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Targeting cellular metabolism to improve cancer therapeutics

机译:靶向细胞代谢以改善癌症疗法

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The metabolic properties of cancer cells diverge significantly from those of normal cells. Energy production in cancer cells is abnormally dependent on aerobic glycolysis. In addition to the dependency on glycolysis, cancer cells have other atypical metabolic characteristics such as increased fatty acid synthesis and increased rates of glutamine metabolism. Emerging evidence shows that many features characteristic to cancer cells, such as dysregulated Warburg-like glucose metabolism, fatty acid synthesis and glutaminolysis are linked to therapeutic resistance in cancer treatment. Therefore, targeting cellular metabolism may improve the response to cancer therapeutics and the combination of chemotherapeutic drugs with cellular metabolism inhibitors may represent a promising strategy to overcome drug resistance in cancer therapy. Recently, several review articles have summarized the anticancer targets in the metabolic pathways and metabolic inhibitor-induced cell death pathways, however, the dysregulated metabolism in therapeutic resistance, which is a highly clinical relevant area in cancer metabolism research, has not been specifically addressed. From this unique angle, this review article will discuss the relationship between dysregulated cellular metabolism and cancer drug resistance and how targeting of metabolic enzymes, such as glucose transporters, hexokinase, pyruvate kinase M2, lactate dehydrogenase A, pyruvate dehydrogenase kinase, fatty acid synthase and glutaminase can enhance the efficacy of common therapeutic agents or overcome resistance to chemotherapy or radiotherapy.
机译:癌细胞的代谢特性与正常细胞明显不同。癌细胞中的能量产生异常依赖于有氧糖酵解。除了对糖酵解的依赖外,癌细胞还具有其他非典型的代谢特征,例如增加的脂肪酸合成和增加的谷氨酰胺代谢速率。越来越多的证据表明,癌细胞具有许多特征,例如不规则的Warburg样葡萄糖代谢,脂肪酸合成和谷氨酰胺分解与癌症的治疗耐药性有关。因此,靶向细胞代谢可以改善对癌症治疗的反应,化疗药物与细胞代谢抑制剂的结合可能代表一种有前途的策略,可以克服癌症治疗中的耐药性。最近,几篇综述性文章总结了代谢途径和代谢抑制剂诱导的细胞死亡途径中的抗癌靶标,但是,尚未具体解决癌症治疗研究中与临床高度相关的治疗抗性代谢异常。从这个独特的角度,这篇综述文章将讨论细胞代谢失调与癌症耐药性之间的关系,以及如何靶向代谢酶,例如葡萄糖转运蛋白,己糖激酶,丙酮酸激酶M2,乳酸脱氢酶A,丙酮酸脱氢酶激酶,脂肪酸合酶和谷氨酰胺酶可以增强普通治疗剂的功效或克服对化学疗法或放射疗法的抵抗力。

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