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首页> 外文期刊>Clinical and Experimental Metastasis >Reversing mitochondrial dysfunction, fatigue and the adverse effects of chemotherapy of metastatic disease by molecular replacement therapy
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Reversing mitochondrial dysfunction, fatigue and the adverse effects of chemotherapy of metastatic disease by molecular replacement therapy

机译:通过分子替代疗法逆转线粒体功能障碍,疲劳以及转移性疾病化疗的不良反应

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Metastatic cancers are associated with cellular oxidative stress, and during cancer chemotherapy excess drug-induced oxidative stress can limit therapeutic effectiveness and cause a number of side effects, including fatigue, nausea, vomiting, diarrhea and more serious adverse effects, such as cardiomyopathy, peripheral neuropathy, hepatotoxicity and pulmonary fibrosis. We review here the hypothesis that the acute and chronic adverse effects of cancer chemotherapy can be reduced by molecular replacement of membrane lipids and enzymatic cofactors, such as coenzyme Q10. By administering nutritional supplements with replacement molecules and antioxidants, oxidative membrane damage and reductions of cofactors in normal tissues can be reversed, protecting and restoring mitochondrial and other cellular functions and reducing chemotherapy adverse effects. Recent clinical trials using cancer and non-cancer patients with chronic fatigue have shown the benefit of molecular replacement plus antioxidants in reducing the damage to mitochondrial membranes, restoring mitochondrial electron transport function, reducing fatigue and protecting cellular structures and enzymes from oxidative damage. Molecular replacement and antioxidant administration mitigates the damage to normal tissues, such as cardiac tissue, and reduces the adverse effects of cancer therapy without reduction in therapeutic results.
机译:转移性癌症与细胞氧化应激有关,在癌症化学疗法期间,过量的药物诱导的氧化应激会限制治疗效果并引起许多副作用,包括疲劳,恶心,呕吐,腹泻以及更严重的不良反应,例如心肌病,外周血神经病,肝毒性和肺纤维化。我们在这里审查这样的假说,即通过膜脂质和酶辅助因子(例如辅酶Q 10 )的分子置换可以减少癌症化学疗法的急性和慢性不良反应。通过将营养补充剂与替代分子和抗氧化剂一起施用,可以逆转正常组织中的氧化膜损伤和辅因子的减少,从而保护和恢复线粒体和其他细胞功能,并减少化学疗法的不良影响。最近对患有慢性疲劳的癌症和非癌症患者进行的临床试验表明,分子置换加抗氧化剂可以减少线粒体膜的损伤,恢复线粒体的电子转运功能,减轻疲劳,保护细胞结构和酶免受氧化损伤。分子置换和抗氧化剂的施用减轻了对正常组织如心脏组织的损害,并在不降低治疗效果的情况下减少了癌症治疗的不利影响。

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