Shakery Azam, Pourvali Katayoun, Ghorbani Arman, Fereidani Samira Sadat, Zand Hamid
Department of Cellular and Molecular Nutrition, National Nutrition and Food Technology Research Institute, Faculty of Nutrition Science and Food Technology, Shahid Beheshti University of Medical Sciences, Tehran, Iran. Email:
Asian Pac J Cancer Prev. 2018 Nov 29;19(11):3287-3294. doi: 10.31557/APJCP.2018.19.11.3287.
Background: Beta-hydroxybutyrate (BHB) as a ketone body is the metabolic fuel in oxidative phosphorylation pathway. So far the effects of BHB on the biology of tumor cells is contradictory. Therefore, we investigated the effect of BHB on viability, metabolism, proliferation and migration of 5FU treated SW480 colon cancer cell line. Methods: we treated the SW480 cells with IC50 dose of 5-fluorouracil (5FU) for 72 h to isolate a subpopulation of 5FU treated cells that were resistant to it. Effects of BHB on cell viability was investigated by MTT assay. Measurement of oxygen consumption rate (OCR) in parallel with extracellular acidification rate (ECAR) upon BHB treatment was used for determination of metabolic profile of these cells. Investigating the relationship between metabolic phenotype and the status of differentiation and stemness was done by analyzing the expression of PGC-1α, c-MYC, NANOG, ALPi and KRT20 genes by qRT-PCR. Clonogenic and scratch assay were performed to determine the proliferation and migration abilities of incubated with BHB compared to untreated cells. Results: BHB increased cell viability in SW480 and 5FU treated SW480 cells. The results showed a significantly decreased ECAR and increased OCR in both cell types following BHB treatment reflecting the superiority of oxidative phosphorylation profile compared to glycolysis in both cell types. Also, treatment with BHB increases the expression of genes normally associated with stemness and mitochondrial biogenesis and decreases the expression of genes related to glycolytic program and differentiation in 5FU treated cells. Self-renewal and migration potential of BHB treated cells increased significantly. Conclusion: These findings suggest that BHB utilization via oxidative mitochondrial metabolism can fuel proliferation, migration and stemness in 5FU treated SW480 colon cancer cells.
β-羟基丁酸(BHB)作为一种酮体,是氧化磷酸化途径中的代谢燃料。到目前为止,BHB对肿瘤细胞生物学的影响存在矛盾。因此,我们研究了BHB对5-氟尿嘧啶(5FU)处理的SW480结肠癌细胞系的活力、代谢、增殖和迁移的影响。方法:我们用5-氟尿嘧啶(5FU)的IC50剂量处理SW480细胞72小时,以分离出对其耐药的5FU处理细胞亚群。通过MTT法研究BHB对细胞活力的影响。在BHB处理后,并行测量氧消耗率(OCR)和细胞外酸化率(ECAR),以确定这些细胞的代谢谱。通过qRT-PCR分析PGC-1α、c-MYC、NANOG、ALPi和KRT20基因的表达,研究代谢表型与分化和干性状态之间的关系。进行克隆形成和划痕试验,以确定与未处理细胞相比,用BHB孵育后的细胞增殖和迁移能力。结果:BHB提高了SW480细胞和5FU处理的SW480细胞的活力。结果显示,在BHB处理后,两种细胞类型的ECAR均显著降低,OCR均升高,这反映出与糖酵解相比,两种细胞类型中氧化磷酸化谱的优势。此外,在5FU处理的细胞中,BHB处理增加了通常与干性和线粒体生物发生相关的基因的表达,并降低了与糖酵解程序和分化相关的基因的表达。BHB处理细胞的自我更新和迁移潜力显著增加。结论:这些发现表明,通过线粒体氧化代谢利用BHB可以为5FU处理的SW480结肠癌细胞的增殖、迁移和干性提供能量。