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Comparative Computational Study of Interaction of C60-Fullerene and Tris-Malonyl-C60-Fullerene Isomers with Lipid Bilayer: Relation to Their Antioxidant Effect

机译:C60-富勒烯和Tris-丙二酰-C60-富勒烯异构体与脂质双层相互作用的比较计算研究:与它们的抗氧化作用的关系

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摘要

Oxidative stress induced by excessive production of reactive oxygen species (ROS) has been implicated in the etiology of many human diseases. It has been reported that fullerenes and some of their derivatives–carboxyfullerenes–exhibits a strong free radical scavenging capacity. The permeation of C60-fullerene and its amphiphilic derivatives–C3-tris-malonic-C60-fullerene (C3) and D3-tris-malonyl-C60-fullerene (D3)–through a lipid bilayer mimicking the eukaryotic cell membrane was studied using molecular dynamics (MD) simulations. The free energy profiles along the normal to the bilayer composed of 1,2-dipalmitoyl-sn-glycero-3-phosphocholine (DPPC) for C60, C3 and D3 were calculated. We found that C60 molecules alone or in clusters spontaneously translocate to the hydrophobic core of the membrane and stay inside the bilayer during the whole period of simulation time. The incorporation of cluster of fullerenes inside the bilayer changes properties of the bilayer and leads to its deformation. In simulations of the tris-malonic fullerenes we discovered that both isomers, C3 and D3, adsorb at the surface of the bilayer but only C3 tends to be buried in the area of the lipid headgroups forming hydrophobic contacts with the lipid tails. We hypothesize that such position has implications for ROS scavenging mechanism in the specific cell compartments.
机译:由过量产生的活性氧(ROS)引起的氧化应激与许多人类疾病的病因有关。据报道,富勒烯及其某些衍生物羧基富勒烯具有很强的清除自由基能力。使用分子研究了C60-富勒烯及其两亲衍生物–C3-tris-丙二酸-C60-富勒烯(C3)和D3-tris-丙二酰基-C60-富勒烯(D3)的渗透,该过程是通过脂质双层模仿真核细胞膜进行的。动力学(MD)模拟。计算了沿垂直于由1,2-二棕榈酰基-sn-甘油-3-磷酸胆碱(DPPC)构成的双层的自由能谱,表明C60,C3和D3。我们发现,在整个模拟时间内,单独或成簇的C60分子会自发转移到膜的疏水核心,并停留在双层内部。富勒烯簇的结合在双层内部改变了双层的性质并导致其变形。在三丙二酸富勒烯的模拟中,我们发现异构体C3和D3都吸附在双层表面上,但只有C3倾向于掩埋在脂质头基团的区域中,形成与脂质尾部的疏水接触。我们假设这种位置对特定细胞室内的ROS清除机制有影响。

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