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Iontophoretic skin permeation of peptides: an investigation into the influence of molecular properties, iontophoretic conditions and formulation parameters

机译:肽的离子电渗疗法皮肤渗透:考察分子性质,离子电渗疗法条件和配方参数的影响

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摘要

The transdermal route offers advantages for delivery of peptides and proteins. However, these polar and large molecules do not permeate the skin barrier well. Various enhancement methods have been employed to address this problem. Iontophoresis is one of the methods that shows promise but its application to peptide delivery has yet to be fully explored. This study investigates the effects of different molecular properties and iontophoretic conditions on the skin permeation of peptides. In this study, the permeation of alanine-tryptophan dipeptide (MW 276 Da), alanine-alanine-proline-valine tetrapeptide (MW 355 Da), ArgirelineAcetyl hexapeptide-3, MW 889 Da) and Triptorelin acetate (decapeptide, MW 1311 Da) through excised human skin under passive or iontophoretic current of 0.4 mA was investigated. The effects of pH change (3.0-7.4, to provide different net negative, neutral, and positive charges) to the peptide, donor concentration (1-10 mg/ml), background electrolyte (34-137 mM NaCl and/or 5-20 mM HEPES) and current direction (anodal vs cathodal) were also studied. Peptides were analysed by high-performance liquid chromatography or liquid scintillation counting. Iontophoresis led up to a 30 times increase in peptide permeation relative to passive permeation for the peptides. Electroosmosis was an important determinant of the total flux for the high molecular weight charged peptides. Electrorepulsion was found to be considerable for low molecular weight charged moieties. Permeation was decreased at lower pH, possibly due to decreased electroosmosis. Results also showed that 10 times increase in donor peptide concentration increases permeation of peptides by about 2-4 times and decreases iontophoretic permeability coefficients by about 2.5-5 times. The addition of extra background electrolyte decreased the iontophoretic permeation coefficient of peptides by 2-60 times. This study shows that iontophoretic permeation of peptides is affected by a number of parameters that can be optimized for effective transdermal peptide delivery.
机译:透皮途径为肽和蛋白质的递送提供了优势。然而,这些极性和大分子不能很好地渗透皮肤屏障。已经采用了各种增强方法来解决这个问题。离子电渗疗法是显示出前景的方法之一,但其在肽递送中的应用尚未得到充分探索。这项研究调查了不同的分子特性和离子电渗条件对肽皮肤渗透的影响。在这项研究中,丙氨酸-色氨酸二肽(MW 276 Da),丙氨酸-丙氨酸-脯氨酸-缬氨酸四肽(MW 355 Da),Argireline乙酰基六肽-3,MW 889 Da)和醋酸曲普瑞林(十肽,MW 1311)的渗透Da)在0.4 mA的无源或离子电渗流下通过切除的人皮肤进行了研究。 pH值变化(3.0-7.4,以提供不同的净负,中性和正电荷)对肽,供体浓度(1-10 mg / ml),背景电解质(34-137 mM NaCl和/或5-还研究了20 mM HEPES)和电流方向(阳极与阴极)。通过高效液相色谱法或液体闪烁计数法分析肽。相对于肽的被动渗透,离子电渗疗法导致肽渗透增加30倍。电渗是高分子量带电肽总通量的重要决定因素。发现电排斥对于低分子量带电部分是相当大的。在较低的pH值下渗透率降低了,这可能是由于电渗降低了。结果还表明,供体肽浓度增加10倍,可使肽的渗透率提高约2-4倍,离子电渗渗透系数降低约2.5-5倍。额外的背景电解质的加入使肽的离子电渗渗透系数降低了2-60倍。这项研究表明,肽的离子电渗渗透受到许多参数的影响,这些参数可以针对有效的透皮肽传递进行优化。

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