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Electrophoretic Light Scattering and Electrochemical Impedance Spectroscopy Studies of Lipid Bilayers Modified by Cinnamic Acid and Its Hydroxyl Derivatives

机译:肉桂酸和羟基衍生物改性脂质双层的电泳光散射和电化学阻抗光谱研究

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摘要

Pharmacological efficiency of active compounds is largely determined by their membrane permeability. Thus, identification of drug-membrane interactions seems to be a crucial element determining drug-like properties of chemical agents. Yet, knowledge of this issue is still lacking. Since chemoprevention based on natural compounds such as cinnamic acid (CinA), p-coumaric acid (p-CoA) and ferulic (FA) is becoming a strong trend in modern oncopharmacology, determination of physicochemical properties of these anticancer compounds is highly important. Here, electrophoretic light scattering and impedance spectroscopy were applied to study the effects of these phenolic acids on electrical properties of bilayers formed from 1,2-dioleoyl-sn-glycero-3-phosphocholine (DOPC), 1,2-diacyl-sn-glycero-3-phospho-l-serine (PS) or DOPC-PS mixture. After phenolic acid treatment, the negative charge of membranes increased in alkaline pH solutions, but not in acidic ones. The impedance data showed elevated values of both the electrical capacitance and the electrical resistance. We concluded that at acidic pH all tested compounds were able to solubilize into the membrane and permeate it. At neutral and alkaline pH, the CinA could be partially inserted into the bilayers, whereas p-CoA and FA could be anchored at the bilayer surface. Our results indicate that the electrochemical methods might be crucial for predicting pharmacological activity and bioavailability of phenolic acids.
机译:活性化合物的药理效率大大通过它们的膜渗透性确定。因此,鉴定药物膜相互作用似乎是确定化学试剂的药物状性质的关键因素。然而,对这个问题的了解仍然缺乏。由于基于肉桂酸(CINA),P-香豆酸(P-COA)和阿魏(FA)的化学预防,因此成为现代生物生物理学的强烈趋势,因此这些抗癌化合物的物理化学性质的测定非常重要。这里,应用电泳光散射和阻抗光谱研究这些酚醛酸对由1,2-二脲-Sn-甘油-3-普米洛琳(DOPC),1,2-二酰基-NX-形成的双层电性能的影响。甘油-3-磷酸-1-丝氨酸(PS)或DOPC-PS混合物。在酚酸处理后,膜的负电荷在碱性pH溶液中增加,但不含酸性的pH值。阻抗数据显示电容和电阻的升高。我们得出结论,在酸性pH下,所有测试的化合物都能够溶解到膜中并渗透它。在中性和碱性pH下,Cina可以部分地插入双层中,而P-CoA和Fa可以锚固在双层表面。我们的结果表明,电化学方法可能对预测酚酸的药理学活性和生物利用度至关重要。

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