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Nitric oxide augments oridonin-induced efferocytosis by human histocytic lymphoma U937 cells via autophagy and the NF-κB-COX-2-IL-1β pathway

机译:一氧化氮通过自噬和NF-κB-COX-2-IL-1β途径增强人组织细胞淋巴瘤U937细胞对冬凌草甲素诱导的胞吞作用

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We previously demonstrated that oridonin-induced autophagy enhanced efferocytosis (phagocytosis of apoptotic cells) by macrophage-like U937 cells through activation of the inflammatory pathways. In this study, exposure of U937 cells to 2.5 μM oridonin caused up-regulation of inducible nitric oxide synthase (iNOS) expression and continuous endogenous generation of nitric oxide (NO), which was reversed by pre-treatment with the inhibitors of nitric oxide synthase 1400 W (dihydrochloride) or L-NAME (hydrochloride). NO donor sodium nitroprusside (SNP) and efferocytosis irritant lipopolysaccharide (LPS) could also exert NO generation and iNOS expression. Moreover, oridonin-induced stimulation of efferocytosis was significantly suppressed by 1400 W or L-NAME. In addition, 1400 W or L-NAME impaired oridonin-induced autophagy. Inhibition of autophagy with 3-methyladenine (3MA) or Beclin-1 siRNA attenuated the uptake of apoptotic cells with a slight increase in the production of NO. The pro-inflammatory cytokine interleukin-1β (IL-1β) has been reported to be involved in oridonin-induced efferocytosis in U937 cells and interact with NO to contribute to inflammatory responses. 1400 W or L-NAME blocked the secretion of IL-1β and the activation of NF-κB and COX-2. Provision of SNP or LPS in place of oridonin resulted in the similar enhancement of efferocytosis, autophagy, the release of IL-1β and the expression of signal protein. NO augmented the oridonin-induced efferocytosis by mediating autophagy and activating the NF-κB-COX-2-IL-1β pathway. Inhibition of NF-κB or COX-2 in turn decreased the production of NO and the expression of iNOS. There exists a positive feedback loop between NO generation and NF-κB-COX-2-IL-1β pathway.
机译:我们以前证明,冬凌草甲素诱导的自噬通过巨噬细胞样U937细胞通过激活炎症途径而增强了胞吞作用(凋亡细胞的吞噬作用)。在这项研究中,将U937细胞暴露于2.5μM的冬凌草甲素中会导致诱导型一氧化氮合酶(iNOS)表达上调并持续产生内源性一氧化氮(NO),这可以通过使用一氧化氮合酶抑制剂进行预处理来逆转1400 W(二盐酸盐)或L-NAME(盐酸盐)。 NO供体硝普钠(SNP)和胞吐刺激性脂多糖(LPS)也可以发挥NO生成和iNOS表达的作用。此外,1400 W或L-NAME显着抑制了冬凌草甲素诱导的胞吐作用刺激。此外,1400 W或L-NAME损害了冬凌草甲素诱导的自噬。用3-甲基腺嘌呤(3MA)或Beclin-1 siRNA抑制自噬可减弱凋亡细胞的摄取,并略微增加NO的产生。据报道促炎性细胞因子白介素-1β(IL-1β)参与了冬凌草甲素诱导的U937细胞的胞吞作用,并与NO相互作用以促成炎症反应。 1400 W或L-NAME阻断了IL-1β的分泌以及NF-κB和COX-2的激活。提供SNP或LPS代替冬凌草甲肽可导致类似的增强胞吞作用,自噬作用,IL-1β的释放和信号蛋白的表达。 NO通过介导自噬和激活NF-κB-COX-2-IL-1β途径增强了oridonin诱导的胞吞作用。抑制NF-κB或COX-2依次降低了NO的产生和iNOS的表达。 NO生成与NF-κB-COX-2-IL-1β途径之间存在正反馈回路。

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