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首页> 外文期刊>International Journal of Pharmaceutics >Skin electroporation for transdermal drug delivery: The influence of the order of different square wave electric pulses
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Skin electroporation for transdermal drug delivery: The influence of the order of different square wave electric pulses

机译:透皮给药的皮肤电穿孔:不同方波电脉冲顺序的影响

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摘要

Electroporation can be used as an active enhancement method for intra- and transdermal drug delivery. Differences in response of skin to electric pulses depend on their amplitude, duration and number and have been a point of interest in the past. While protocols consisting of the same repetitive, mostly exponentially decaying pulses have been used before, this study is focused on comparing different combinations of square wave short high voltage (HV) and longer low voltage (LV) electroporation pulses. Our in vitro experimental results show that longer LV pulses significantly increase subsequent passive transport of calcein through dermatomed pig skin, while short HV pulses alone result in negligible calcein passive transdermal transport. Surprisingly, when the long LV pulses are preceded by short duration HV pulses, the total calcein transported is reduced significantly. This result is explained using a theoretical physics based model of individual local transport region (LTR) evolution during the applied LV pulse. The theoretical model shows that HV pulses alter the structure of the stratum corneum in such a way that when the LV pulses are applied, insufficient thermal energy is generated to initiate LTR expansion. Together, the experimental results and theoretical predictions show that the total pulse energy alone cannot account for total solute transport: that the order of the types of pulses administered must also be considered. Our findings open a direction for further improvement of the method using new protocols.
机译:电穿孔可用作内和透皮药物递送的活性增强方法。皮肤对电脉冲的响应差异取决于其幅度,持续时间和数量,并且在过去一直是人们关注的问题。虽然以前使用的协议由相同的重复性(主要是指数衰减的脉冲)组成,但这项研究的重点是比较方波短高压(HV)和较长的低压(LV)电穿孔脉冲的不同组合。我们的体外实验结果表明,较长的LV脉冲显着增加了钙黄绿素通过皮皮猪皮肤的后续被动转运,而短时的HV脉冲仅导致钙黄绿素被动透皮转运可忽略不计。出人意料的是,当长的LV脉冲之前有短的持续时间的HV脉冲时,转运的总钙黄绿素显着降低。使用基于理论物理学的模型在施加的LV脉冲过程中各个局部运输区域(LTR)演化过程中解释了该结果。理论模型表明,HV脉冲以这样一种方式改变角质层的结构:当施加LV脉冲时,会产生不足的热能来引发LTR膨胀。总之,实验结果和理论预测表明,仅总脉冲能量无法解决溶质的总迁移:还必须考虑所施加脉冲类型的顺序。我们的发现为使用新协议进一步改进该方法开辟了方向。

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