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Decursin negatively regulates LPS-induced upregulation of the TLR4 and JNK signaling stimulated by the expression of PRP4 in vitro

机译:Decursin负调节LPS诱导的体外PRP4表达刺激的TLR4和JNK信号转导上调

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摘要

The current investigation was carried out to analyze the correlation of bacterial lipopolysaccharide (LPS) and pre-mRNA processing factor 4B (PRP4) in inducing inflammatory response and cell actin cytoskeleton rearrangement in macrophages (Raw 264.7) and colorectal (HCT116) as well as skin cancer (B16-F10) cells. Cell lines were stimulated with LPS, and the expression of PRP4 as well as pro-inflammatory cytokines and proteins like IL-6, IL-1β, TLR4, and NF-κB were assayed. The results demonstrated that LPS markedly increased the expression of PRP4, IL-6, IL-1β, TLR4, and NF-κB in the cells. LPS and PRP4 concomitantly altered the morphology of cells from an aggregated, flattened shape to a round shape. Decursin, a pyranocoumarin from inhibited the LPS and PRP4-induced inflammatory response, and reversed the induction of morphological changes. Finally, we established a possible link of LPS with TLR4 and JNK signaling, through which it activated PRP4. Our study provides molecular insights for LPS and PRP4-related pathogenesis and a basis for developing new strategies against metastasis in colorectal cancer and skin melanoma. Our study emphasizes that decursin may be an effective treatment strategy for various cancers in which LPS and PRP4 perform a critical role in inducing inflammatory response and morphological changes leading to cell survival and protection against anti-cancer drugs.
机译:当前的研究是为了分析细菌脂多糖(LPS)和前mRNA加工因子4B(PRP4)在诱导炎症反应和巨噬细胞(Raw 264.7)和结直肠癌(HCT116)以及皮肤中的肌动蛋白细胞骨架重排中的相关性癌细胞(B16-F10)。用LPS刺激细胞系,并检测PRP4的表达以及促炎性细胞因子和蛋白质,如IL-6,IL-1β,TLR4和NF-κB。结果表明,LPS显着增加了细胞中PRP4,IL-6,IL-1β,TLR4和NF-κB的表达。 LPS和PRP4随之将细胞的形态从聚集的扁平形状改变为圆形。 Decursin是一种吡喃香豆素,可抑制LPS和PRP4诱导的炎症反应,并逆转形态变化的诱导作用。最后,我们建立了LPS与TLR4和JNK信号转导的可能链接,并通过该链接激活了PRP4。我们的研究为LPS和PRP4相关的发病机理提供了分子方面的见识,并为开发针对结直肠癌和皮肤黑色素瘤转移的新策略提供了基础。我们的研究强调,去壁素可能是多种癌症的有效治疗策略,其中LPS和PRP4在诱导炎症反应和形态学改变,导致细胞存活和保护抗癌药物方面发挥关键作用。

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