潘妍, 赵会英, 郑俊民. 电致孔和离子导入对胰岛素经皮渗透的促进作用J. 药学学报, 2002, 37(8): 649-652.
引用本文: 潘妍, 赵会英, 郑俊民. 电致孔和离子导入对胰岛素经皮渗透的促进作用J. 药学学报, 2002, 37(8): 649-652.
PAN Yan, ZHAO Hui-ying, ZHENG Jun-min. THE ENHANCING EFFECT OF ELECTROPORATION AND IONTOPHORESIS ON THE PERMEATION OF INSULIN THROUGH HUMAN SKINJ. Acta Pharmaceutica Sinica, 2002, 37(8): 649-652.
Citation: PAN Yan, ZHAO Hui-ying, ZHENG Jun-min. THE ENHANCING EFFECT OF ELECTROPORATION AND IONTOPHORESIS ON THE PERMEATION OF INSULIN THROUGH HUMAN SKINJ. Acta Pharmaceutica Sinica, 2002, 37(8): 649-652.

电致孔和离子导入对胰岛素经皮渗透的促进作用

THE ENHANCING EFFECT OF ELECTROPORATION AND IONTOPHORESIS ON THE PERMEATION OF INSULIN THROUGH HUMAN SKIN

  • 摘要: 目的研究电致孔(EP)和离子导入(ION)对胰岛素经皮渗透的影响。方法以水平双室扩散池的方法,研究电致孔与离子导入联合应用对胰岛素经皮渗透的促进作用,并与单独使用离子导入或电致孔进行比较。结果 电致孔与离子导入联用比单独离子导入显著增加胰岛素的经皮渗透性(P<0.05),且高电压比低电压电致孔离子导入显著增加胰岛素的渗透速率(P<0.01)。胰岛素离子导入前,500 V电压,给90次脉冲(指数衰减脉冲,每次脉冲持续时间20~24 ms,3次·min-1),导致了透皮流速(Flux)的快速稳定增加。结论电致孔和离子导入联用能明显促进大分子胰岛素的经皮渗透性。

     

    Abstract: AIMTo study the enhancing effect of electroporation and iontophoresis on the permeation of insulin through human cadaver skin in vitro. METHODSUsing side by side two-chamber diffusion cells, the flux of insulin achieved with iontophoresis and electrophoration were compared. RESULTSThe application of high-voltage pulse combined with iontophoresis resulted in higher flux transdermal permeation of insulin than either one technique alone (P<0.05). Pulsing at a higher voltage increased the flux of insulin more dramatically than pulsing at a lower voltage (P<0.01). The transdermal transport of insulin by 90 pulse of 500 V (exponential pulse generater, pulse time: 20~24 ms, pulse frequency: 3 pulse·min-1) followed by iontophoresis led to a quick input and a high steady flux. CONCLUSION Electroporation combined with iontophoresis can enhance the permeation of insulin significantly.

     

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