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Selective amino acid restriction therapy (SAART): a non-pharmacological strategy against all types of cancer cells

机译:选择性氨基酸限制疗法(SAART):针对所有类型癌细胞的非药理策略

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摘要

Metastasis will continue to be an incurable disease for most patients until we develop highly selective anticancer therapies. The development of these therapies requires finding and exploiting major differences between cancer cells and normal cells. Although the sum of the many DNA alterations of cancer cells makes up such a major difference, there is currently no way of exploiting these alterations as a whole. Here I propose a non-pharmacological strategy to selectively kill any type of cancer cell, including cancer stem cells, by exploiting their complete set of DNA alterations. It is based on creating challenging environmental conditions that only cells with undamaged DNAs can overcome. Cell survival requires continuous protein synthesis, which in turn requires adequate levels of 20 amino acids (AAs). If we temporarily restrict specific AAs and keep high levels of others whose deficit triggers proteolysis, we will force cells to activate a variety of genetic programs to obtain adequate levels of each of the 20 proteinogenic AAs. Because cancer cells have an extremely altered DNA that has evolved under particular environmental conditions, they may be unable to activate the genetic programs required to adapt to and survive the new environment. Cancer patients may be successfully treated with a protein-free artificial diet in which the levels of specific AAs are manipulated. Practical considerations for testing and implementing this cheap and universal anticancer strategy are discussed.
机译:在我们开发高度选择性的抗癌疗法之前,转移对于大多数患者而言仍将是无法治愈的疾病。这些疗法的发展需要发现并利用癌细胞与正常细胞之间的主要差异。尽管癌细胞的许多DNA改变的总和构成了如此主要的差异,但目前尚无从整体上利用这些改变的方法。在这里,我提出了一种非药理学策略,可以通过利用其完整的DNA改变来选择性杀死任何类型的癌细胞,包括癌症干细胞。它基于创造具有挑战性的环境条件,只有具有未损坏的DNA的细胞才能克服。细胞存活需要连续的蛋白质合成,而蛋白质合成又需要足够水平的20个氨基酸(AAs)。如果我们暂时限制特定的AA并保持高水平的其他缺陷导致蛋白质水解,那么我们将迫使细胞激活各种遗传程序以获得20种蛋白原AA的足够水平。由于癌细胞具有在特定环境条件下进化而来的DNA极大改变,因此它们可能无法激活适应新环境并在新环境中生存所需的基因程序。可以使用无蛋白的人工饮食成功治疗癌症患者,在这种饮食中可以控制特定AA的水平。讨论了测试和实施这种廉价且通用的抗癌策略的实际考虑。

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