Schuetz Yannic B, Naik Aarti, Guy Richard H, Kalia Yogeshvar N
School of Pharmaceutical Sciences, University of Geneva, 30, Quai Ernest Ansermet, CH-1211 Geneva, Switzerland.
Eur J Pharm Sci. 2005 Dec;26(5):429-37. doi: 10.1016/j.ejps.2005.07.012. Epub 2005 Sep 6.
The objective of this study was to investigate the effect of amino acid sequence on the transdermal delivery of peptides by iontophoresis. Structurally related, cationic tripeptides based on the residues at positions (i) 6-8 in LHRH (Ac-X-Leu-Arg-NH(2)) and (ii) 3-5 in octreotide (Ac-X-dTrp-Lys-NH(2)) were studied. Iontophoretic transport experiments were conducted using porcine skin in vitro to investigate the dependence of flux on peptide concentration. Co-iontophoresis of acetaminophen enabled deconvolution of the contributions of electromigration (EM) and electroosmosis (EO) and the calculation of an electroosmotic inhibition factor (IF). A two-fold increase in donor peptide concentration increased iontophoretic flux for most peptides, and electroosmotic inhibition for dNal-containing tripeptides. The improvement in transport and the impact on the EM and EO components were peptide-specific. A reduction in the number of competing ions in the formulation significantly increased transport and, specifically, the EM contribution; it also increased IF of compounds with a propensity to interact with the membrane. No monotonic dependence of flux on either molecular weight or lipophilicity was observed. Iontophoretic peptide transport could not be rationalized in terms of either peptide molecular weight or computational 2D estimates of lipophilicity. Data suggest that a more complex three-dimensional approach is required to develop structure permeation relationships governing iontophoretic peptide delivery.
本研究的目的是调查氨基酸序列对离子电渗法介导的肽经皮递送的影响。研究了基于(i)促黄体激素释放激素(LHRH)第6 - 8位残基(Ac-X-Leu-Arg-NH₂)和(ii)奥曲肽第3 - 5位残基(Ac-X-dTrp-Lys-NH₂)的结构相关阳离子三肽。使用猪皮进行体外离子电渗转运实验,以研究通量对肽浓度的依赖性。对乙酰氨基酚的共离子电渗法能够对电迁移(EM)和电渗(EO)的贡献进行反卷积,并计算电渗抑制因子(IF)。供体肽浓度增加两倍会使大多数肽的离子电渗通量增加,含dNal的三肽的电渗受到抑制。转运的改善以及对EM和EO成分的影响具有肽特异性。制剂中竞争离子数量的减少显著增加了转运,特别是EM的贡献;它还增加了倾向于与膜相互作用的化合物的IF。未观察到通量对分子量或亲脂性的单调依赖性。离子电渗肽转运无法根据肽分子量或亲脂性的计算二维估计来合理化。数据表明,需要一种更复杂的三维方法来建立控制离子电渗肽递送的结构渗透关系。