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Iontophoretic Permeation of Lisinopril at Different Current Densities and Drug Concentrations

机译:不同电流密度和药物浓度下的利诺普利离子电渗透

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摘要

>Purpose: The purpose of the present work was to assess iontophoretic permeation of Lisinopril at different current densities and concentrations for development of patient-controlled active transdermal system. >Methods: In vitro iontophoretic transdermal delivery of Lisinopril across the pigskin was investigated at three different drug concentrations and three different current densities (0.25- 0.75 mA/cm2) in the donor cell of the diffusion apparatus, using cathodal iontophoresis along with the passive controls. >Results: For passive permeation, the steady state flux significantly increased with the increasing of donor drug concentration. At all concentration levels, iontophoresis considerably increased the permeation rate compared to passive controls. Iontophoretic transport of Lisinopril was to be found increase with current densities. Flux enhancement was highest at the lowest drug load and lowest at the highest drug load. >Conclusion: The obtained results indicate that permeation rate of Lisinopril across the pigskin can be considerably enhanced, controlled or optimized by the use of Iontophoresis technique.
机译:>目的:本研究的目的是评估在不同电流密度和浓度下利诺普利的离子电渗渗透,以开发患者控制的活性透皮系统。 >方法:研究了在扩散装置的供体细胞中,在三种不同的药物浓度和三种不同的电流密度(0.25-0.75 mA / cm2)下,利诺普利跨猪皮的体外电离子透皮递送研究。离子电渗疗法以及被动控制。 >结果:对于被动渗透,稳态通量随着供体药物浓度的增加而显着增加。与被动对照相比,在所有浓度水平下,离子电渗疗法均显着提高了渗透率。发现Lisinopril的离子电渗转运随电流密度的增加而增加。通量增强在最低药物负荷下最高,而在最高药物负荷下最低。 >结论:获得的结果表明,使用离子电渗疗法可以大大提高,控制或优化Lisinopril在猪皮上的渗透率。

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