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Calcitriol induced redox imbalance and DNA breakage in cells sharing a common metabolic feature of malignancies: Interaction with cellular copper (II) ions leads to the production of reactive oxygen species

机译:骨化三醇诱导细胞中的氧化还原失衡和DNA断裂,具有恶性肿瘤的共同代谢特征:与细胞铜(II)离子的相互作用导致活性氧的产生

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Calcitriol is known to selectively kill malignant cells, however, not much is known about the mechanism by which it kills malignant cells and spares the "normal" cells. Since elevation of cellular copper is a metabolic condition common to all malignancies, we developed a mouse model to mimic this condition and treated the animals with calcitriol. It was observed that calcitriol-copper interaction in vivo causes severe fluctuations in cellular enzymatic and nonenzymatic scavengers of reactive oxygen species (ROS). Lipid peroxidation, a well-established marker of oxidative stress, was found to increase, and a substantial cellular DNA breakage was observed. Calcitriol-copper interaction in vivo was observed to lead the cells to an apoptosis like cell death. We propose that the interaction of calcitriol and copper within malignant cells and the consequent redox scavenger fluctuations and ROS-mediated DNA breakage may be one of the several mechanisms by which calcitriol causes selective cell death of malignant cells, while sparing normal cells.
机译:已知骨化三醇可选择性杀死恶性细胞,但是对于杀伤恶性细胞并保留“正常”细胞的机制知之甚少。由于细胞铜的升高是所有恶性肿瘤所共有的代谢疾病,因此我们开发了一种小鼠模型来模拟这种疾病,并用骨化三醇治疗了动物。观察到钙三醇-铜相互作用在体内引起活性氧(ROS)的细胞酶和非酶清除剂的严重波动。脂质过氧化(一种公认的氧化应激标记)被发现增加,并且观察到大量细胞DNA断裂。观察到体内钙三醇-铜的相互作用导致细胞凋亡,如细胞死亡。我们建议,钙三醇和铜在恶性细胞内的相互作用以及随之而来的氧化还原清除剂波动和ROS介导的DNA断裂可能是钙三醇引起恶性细胞选择性细胞死亡,同时保留正常细胞的几种机制之一。

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