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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Changes induced by malathion, methylparathion and parathion on membrane lipid physicochemical properties correlate with their toxicity
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Changes induced by malathion, methylparathion and parathion on membrane lipid physicochemical properties correlate with their toxicity

机译:马拉硫磷,甲基对硫磷和对硫磷引起的膜脂理化性质变化与其毒性相关

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Perturbations induced by malathion, methylparathion and parathion on the physicochemical properties of dipalmitoyl-phosphatidylcholine (DPPC) were studied by fluorescence anisotropy of DPH and DPH-PA and by differential scanning calorimetry (DSC). Methylparathion and parathion (50 μM) increased the fluorescence anisotropy evaluated by DPH-PA and DPH, either in gel or in the fluid phase of DPPC bilayers, but mainly in the fluid phase. Parathion is more effective than methylparathion. On the other hand, malathion had almost no effect. All the three xenobiotics displaced the phase transition midpoint to lower temperature values and broadened the phase transition profile of DPPC, the effectiveness following the sequence: parathion > methylparathion malathion. A shifting and broadening of the phase transition was also observed by DSC. Furthermore, at methylparathion/lipid molar ratio of 1/2 and at parathion/lipid molar ratio of 1/7, the DSC thermograms displayed a shoulder in the main peak, in the low temperature side, suggesting coexistence of phases. For higher ratios, the phase transition profile becomes sharp as the control transition, but the midpoint is shifted to the previous shoulder position. Conversely to methylparathion and parathion, malathion did not promote phase separation. The overall data from fluorescence anisotropy and calorimetry indicate that the degree of effect of the insecticides on the physicochemical membrane properties correlates with toxicity to mammals. Therefore, the in vivo effects of organophosphorus compounds may be in part related with their ability to perturb the phospholipid bilayer structure, whose integrity is essential for normal cell function.
机译:通过DPH和DPH-PA的荧光各向异性和差示扫描量热法(DSC)研究了马拉硫磷,甲基对硫磷和对硫磷对二棕榈酰磷脂酰胆碱(DPPC)的理化性质的扰动。甲基对硫磷和对硫磷(50μM)增加了DPH-PA和DPH评估的荧光各向异性,无论是在凝胶中还是在DPPC双层的液相中,但主要是在液相中。对硫磷比甲基对硫磷更有效。另一方面,马拉硫磷几乎没有作用。这三种异生素都将相变中点移至较低的温度值,并扩大了DPPC的相变曲线,其有效性遵循以下顺序:对硫磷>甲基对硫磷马拉硫磷。 DSC也观察到相变的移动和加宽。此外,在甲基对硫磷/脂质摩尔比为1/2和对硫磷/脂质摩尔比为1/7时,DSC热谱图在低温侧的主峰中显示出肩峰,表明各相共存。对于更高的比率,相变曲线会随着控制转变而变得尖锐,但中点会移至先前的肩部位置。与甲基对硫磷和对硫磷相反,马拉硫磷不会促进相分离。来自荧光各向异性和量热法的总体数据表明,杀虫剂对物化膜特性的影响程度与对哺乳动物的毒性有关。因此,有机磷化合物的体内作用可能部分与它们干扰磷脂双层结构的能力有关,后者的完整性对于正常细胞功能至关重要。

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