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Metabolic regulation of cancer cell side population by glucose through activation of the Akt pathway

机译:葡萄糖通过激活Akt途径代谢调节癌细胞侧群

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Side population (SP) cells within tumors are a small fraction of cancer cells with stem-like properties that can be identified by flow cytometry analysis based on their high ability to export certain compounds such as Hoechst 33342 and chemotherapeutic agents. The existence of stem-like SP cells in tumors is considered as a key factor contributing to drug resistance, and presents a major challenge in cancer treatment. Although it has been recognized for some time that tumor tissue niches may significantly affect cancer stem cells (CSCs), the role of key nutrients such as glucose in the microenvironment in affecting stem-like cancer cells and their metabolism largely remains elusive. Here we report that SP cells isolated from human cancer cells exhibit higher glycolytic activity compared to non-SP cells. Glucose in the culture environment exerts a profound effect on SP cells as evidenced by its ability to induce a significant increase in the percentage of SP cells in the overall cancer cell population, and glucose starvation causes a rapid depletion of SP cells. Mechanistically, glucose upregulates the SP fraction through ATP-mediated suppression of AMPK and activation of the Akt pathway, leading to elevated expression of the ATP-dependent efflux pump ABCG2. Importantly, inhibition of glycolysis by 3-BrOP significantly reduces SP cells in vitro and impairs their ability to form tumors in vivo. Our data suggest that glucose is an essential regulator of SP cells mediated by the Akt pathway, and targeting glycolysis may eliminate the drug-resistant SP cells with potentially significant benefits in cancer treatment.
机译:肿瘤内的侧群(SP)细胞是一小部分具有干样特性的癌细胞,可以根据其输出某些化合物(例如Hoechst 33342和化学治疗剂)的高能力,通过流式细胞仪分析来鉴定。肿瘤中干细胞样SP细胞的存在被认为是导致耐药性的关键因素,并在癌症治疗中提出了重大挑战。尽管人们已经认识到肿瘤组织的适当位置可能会显着影响癌症干细胞(CSCs),但是关键营养物质(例如葡萄糖)在微环境中对干细胞样癌细胞及其代谢的影响仍然难以捉摸。在这里,我们报道从人癌细胞分离的SP细胞与非SP细胞相比具有更高的糖酵解活性。培养环境中的葡萄糖对SP细胞产生深远的影响,其能力可以诱导SP在整个癌细胞群体中的百分比显着增加,而葡萄糖不足会导致SP细胞的快速消耗。从机制上讲,葡萄糖通过ATP介导的AMPK抑制和Akt途径的激活来上调SP分数,从而导致ATP依赖性外排泵ABCG2的表达升高。重要的是,3-BrOP对糖酵解的抑制作用在体外显着降低了SP细胞,并削弱了它们在体内形成肿瘤的能力。我们的数据表明,葡萄糖是Akt途径介导的SP细胞的重要调节剂,靶向糖酵解可能会消除耐药SP细胞,从而在癌症治疗中具有潜在的显着益处。

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