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2-Deoxy-D-Glucose inhibits aggressive triple-negative breast cancer cells by targeting glycolysis and the cancer stem cell phenotype

机译:2-脱氧-D-葡萄糖通过靶向糖酵解和癌症干细胞表型来抑制侵袭性三阴性乳腺癌细胞

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摘要

Due to limited availability of pharmacological therapies, triple-negative breast cancer (TNBC) is the subtype with worst outcome. We hypothesised that 2-Deoxy-D-Glucose (2-DG), a glucose analogue, may hold potential as a therapy for particularly aggressive TNBC. We investigated 2-DG’s effects on TNBC cell line variants, Hs578T parental cells and their isogenic more aggressive Hs578Ts(i)8 variant, using migration, invasion and anoikis assays. We assessed their bioenergetics by Seahorse. We evaluated metabolic alterations using a Seahorse XF Analyzer, citrate synthase assay, immunoblotting and flow cytometry. We assessed the cancer stem cell (CSC) phenotype of the variants and 2-DG’s effects on CSCs. 2-DG significantly inhibited migration and invasion of Hs578Ts(i)8 versus Hs578T and significantly decreased their ability to resist anoikis. Investigating 2-DG’s preferential inhibitory effect on the more aggressive cells, we found Hs578Ts(i)8 also had significantly decreased oxidative phosphorylation and increased glycolysis compared to Hs578T. This is likely due to mitochondrial dysfunction in Hs578Ts(i)8, shown by their significantly decreased mitochondrial membrane potential. Furthermore, Hs578Ts(i)8 had a significantly increased proportion of cells with CSC phenotype, which was significantly decreased by 2-DG. 2-DG may have benefit as a therapy for TNBC with a particularly aggressive phenotype, by targeting increased glycolysis. Studies of more cell lines and patients’ specimens are warranted.
机译:由于药理学疗法的局限性,三阴性乳腺癌(TNBC)是结果最差的亚型。我们假设,葡萄糖类似物2-脱氧-D-葡萄糖(2-DG)可能具有作为治疗特别侵袭性TNBC的潜力。我们使用迁移,侵袭和失灵测定法研究了2-DG对TNBC细胞株,Hs578T亲本细胞及其同基因的更具侵略性的Hs578Ts(i)8变体的影响。我们通过Seahorse评估了他们的生物能学。我们使用Seahorse XF分析仪,柠檬酸合酶测定,免疫印迹和流式细胞仪评估了代谢改变。我们评估了变体的癌症干细胞(CSC)表型和2-DG对CSC的影响。 2-DG与Hs578T相比显着抑制了Hs578Ts(i)8的迁移和侵袭,并显着降低了其抵抗缺氧的能力。通过研究2-DG对更具侵略性的细胞的优先抑制作用,我们发现Hs578Ts(i)8与Hs578T相比,氧化磷酸化水平显着降低,糖酵解增加。这很可能是由于Hs578Ts(i)8中的线粒体功能异常所致,其表现为线粒体膜电位明显降低。此外,Hs578Ts(i)8具有CSC表型的细胞比例显着增加,而2-DG显着降低了其比例。通过靶向增加糖酵解作用,2-DG可能作为具有特别具有侵略性的表型的TNBC疗法具有优势。必须研究更多的细胞系和患者标本。

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