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Metalloporphyrin intercalation in liposome membranes: ESR study

机译:金属卟啉嵌入脂质体膜:ESR研究

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Liposomes characterized by membranes featuring diverse fluidity (liquid-crystalline and/or gel phase), prepared from egg yolk lecithin (EYL) and dipalmitoylphosphatidylcholine (DPPC), were doped with selected metalloporphyrins and the time-related structural and dynamic changes within the lipid double layer were investigated. Porphyrin complexes of Mg(II), Mn(III), Fe(III), Co(II), Ni(II), Cu(II), Zn(II), and the metal-free base were embedded into the particular liposome systems and tested for 350 h at 24°C using the electron spin resonance (ESR) spin probe technique. 5-DOXYL, 12-DOXYL, and 16-DOXYL stearic acid methyl ester spin labels were applied to explore the interior of the lipid bilayer. Only the 16-DOXYL spin probe detected evident structural changes inside the lipid system due to porphyrin intercalation. Fluidity of the lipid system and the type of the porphyrin complex introduced significantly affected the intermolecular interactions, which in certain cases may result in self-assembly of metalloporphyrin molecules within the liposome membrane, reflected in the presence of new lines in the relevant ESR spectra. The most pronounced time-related effects were demonstrated by the EYL liposomes (liquid-crystalline phase) when doped with Mg and Co porphyrins, whereas practically no spectral changes were revealed for the metal-free base and both the Ni and Zn dopants. ESR spectra of the porphyrin-doped gel phase of DPPC liposomes did not show any extra lines; however, they indicated the formation of a more rigid lipid medium. Electronic configuration of the porphyrin's metal center appeared crucial to the degree of molecular reorganization within the phospholipid bilayer system.
机译:由蛋黄卵磷脂(EYL)和二棕榈酰磷脂酰胆碱(DPPC)制备的以具有不同流动性(液晶和/或凝胶相)为特征的膜的脂质体掺入了选定的金属卟啉,并且脂质双倍内与时间相关的结构和动态变化层进行了调查。 Mg(II),Mn(III),Fe(III),Co(II),Ni(II),Cu(II),Zn(II)和无金属碱的卟啉复合物被嵌入特定的脂质体中系统,并使用电子自旋共振(ESR)自旋探针技术在24°C下测试了350小时。 5-DOXYL,12-DOXYL和16-DOXYL硬脂酸甲酯自旋标记用于研究脂质双层的内部。仅16-DOXYL自旋探针可检测到由于卟啉嵌入而在脂质系统内部发生的明显结构变化。脂质系统的流动性和引入的卟啉复合物的类型显着影响了分子间的相互作用,这在某些情况下可能导致脂质体膜内金属卟啉分子的自组装,这反映在相关ESR谱中存在新的谱系。当掺有Mg和Co卟啉时,EYL脂质体(液晶相)显示出最明显的时间相关效应,而实际上,无金属的碱以及Ni和Zn掺杂剂均未发现光谱变化。 DPPC脂质体的卟啉掺杂凝胶相的ESR谱图未显示任何多余的谱线。然而,他们表明形成了更坚硬的脂质介质。卟啉金属中心的电子构型似乎对磷脂双层系统内分子重组的程度至关重要。

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