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Resveratrol Inhibits ROS-Promoted Activation and Glycolysis of Pancreatic Stellate Cells via Suppression of miR-21

机译:白藜芦醇通过抑制miR-21抑制ROS促进的胰腺星状细胞活化和糖酵解。

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摘要

Activation of pancreatic stellate cells (PSCs) initiates pancreatic fibrosis in chronic pancreatitis and furnishes a niche that enhances the malignancy of pancreatic cancer cells (PCCs) in pancreatic ductal adenocarcinoma (PDAC). Resveratrol (RSV), a natural polyphenol, exhibits potent antioxidant and anticancer effects. However, whether and how RSV influences the biological properties of activated PSCs and the effects of these changes on tumor remain unknown. In the present study, we found that RSV impeded hydrogen peroxide-driven reactive oxygen species- (ROS-) induced activation, invasion, migration, and glycolysis of PSCs. In addition, miR-21 expression in activated PSCs was downregulated after RSV treatment, whereas the PTEN protein level increased. miR-21 silencing attenuated ROS-induced activation, invasion, migration, and glycolysis of PSCs, whereas the overexpression of miR-21 rescued the responses of PSCs treated with RSV. Moreover, RSV or N-acetyl-L-cysteine (NAC) administration or miR-21 knockdown in PSCs reduced the invasion and migration of PCCs in coculture, and the effects of RSV were partly reversed by miR-21 upregulation. Collectively, RSV inhibits PCC invasion and migration through suppression of ROS/miR-21-mediated activation and glycolysis in PSCs. Therefore, targeting miR-21-mediated glycolysis by RSV in tumor stroma may serve as a new strategy for clinical PDAC prevention or treatment.
机译:胰腺星状细胞(PSC)的激活可引发慢性胰腺炎中的胰腺纤维化,并提供一个可增强胰腺导管腺癌(PDAC)中胰腺癌细胞(PCC)恶性程度的利基市场。白藜芦醇(RSV)是一种天然多酚,具有强大的抗氧化和抗癌作用。然而,RSV是否以及如何影响激活的PSC的生物学特性以及这些变化对肿瘤的影响仍未知。在本研究中,我们发现RSV阻碍了过氧化氢驱动的活性氧(ROS-)诱导的PSC活化,侵袭,迁移和糖酵解。此外,RSV处理后,激活的PSC中的miR-21表达下调,而PTEN蛋白水平升高。 miR-21沉默可减弱ROS诱导的PSC激活,侵袭,迁移和糖酵解,而miR-21的过表达可挽救经RSV处理的PSC的反应。此外,RSV或N-乙酰基-L-半胱氨酸(NAC)的施用或miR-21在PSC中的敲低减少了共培养中PCC的入侵和迁移,并且miR-21上调部分抵消了RSV的作用。总的来说,RSV通过抑制ROS / miR-21介导的PSC中的激活和糖酵解来抑制PCC的入侵和迁移。因此,在肿瘤基质中靶向RSR介导的miR-21介导的糖酵解可作为临床预防或治疗PDAC的新策略。

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