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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Photodynamic activity and binding of sulfonated metallophthalocyanines to phospholipid membranes: Contribution of metal-phosphate coordination.
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Photodynamic activity and binding of sulfonated metallophthalocyanines to phospholipid membranes: Contribution of metal-phosphate coordination.

机译:磺化金属酞菁与磷脂膜的光动力活性和结合:金属-磷酸盐配位的贡献。

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Photosensitized efficacy of tetrasulfonated phthalocyanines of zinc, aluminum and nickel (ZnPcS(4), AlPcS(4) and NiPcS(4), respectively) as studied by gramicidin channel (gA) photoinactivation was compared with adsorption of the dyes on the surface of a bilayer lipid membrane as measured by the inner field compensation method. The adsorption of the negatively charged phthalocyanines on diphytanoylphosphatidylcholine (DPhPC) membranes led to formation of a negative boundary potential difference between the membrane/water interfaces. Good correlation was shown between the photodynamic activity and the membrane binding of the three metallophthalocyanines. ZnPcS(4) appeared to be the most potent of these photosensitizers, while NiPcS(4) was completely ineffective. All of these phthalocyanines displayed no binding and negligible gA photoinactivation with membranes formed of glycerol monooleate (GMO), whereas Rose Bengal exhibited significant binding and photodynamic efficacy with GMO membranes. Gramicidin photoinactivation in the presence of AlPcS(4), being insensitive to the ionic strength of the bathing solution, was inhibited by fluoride and attenuated by phosphate ions. A blue shift of the fluorescence peak position of ZnPcS(4) dissolved in ethanol was elicited by phosphate, similarly to fluoride, which was indicative of the coordination interaction of these ions with the central metal atom of the phthalocyanine macrocycle. This interaction was enhanced in the medium modeling the water-membrane interface. The results obtained imply that binding of tetrasulfonated metallophthalocyanines to phospholipid membranes is determined primarily by metal-phosphate coordination.
机译:锌,铝和镍的四磺化酞菁的光敏功效(分别为ZnPcS(4),AlPcS(4)和NiPcS(4)),通过短杆菌肽通道(gA)进行光灭活研究,并与染料在a表面上的吸附进行了比较。通过内场补偿法测量的双层脂质膜。带负电荷的酞菁在二植烷酰磷脂酰胆碱(DPhPC)膜上的吸附导致在膜/水界面之间形成负边界电势差。显示了三种金属酞菁的光动力活性和膜结合之间的良好相关性。 ZnPcS(4)似乎是这些光敏剂中最有效的,而NiPcS(4)则完全无效。所有这些酞菁与甘油单油酸酯(GMO)形成的膜均未显示出结合力且gA光失活可忽略不计,而Rose Bengal与GMO膜则显示出显着的结合力和光动力功效。对沐浴液的离子强度不敏感的AlPcS(4)存在下的格拉米霉素光灭活被氟化物抑制,并被磷酸根离子减弱。磷酸盐引起的ZnPcS(4)溶解在乙醇中的荧光峰位置发生蓝移,类似于氟化物,这表明这些离子与酞菁大环的中心金属原子之间的配位相互作用。在对水-膜界面进行建模的介质中,这种相互作用得到了增强。获得的结果表明,四磺化金属酞菁与磷脂膜的结合主要由金属-磷酸盐配位决定。

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