Kim Yeu-Chun, Late Sameer, Banga Ajay K, Ludovice Peter J, Prausnitz Mark R
School of Chemical and Biomolecular Engineering, Georgia Institute of Technology, Atlanta, GA 30332-0100, USA.
Int J Pharm. 2008 Oct 1;362(1-2):20-8. doi: 10.1016/j.ijpharm.2008.05.042. Epub 2008 Jun 13.
Magainin is a naturally occurring, pore-forming peptide that has recently been shown to increase skin permeability. This study tested the hypothesis that electrostatic forces between magainin peptides and drugs mediate drug transport across the skin. Electrostatic interaction between positively charged magainin and a negatively charged model drug, fluorescein, was attractive at pH 7.4 and resulted in a 35-fold increase in delivery across human epidermis in vitro when formulated with 2% N-lauroylsarcosine in 50% ethanol. Increasing to pH 10 or 11 largely neutralized magainin's charge, which eliminated enhancement due to magainin. Shielding electrostatic interactions with 1-2M NaCl solution similarly eliminated enhancement. Showing the opposite dependence on pH, electrostatic interaction between magainin and a positively charged anti-nausea drug, granisetron, was largely neutralized at pH 10 and resulted in a 92-fold increase in transdermal delivery. Decreasing to pH 5 increased magainin's positive charge, which repelled granisetron and progressively decreased transdermal flux. Circular dichroism analysis, multi-photon microscopy, and FTIR spectroscopy showed no significant pH effect on magainin secondary structure, magainin deposition in stratum corneum, or stratum corneum lipid order, respectively. We conclude that magainin increases transdermal delivery by a mechanism involving electrostatic interaction between magainin peptides and drugs.
马盖宁是一种天然存在的、可形成孔道的肽,最近已被证明能增加皮肤通透性。本研究检验了以下假设:马盖宁肽与药物之间的静电力介导药物经皮转运。带正电荷的马盖宁与带负电荷的模型药物荧光素之间的静电相互作用在pH 7.4时具有吸引力,当在50%乙醇中与2%的N-月桂酰肌氨酸配制时,可使体外人表皮的药物递送增加35倍。将pH提高到10或11可基本中和马盖宁的电荷,从而消除了马盖宁引起的增强作用。用1-2M NaCl溶液屏蔽静电相互作用同样消除了增强作用。马盖宁与带正电荷的抗恶心药物格拉司琼之间的静电相互作用对pH的依赖性相反,在pH 10时基本被中和,并导致透皮递送增加92倍。将pH降低到5会增加马盖宁的正电荷,这会排斥格拉司琼并逐渐降低透皮通量。圆二色性分析、多光子显微镜和傅里叶变换红外光谱分别显示pH对马盖宁二级结构、马盖宁在角质层中的沉积或角质层脂质有序性没有显著影响。我们得出结论,马盖宁可通过一种涉及马盖宁肽与药物之间静电相互作用的机制增加透皮递送。