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首页> 外文期刊>Pharmaceutical development and technology >Effect of chemical penetration enhancer and iontophoresis on the in vitro percutaneous absorption enhancement of insulin through porcine epidermis.
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Effect of chemical penetration enhancer and iontophoresis on the in vitro percutaneous absorption enhancement of insulin through porcine epidermis.

机译:化学渗透促进剂和离子电渗疗法对猪表皮胰岛素体外经皮吸收增强的影响。

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The purpose of this study was to investigate the effect of chemical enhancers (fatty acids and limonene) and iontophoresis on the in vitro permeability enhancement of insulin through porcine epidermis. The following fatty acids were used: palmitic (C16:0), palmitoleic (C16:1), stearic (C18:0), oleic (C18:1), linoleic (C18:2), and linolenic (C18:3). Franz diffusion cells and the Scepter iontophoretic power source were used for the percutaneous absorption studies. Cathodal iontophoresis was performed at 0.2 mA/cm2 current density. Iontophoresis in combination with chemical enhancers synergistically increased (p<0.05) the in vitro permeability of insulin. Linolenic acid (C18:3) produced greater permeability of insulin through epidermis than did other fatty acids during passive (44.45 x 10(-4) cm/h) and iontophoretic (78.03 x 10(-4) cm/h) transport. Lispro insulin flux was significantly (p<0.05) greater through linolenic acid and limonene pretreated epidermis compared to untreated controls during both passive and iontophoretic transports. Using limonene as a penetration enhancer, a linear increase in the passive and iontophoretic flux of lispro insulin was observed with donor concentrations increasing from 100 IU/mL to 300 IU/mL. Iontophoretic flux through limonene-treated epidermis using 0.5 mA/cm2 current density and 300 IU/mL insulin donor solution was 45.63 IU/cm2/day. Using an iontophoretic patch size of 10 cm2, we would be able to deliver 50 IU of insulin within 3 h.
机译:这项研究的目的是研究化学增强剂(脂肪酸和柠檬烯)和离子电渗疗法对猪表皮胰岛素体外渗透性增强的影响。使用了以下脂肪酸:棕榈酸(C16:0),棕榈油酸(C16:1),硬脂酸(C18:0),油酸(C18:1),亚油酸(C18:2)和亚麻酸(C18:3)。 Franz扩散池和Scepter离子电渗疗法动力源用于经皮吸收研究。阴极离子电渗疗法在0.2 mA / cm2的电流密度下进行。离子电渗疗法与化学增强剂的组合可协同提高(p <0.05)胰岛素的体外渗透性。在被动(44.45 x 10(-4)cm / h)和离子电渗(78.03 x 10(-4)cm / h)运输过程中,亚麻酸(C18:3)产生的胰岛素通过表皮的渗透性高于其他脂肪酸。在被动和离子电渗转运过程中,通过亚麻酸和柠檬烯预处理的表皮,Lispro胰岛素通量显着(p <0.05),高于未处理的对照。使用柠檬烯作为渗透促进剂,观察到赖脯胰岛素的被动通量和离子电渗通量线性增加,供体浓度从100 IU / mL增加到300 IU / mL。使用0.5 mA / cm2的电流密度和300 IU / mL胰岛素供体溶液通过柠檬烯处理的表皮的离子电渗通量为45.63 IU / cm2 /天。使用10 cm2的离子电渗疗法贴片,我们将能够在3小时内递送50 IU胰岛素。

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