Megli Francesco M, Sabatini Karen
Dipartimento di Biochimica e Biologia Molecolare, Università di Bari, Via E. Orabona, 4, 70126, Bari, Italy.
Chem Phys Lipids. 2003 Oct;125(2):161-72. doi: 10.1016/s0009-3084(03)00089-6.
The molecular order of fatty acyl chains in oriented lipid bilayers on solid support (SPB), made of either natural or synthetic phospholipids oxidized by Fenton reagent and probed with spin labeled lecithin (5-DSPC) was studied by means of EPR spectrometry. Phospholipids (ASPC, EYPC, mitochondrial extract) were oxidized as either aqueous buffer/methanol dispersions or reverse-phase evaporation vesicles (REV) suspensions. Oxidation was preliminarily revealed both by assaying MDA and by detecting conjugated dienes. Oxidized phospholipid species was quantified by preparative TLC. The degree of order in oriented lipid bilayers of samples containing oxidized phospholipids was estimated by the loss of EPR spectral anisotropy, and an empirical index of the related bilayer disorder was calculated from the second derivative spectra. Bilayers made of each non-oxidized phospholipid species from either ethanol solutions or REV suspensions showed the highest anisotropy, while the increasing presence of oxidized lipids in the samples resulted in progressive loss of EPR spectral anisotropy. In contrast, vesicles containing 40% of the oxidized species maintained an unaltered fluidity gradient, while REV formation was hindered by oxidized phospholipid percentages higher than 45% for ASPC and EYPC, and 35% for Mitochondrial lipids (MtL). It is concluded that the early stages of lipoperoxidation bring about disordering of the phospholipid bilayer interior rather than fluidity alterations, and that prolonged oxidation may result in loss of structural and chemical properties of the bilayer until the structure no longer holds.
利用电子顺磁共振波谱法研究了由天然或合成磷脂制成的、在固体支持物(SPB)上定向脂质双层中脂肪酰链的分子排列顺序。这些磷脂被芬顿试剂氧化,并使用自旋标记卵磷脂(5-DSPC)进行探测。磷脂(ASPC、EYPC、线粒体提取物)以水性缓冲液/甲醇分散体或反相蒸发囊泡(REV)悬浮液的形式被氧化。通过测定丙二醛和检测共轭二烯初步揭示氧化情况。通过制备型薄层层析对氧化的磷脂种类进行定量。通过电子顺磁共振光谱各向异性的损失来估计含有氧化磷脂的样品中定向脂质双层的有序程度,并从二阶导数光谱计算相关双层无序的经验指数。由乙醇溶液或REV悬浮液中每种未氧化磷脂种类制成的双层显示出最高的各向异性,而样品中氧化脂质含量的增加导致电子顺磁共振光谱各向异性逐渐丧失。相比之下,含有40%氧化种类的囊泡保持了不变的流动性梯度,而对于ASPC和EYPC,氧化磷脂百分比高于45%以及对于线粒体脂质(MtL)高于35%时,REV的形成受到阻碍。得出的结论是,脂质过氧化的早期阶段导致磷脂双层内部无序而非流动性改变,并且长时间氧化可能导致双层的结构和化学性质丧失,直至结构不再维持。