四氧化二钌、钌红加四氧化二锇、锇蒸气原位沉淀和微波后固定等方法观察渗透途径。无论其极性或增强方法如何,示踪剂总是定位于嵌入在细胞外板层膜系统内的离散腔隙区域。此外,虽然在基础条件下腔隙区域仍然是不连续的,但随着渗透的增强,它们似乎获得了结构上的连续性。这些结果表明,细胞外腔隙结构域包括极性和非极性分子穿过SC的孔隙途径。
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