首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Is the Response of Tumours Dependent on the Dietary Input of Some Amino Acids or Ratios among Essential and Non-Essential Amino Acids? All That Glitters Is Not Gold
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Is the Response of Tumours Dependent on the Dietary Input of Some Amino Acids or Ratios among Essential and Non-Essential Amino Acids? All That Glitters Is Not Gold

机译:肿瘤的反应是否取决于某些氨基酸的饮食输入或必需氨基酸和非必需氨基酸的比例?所有闪光的不都是金子

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摘要

Energy production is the main task of the cancer cell metabolism because the costs of duplicating are enormous. Although energy is derived in cells by dismantling the carbon-to-carbon bonds of any macronutrient, cancer nutritional needs for energetic purposes have been studied primarily as being dependent on glycolysis. Since the end of the last century, the awareness of the dependence of cancer metabolism on amino acids not only for protein synthesis but also to match energy needs has grown. The roles of specific amino acids such as glutamine, glycine and serine have been explored in different experimental conditions and reviewed. Moreover, epidemiological evidence has revealed that some amino acids used as a supplement for therapeutic reasons, particularly the branched-chain ones, may reduce the incidence of liver cancer and a specific molecular mechanism has been proposed as functional to their protective action. By contrast and puzzling clinicians, the metabolomic signature of some pathologies connected to an increased risk of cancer, such as prolonged hyperinsulinemia in insulin-resistant patients, is identified by elevated plasma levels of the same branched-chain amino acids. Most recently, certain formulations of amino acids, deeply different from the amino acid compositions normally present in foods, have shown the power to master cancer cells epigenetically, slowing growth or driving cancer cells to apoptotic death, while being both beneficial for normal cell function and the animal’s health and lifespan. In this review, we will analyze and try to disentangle some of the many knots dealing with the complexities of amino acid biology and links to cancer metabolism.
机译:能量生产是癌细胞代谢的主要任务,因为复制的成本巨大。尽管通过分解任何大量营养素的碳-碳键可在细胞中获取能量,但出于能量的目的,癌症的营养需求已被主要研究为依赖于糖酵解。自上世纪末以来,人们越来越认识到癌症代谢对氨基酸的依赖性不仅用于蛋白质合成,还用于满足能量需求。在不同的实验条件下已经探究了特定氨基酸的作用,例如谷氨酰胺,甘氨酸和丝氨酸,并进行了综述。此外,流行病学证据表明,某些出于治疗原因而被用作补充剂的氨基酸,尤其是支链氨基酸,可能会降低肝癌的发病率,并提出了一种特定的分子机制对其保护作用起作用。相比之下,令临床医生困惑不解的是,某些病理学的代谢组学特征与癌症风险的增加有关,例如胰岛素抵抗性患者长期的高胰岛素血症,是由相同支链氨基酸的血浆水平升高所鉴定的。最近,某些氨基酸配方与食品中通常存在的氨基酸组成有很大不同,它们已显示出在表观遗传学上控制癌细胞,减缓生长或驱动癌细胞凋亡死亡的能力,同时对正常的细胞功能和健康均有益。动物的健康和寿命。在这篇综述中,我们将分析并尝试解决涉及氨基酸生物学复杂性和癌症代谢联系的许多难题。

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