首页> 外文期刊>Journal of Ethnopharmacology: An Interdisciplinary Journal Devoted to Bioscientific Research on Indigenous Drugs >Pathway analysis of global gene expression change in dendritic cells induced by the polysaccharide from the roots of Actinidia eriantha
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Pathway analysis of global gene expression change in dendritic cells induced by the polysaccharide from the roots of Actinidia eriantha

机译:猕猴桃根系中多糖诱导的树突状细胞全局基因表达变化的途径分析

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Abstract Ethnopharmacological relevance The roots of Actinidia eriantha Benth have been used clinically to treat a variety of cancers in traditional Chinese medicine. The polysaccharide from this drug (AEPS) was previously reported to be a potential antitumor agent with immunomodulatory activity. However, the mechanisms of its antitumor action in immunomodulation have not yet been well-defined. Aim of the study To investigate the effects of AEPS on the phenotypic and functional maturation of dendritic cells and to explore the intracellular signaling mechanisms of its antitumor action in the immunomodulation. Materials and methods The effects of AEPS on the phagocytic activity, expression of surface molecules, mRNA and protein expression levels of cytokines and chemokines in mouse bone-marrow derived dendritic cells (BMDCs) were determined by flow cytometry, qRT-PCR and ELISA, respectively. The transcriptional profile induced by AEPS was established using oligonucleotide microarray, and Ingenuity Pathway Analysis (IPA) was used to identify potential signaling pathways. Western blotting, neutralization experiments and inhibition assay were performed to confirm signaling pathway involved in maturation of DCs induced by AEPS. Furthermore, we discussed the downstream effects of the action of AEPS using clustering, network and pathway mapping approaches. Results AEPS could significantly reduced phagocytic activity, promoted expression of accessory and co-stimulatory molecules, and up-regulated the mRNA and protein expression levels of cytokines and chemokines in BMDCs. Microarray assay revealed that AEPS induced significantly differential expression of 452 genes including up-regulated cytokines (IL-6, IL-1β, TNF-α, IL-10, IL-12p40, IFN-β and IFN-γ), chemokines (MIP-1α, MIP-1β, CCL5, MDC and MCP-1), transcription factors (STAT1, STAT2, STAT5b, IRF1 and IRF7) and pattern recognition receptors (TLR3, DDX58, DHX58 and IFIH1) in the BMDCs. AEPS-induced production of TNF-α and IL-12p40 from BMDCs was inhibited by antibodies against TLR2 and TLR4. Furthermore, AEPS induced the phosphorylation of NF-κB p65 in a time-dependent manner, and BAY?11-7082, an inhibitor of NF-κB, remarkably suppressed the production of cytokines induced by AEPS. Conclusion AEPS triggers the phenotypic and functional maturation of DCs via TLR2/4 and NF-κB signaling pathway, resulting in augmented antitumor immune responses. Our results suggested that AEPS might be helpful in potentiating the efficiency of DC-based cancer immunotherapy. This study further expanded current knowledge on the mechanisms of antitumor action of AEPS. Graphical abstract The polysaccharide from the roots of Actinidia eriantha Benth (AEPS) triggers the phenotypic and functional maturation of DCs through via TLR2/4 and NF-κB signaling pathway resulting in augmented antitumor immune responses, might helpfully increase the efficiency of DC-based cancer immunotherapy. Display Omitted
机译:摘要民族科医药相关性Eliantha Benth的根源已在临床上使用临床治疗中药中的各种癌症。此药物(AEP)的多糖先前据报道是具有免疫调节活性的潜在抗肿瘤剂。然而,其抗肿瘤作用在免疫调节中的机制尚未明确定义。该研究的目的是探讨AEPS对树突细胞表型和功能成熟的影响,并探讨其抗肿瘤作用在免疫调节中的细胞内信号传导机制。通过流式细胞术,QRT-PCR和ELISA测定,材料和方法分别测定AEP对小鼠骨髓源性树突状细胞(BMDC)中细胞因子和趋化因子的吞噬活性,表面分子,mRNA和蛋白表达水平的影响,分别测定。使用寡核苷酸微阵列建立了APS诱导的转录谱,并且使用巧妙的途径分析(IPA)来识别潜在的信号通路。进行蛋白质印迹,中和实验和抑制测定以确认患有AEP诱导的DC的成熟的信号传导途径。此外,我们使用聚类,网络和路径映射方法讨论了AEPS动作的下游效应。结果AEP可能显着降低吞噬活性,促进了辅助和共刺激分子的表达,并上调了BMDC中细胞因子和趋化因子的mRNA和蛋白表达水平。微阵列测定显示,AEPs诱导452基因的显着差异表达,包括上调细胞因子(IL-6,IL-1β,TNF-α,IL-10,IL-12P40,IFN-β和IFN-γ),趋化因子(MIP -1α,MIP-1β,CCL5,MDC和MCP-1),转录因子(STAT1,STAT2,STAT5B,IRF1和IRF7)和在BMDC中的图案识别受体(TLR3,DDX58,DHX58和IFIH1)。通过针对TLR2和TLR4的抗体抑制来自BMDC的AEPS诱导的TNF-α和IL-12P40的产生。此外,AEPs以时间依赖的方式诱导NF-κBP65的磷酸化,并且海湾α11-7082,NF-κB的抑制剂,显着抑制了AEP诱导的细胞因子的产生。结论AEPS通过TLR2 / 4和NF-κB信号通路触发DCS的表型和功能成熟,导致增强抗肿瘤免疫应答。我们的结果表明AEP可能有助于增强直流癌免疫疗法的效率。本研究进一步扩展了目前对AEPS抗肿瘤作用机制的了解。图形摘要来自Actianidia Eriantha Benth(AEPS)的根源的多糖触发了通过TLR2 / 4和NF-κB信号通路通过TLR2 / 4和NF-κB信号传导途径的表型和功能成熟,导致增强抗肿瘤免疫应答,可能有助于提高直流癌的效率免疫疗法。显示省略

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