了解沃伯格效应可为癌症的代谢控制提供新见解

Hassan Bahrami, Majid Tafrihi
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摘要

人体细胞可以利用有氧或无氧细胞呼吸过程产生能量,这取决于细胞条件。当有足够的氧气时,细胞进行有氧呼吸,但在缺氧的情况下,细胞进行厌氧呼吸,根据Warburg的假设,这会导致乳酸酸中毒和癌症风险增加。本文综述了与癌细胞代谢途径的历史进化起源相关的关键方面,并比较了癌细胞与古代单细胞生物之间的相似性,以解决癌细胞代谢变化的起源问题,并为癌症的代谢控制提供新的见解。了解癌症的主要原因及其行为异常的生物学起源对于癌症的代谢控制至关重要。对细胞的环境压力可能包括缺乏必需的营养物质、缺氧、过量的酸、病毒、感染以及接触化学物质、毒素和辐射。为了在恶劣的环境中生存,这些细胞压力源会导致正常细胞发生突变,变成癌细胞。根据研究结果,通过健康的饮食在细胞水平上创造适当的条件,如pH值、充足的氧合和良好的糖、必需维生素、矿物质、酶和辅酶的可用性,可以导致癌细胞的代谢转换,控制突变,从而有助于预防和控制癌症。
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Understanding the Warburg Effect Yields New Insights into the Metabolic Control of Cancer
Human cells may use either aerobic or anaerobic cellular respiration processes to produce energy, depending on cellular conditions. When there is enough oxygen, cells respire aerobically, but in case of oxygen deficiency, anaerobic cellular respiration is used, which leads to lactic acidosis and an increased risk of cancer according to Warburg's hypothesis. This paper reviews key aspects related to the historical evolutionary origins of metabolic pathways in cancer cells and compares similarities between cancer cells and ancient unicellular organisms to address the origins of metabolic change in cancer cells and provide new insights into the metabolic control of cancer. Understanding the main causes of cancer and the biological origin of their behavioral abnormalities is essential for the metabolic control of cancer. Environmental stressors to cells may include lack of essential nutrients, poor oxygenation, excess acids, viruses, infections, and exposure to chemicals, toxins, and radiation. These cellular stressors can cause normal cells to mutate and become cancerous in an attempt to survive in the harsh conditions. According to the research findings, creating appropriate conditions at the cellular level in terms of pH, sufficient oxygenation and the availability of good sugars, essential vitamins, minerals, enzymes and coenzymes through a healthy diet can lead to a metabolic switch in cancer cells that controls mutations, which can help prevent and control cancer.
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