首页> 美国卫生研究院文献>Oxidative Medicine and Cellular Longevity >Link between Cancer and Alzheimer Disease via Oxidative Stress Induced by Nitric Oxide-Dependent Mitochondrial DNA Overproliferation and Deletion
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Link between Cancer and Alzheimer Disease via Oxidative Stress Induced by Nitric Oxide-Dependent Mitochondrial DNA Overproliferation and Deletion

机译:一氧化氮依赖性线粒体DNA过度增殖和缺失所引起的氧化应激癌症和阿尔茨海默病之间的联系。

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摘要

Nitric oxide- (NO-) dependent oxidative stress results in mitochondrial ultrastructural alterations and DNA damage in cases of Alzheimer disease (AD). However, little is known about these pathways in human cancers, especially during the development as well as the progression of primary brain tumors and metastatic colorectal cancer. One of the key features of tumors is the deficiency in tissue energy that accompanies mitochondrial lesions and formation of the hypoxic smaller sized mitochondria with ultrastructural abnormalities. We speculate that mitochondrial involvement may play a significant role in the etiopathogenesis of cancer. Recent studies also demonstrate a potential link between AD and cancer, and anticancer drugs are being explored for the inhibition of AD-like pathology in transgenic mice. Severity of the cancer growth, metastasis, and brain pathology in AD (in animal models that mimic human AD) correlate with the degree of mitochondrial ultrastructural abnormalities. Recent advances in the cell-cycle reentry of the terminally differentiated neuronal cells indicate that NO-dependent mitochondrial abnormal activities and mitotic cell division are not the only important pathogenic factors in pathogenesis of cancer and AD, but open a new window for the development of novel treatment strategies for these devastating diseases.
机译:一氧化氮-(NO-)依赖性氧化应激导致阿尔茨海默病(AD)的线粒体超微结构改变和DNA损伤。然而,对于人类癌症中的这些途径知之甚少,尤其是在原发性脑肿瘤和转移性结直肠癌的发展以及进展过程中。肿瘤的关键特征之一是线粒体损伤所伴随的组织能量的缺乏和低氧的较小线粒体的形成以及超微结构异常。我们推测线粒体受累可能在癌症的发病机制中起重要作用。最近的研究还证明了AD与癌症之间的潜在联系,并且正在研究抗癌药物以抑制转基因小鼠中的AD样病理。 AD(在模拟人AD的动物模型中)的癌症生长,转移和脑部病理的严重程度与线粒体超微结构异常的程度有关。终末分化神经元细胞在细胞周期折返方面的最新进展表明,NO依赖的线粒体异常活性和有丝分裂细胞分裂不是癌症和AD发病机理中唯一重要的致病因素,但为新型肿瘤的发展打开了新窗口。这些破坏性疾病的治疗策略。

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