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首页> 外文期刊>Advances in Experimental Medicine and Biology >Lactate and Lactate Transporters as Key Players in the Maintenance of the Warburg Effect
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Lactate and Lactate Transporters as Key Players in the Maintenance of the Warburg Effect

机译:乳酸和乳酸乳酸转运司像作为关键参与者在维护Warburg效应

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摘要

Reprogramming of energy metabolism is a key hallmark of cancer. Most cancer cells display a glycolytic phenotype, with increased glucose consumption and glycolysis rates, and production of lactate as the end product, independently of oxygen concentrations. This phenomenon, known as "Warburg Effect", provides several survival advantages to cancer cells and modulates the metabolism and function of neighbour cells in the tumour microenvironment. However, due to the presence of metabolic heterogeneity within a tumour, cancer cells can also display an oxidative phenotype, and corruptible cells from the microenvironment become glycolytic, cooperating with oxidative cancer cells to boost tumour growth. This phenomenon is known as "Reverse Warburg Effect". In either way, lactate is a key mediator in the metabolic crosstalk between cancer cells and the microenvironment, and lactate transporters are expressed differentially by existing cell populations, to support this crosstalk.
机译:能量新陈代谢的重新编程是癌症的关键标志。 大多数癌细胞显示糖酵解表型,随着葡萄糖消耗和糖酵解率的增加,以及作为最终产品的乳酸盐的生产,而不是氧浓度。 这种被称为“Warburg效应”的现象为癌细胞提供了几种生存优势,并调节肿瘤微环境中邻居细胞的代谢和功能。 然而,由于肿瘤内的代谢异质性存在,癌细胞还可以显示氧化表型,并且来自微环境的腐败细胞成为糖浆,与氧化癌细胞合作以提高肿瘤生长。 这种现象被称为“反向Warburg效应”。 在任何一种方式中,乳酸盐是癌细胞和微环境之间代谢串扰中的关键介质,乳酸转运蛋白通过现有的细胞群表达,以支持这种串扰。

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