Therapeutic Doses of Antioxidants Inhibit the Growth and Enhance the Effects Chemotherapy and Radiation Therapy on Cancer Cells by Blocking the Uptake and Metabolism of Glucose and Glutamine

Kedar N. Prasad
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Abstract

Chemotherapy and radiation therapy have produced increased 5-year survival rate in majority of cancers; however, acute side-effects during treatment and late adverse effects after these therapies remain a major concern of oncologists. To improve further 5-year survival rate and reduce acute and late adverse effects of therapies, a new non-toxic biological approach is needed.  Experimental data for such an approach was available for over 25 years. For example, therapeutic doses of antioxidants inhibit the growth of cancer cells and enhances the growth-inhibitory effects of chemotherapeutic agents and x-irradiation on cancer cells but not on normal cells. These exciting observations failed to draw any attention from oncologists, because mechanistic data on therapeutic doses was not available until now. The mechanistic data on preventive doses of antioxidants suggested that they scavenge free radicals. Since one of the mechanisms of action of chemotherapy and radiation therapy on cancer cells is mediated by free radicals, oncologists fear that supplementation with antioxidants may reduce the effectiveness of cancer therapies by neutralizing free radicals. Cancer cells require glucose and glutamine for their survival and proliferation.  This review briefly describes the effects of therapeutic doses of antioxidants alone and in combination with chemotherapy and radiation therapy on the growth of neoplastic cells and normal cells. It also presents evidence to show that such doses of antioxidants reduce the uptake and metabolism of glucose and glutamine in cancer cells. We propose that therapeutic doses of multiple antioxidants can selectively kill cancer cells and enhance the growth-inhibitory effects of therapeutic agents on cancer cells without affecting normal cells by inhibiting the uptake and metabolism of glucose and glutamine.
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治疗剂量的抗氧化剂通过阻止葡萄糖和谷氨酰胺的摄取和代谢,抑制癌细胞的生长并增强化疗和放疗的效果
化疗和放疗提高了大多数癌症患者的 5 年生存率,但治疗期间的急性副作用和治疗后的后期不良反应仍是肿瘤学家关注的主要问题。为了进一步提高 5 年生存率,减少治疗的急性和晚期不良反应,需要一种新的无毒生物方法。 关于这种方法的实验数据已有 25 年之久。例如,治疗剂量的抗氧化剂可抑制癌细胞的生长,并增强化疗药物和 X 射线对癌细胞的生长抑制作用,但对正常细胞没有抑制作用。这些令人兴奋的观察结果未能引起肿瘤学家的注意,因为直到现在还没有关于治疗剂量的机理数据。有关抗氧化剂预防剂量的机理数据表明,抗氧化剂可以清除自由基。由于化疗和放疗对癌细胞的作用机制之一是由自由基介导的,肿瘤学家担心补充抗氧化剂可能会通过中和自由基而降低癌症疗法的效果。癌细胞的生存和增殖需要葡萄糖和谷氨酰胺。 本综述简要介绍了治疗剂量的抗氧化剂单独或与化疗和放疗结合使用对肿瘤细胞和正常细胞生长的影响。它还提供证据表明,这种剂量的抗氧化剂可减少癌细胞对葡萄糖和谷氨酰胺的吸收和代谢。我们提出,治疗剂量的多种抗氧化剂可以通过抑制葡萄糖和谷氨酰胺的摄取和代谢,选择性地杀死癌细胞,增强治疗药物对癌细胞的生长抑制作用,而不影响正常细胞。
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