线粒体靶向化疗的量子化学分子模型:线粒体氧化应激和抗癌药物的验证

S. Yanagida, S. Yanagisawa, Nobuyuki Murakami
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引用次数: 1

摘要

背景:我们了解到大多数伴随衰老的疾病都与氧化应激有关,即线粒体脂质板层双分子膜(mt)的氧化损伤。所谓的癌症和肿瘤是这类疾病的一组,通过光学显微镜获得的硬点触摸和细胞变形侵袭图像来诊断,但癌症和肿瘤细胞的分子水平定义尚不清楚。硬斑和/或细胞侵袭将是与细胞代谢功能障碍有关的症状,过氧化氢衍生的羟基自由基必须诱导细胞内mt脂质层膜的氧化降解。我们的目标是深入了解mt中不可避免地产生和存在的水合HOOH和羟基自由基的反应性,以及mt脂质双分子膜的不稳定性。该结果使我们能够提出可能对可持续细胞膜具有抗氧化作用的抗癌药物的候选药物。材料和方法:量子化学分子建模,即基于密度泛函理论的分子建模(DFT/MM)可以看作是基于理论的“实验”。DFT/MM可以用高端的超级计算机一样的个人计算机非常快速地进行。组成双分子膜的分子单元是月桂酸甘油三酯[Gly(n- c11h23coo) 3]。DFT/MM适用于范德华(vdW)力(即氢键和库仑相互作用)诱导的分子聚集。经证实,5-氟尿嘧啶、顺铂、奥沙利铂、维生素C和甲状腺激素甲状腺素(T4)可抑制HOOH和HO的氧化能力。DFT/MM证实肿胀和/或浸润组织充满肿胀和功能失调的mt是癌症的真实模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quantum chemistry molecular modelling for mitochondria targeted chemotherapy: Verification of oxidative stress on mitochondria and anticancer medicines
Background: We understand that most diseases which are accompanied with aging must relate to oxidative stress, i.e. oxidative damage of lipid lamellar bimolecular membranes of mitochondria ( mt ). So-called cancer and tumor are groups of such diseases and are diagnosed on the basis of hard spot touch and cell-deformed invasion image obtained by optical microscope, but molecular-level definition of cancer and tumor cells is unclear. The hard spot and/or the cell invasion will be symptoms relating to metabolic dysfunctions of cells, and hydrogen peroxide-derived hydroxyl radical must induce oxidative degradation of lipid lamellar membranes of mt in the cells. Our goal is to gain insights into reactivity of hydrated HOOH and hydroxyl radicals which produce and exist inevitably in mt , and instability of the mt ’s lipid bimolecular membrane. The result allows us to propose candidates for anticancer medicines which may have antioxidative effects on sustainable mt ’s membranes. Materials and methods: Quantum chemistry molecular modeling, i.e., density functional theory-based molecular modeling (DFT/MM) can be regarded as theory- based “experiments”. DFT/MM can be carried out very quickly using high-end supercomputer-like personal computers. The molecular unit consisting bimolecular membranes is glycerin triester of lauric acid [Gly(n-C 11 H 23 COO) 3 ]. DFT/MM are applicable to molecular aggregates which are induced by van der Waals (vdW) force (i.e. hydrogen bonding and Coulomb interactions). medicines, 5-Fluorouracil, Cisplatin, Oxaliplatin, Vitamin C and thyroid hormone, thyroxine (T4) are verified to suppress oxidation power of HOOH and HO . . DFT/MM verifies that the swelling and/or invasion tissues filled with the swollen and dysfunctional mt is an authentic model of cancer.
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