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首页> 外文期刊>Cellular reprogramming >Pharmacologic Reprogramming Designed to Induce a Warburg Effect in Porcine Fetal Fibroblasts Alters Gene Expression and Quantities of Metabolites from Conditioned Media Without Increased Cell Proliferation
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Pharmacologic Reprogramming Designed to Induce a Warburg Effect in Porcine Fetal Fibroblasts Alters Gene Expression and Quantities of Metabolites from Conditioned Media Without Increased Cell Proliferation

机译:旨在诱导猪胎儿成纤维细胞的Warburg效应的药理学重编程改变了来自调节培养基的基因表达和数量,而不会增加细胞增殖

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摘要

The Warburg effect is a metabolic phenomenon characterized by increased glycolytic activity, decreased mitochondrial oxidative phosphorylation, and the production of lactate. This metabolic phenotype is characterized in rapidly proliferative cell types such as cancerous cells and embryonic stem cells. We hypothesized that a Warburg-like metabolism could be achieved in other cell types by treatment with pharmacological agents, which might, in turn, facilitate nuclear reprogramming. The aim of this study was to treat fibroblasts with CPI-613 and PS48 to induce a Warburg-like metabolic state. We demonstrate that treatment with both drugs altered the expression of 69 genes and changed the level of 21 metabolites in conditioned culture media, but did not induce higher proliferation compared to the control treatment. These results support a role for the reverse Warburg effect, whereby cancer cells induce cancer-associated fibroblast cells in the surrounding stroma to exhibit the metabolically characterized Warburg effect. Cancer-associated fibroblasts then produce and secrete metabolites such as pyruvate to supply the cancerous cells, thereby supporting tumor growth and metastasis. While anticipating an increase in the production of lactate and increased cellular proliferation, both hallmarks of the Warburg effect, we instead observed increased secretion of pyruvate without changes in proliferation.
机译:Warburg效应是一种代谢现象,其特征是糖酵解活性增加、线粒体氧化磷酸化减少和乳酸的产生。这种代谢表型以快速增殖的细胞类型为特征,如癌细胞和胚胎干细胞。我们假设,通过药物治疗,其他类型的细胞也可以实现类似Warburg的代谢,这反过来可能促进核重编程。本研究的目的是用CPI-613和PS48治疗成纤维细胞,以诱导Warburg样代谢状态。我们证明,与对照组相比,两种药物治疗都改变了条件培养基中69个基因的表达和21种代谢物的水平,但没有诱导更高的增殖。这些结果支持了反向Warburg效应的作用,即癌细胞诱导周围基质中的癌相关成纤维细胞表现出代谢特征的Warburg效应。然后,癌症相关成纤维细胞产生并分泌丙酮酸等代谢物来供应癌细胞,从而支持肿瘤生长和转移。虽然预期乳酸产量增加和细胞增殖增加(这两个都是Warburg效应的标志),但我们观察到丙酮酸分泌增加,而增殖没有变化。

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