首页> 外文期刊>International Journal of Pharmaceutics >The influence of surface charge and photo-reactivity on skin-permeation enhancer property of nano-TiO2 in ex vivo pig skin model under indoor light
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The influence of surface charge and photo-reactivity on skin-permeation enhancer property of nano-TiO2 in ex vivo pig skin model under indoor light

机译:在室内光下离体猪皮肤模型中表面电荷和光反应性对纳米TiO2皮肤渗透增强特性的影响

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摘要

Several topical products contain nanometric TiO2 (nano-TiO 2), which is a useful and safe component that absorbs UV light and does not cross skin barrier. However, nano-TiO2 may impregnate the first layer of the skin (stratum corneum, SC) and generate free radicals, even under low UV irradiation. These properties, largely dependent on TiO2 surface chemistry, may modulate the transdermal drug permeation. To investigate how TiO2 surface properties affect drug permeation, amphotericin in two different media, in the presence of three differently coated samples, was applied on skin and the flux measured. The naked, but not the coated, nano-TiO2 showed enhancer property, with a fourfold increase of the drug flux. Only the positively-charged, naked TiO2 strongly adhered to and altered the SC structure. The oxidative potential towards formate anion and linoleic acid was assessed and a molecular mechanism to elucidate increased skin permeability proposed. To enhance the drug permeation, both a surface charge-driven adhesion and an oxidative disorganization of the SC lipids are required. By modulating TiO2 surface charge (coating) and its oxidative potential (crystalline phase), the enhancer effect of nano-TiO 2 may be tuned and turned up or down when transdermal penetration of drug has to be favored or impaired.
机译:几种外用产品均含有纳米TiO2(纳米TiO 2),它是一种有用且安全的成分,可吸收紫外线并且不会穿过皮肤屏障。然而,即使在低紫外线照射下,纳米二氧化钛也可能浸渍皮肤的第一层(角质层,SC)并产生自由基。这些性质很大程度上取决于TiO2表面化学性质,可能会调节透皮药物的渗透。为了研究TiO2的表面特性如何影响药物的渗透,在三种不同涂层的样品存在下,在两种不同的介质中将两性霉素涂在皮肤上并测量通量。裸露的但未涂覆的纳米TiO2表现出增强性能,药物通量增加了四倍。只有带正电的裸露的TiO2牢固地粘附并改变了SC结构。评估了甲酸根离子和亚油酸的氧化电位,并提出了阐明增加皮肤渗透性的分子机制。为了增强药物渗透性,既需要表面电荷驱动的粘附力,也需要SC脂质的氧化分解。通过调节TiO 2的表面电荷(涂层)及其氧化电位(结晶相),当必须促进或削弱药物的透皮渗透时,可以调节和升高或降低纳米TiO 2的增强作用。

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