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霍山石斛多糖经 FXR1-IL-35 轴信号通路抑制非小细胞肺癌增殖与免疫逃逸

英文原题:Dendrobium huoshanense polysaccharide inhibits NSCLC proliferation and immune evasion via FXR1-IL-35 axis signaling pathway.

查看英文原题

Dendrobium huoshanense polysaccharide inhibits NSCLC proliferation and immune evasion via FXR1-IL-35 axis signaling pathway.

PubMed 2025/04/21(内容时间) J Nat Med Q3 · IF 2.6(JCR 2025)

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中文摘要

霍山石斛在肺癌治疗中的潜在优势受到特别关注,但其相关分子机制尚不清楚。首先,研究者通过网络药理学获得霍山石斛的8种活性成分及159个有效作用靶点,并利用STRING数据库分析靶点相互作用,构建蛋白质互作(PPI)网络,开展KEGG、GO和Hallmark富集分析。结合靶点富集和IL-35基因集富集分析(GSEA),结果提示cDHPs治疗非小细胞肺癌(NSCLC)的机制可能涉及紧密连接及NSCLC相关通路。

进一步鉴定出FXR1和ACTR3为核心治疗靶点,其高表达与患者预后不良显著相关。单细胞数据分析还提示,IL-35表达可能增加CD4−CTLA4−Treg细胞比例,造成免疫抑制性微环境。随后在体内实验中,研究者通过流式细胞术检测iTr35,并以RT-PCR、蛋白质印迹和ELISA检测IL-35水平,同时测定NK细胞活性,以探究cDHPs的免疫调节和抗肿瘤机制。给予cDHPs后,CD4+ T细胞向iTr35转化受到抑制,p35和EBI3的蛋白及mRNA水平降低,血清IL-35和IL-4水平下降,IFN-γ水平及小鼠NK细胞活性升高,从而增强机体抗肿瘤免疫。

最后,对TISMO数据库中荷瘤小鼠免疫治疗队列测序数据的分析显示,cDHPs与PD-1/PD-L1抗体联合可增强效应功能,进而提高PD-1/PD-L1抗体疗效。上述发现提示,cDHPs通过FXR1-IL-35轴信号通路抑制NSCLC增殖和免疫逃逸。

展开英文摘要原文

Dendrobium huoshanense has received special attention for its advantages in the treatment of lung cancer, but the underlying molecular mechanisms are not yet well understood. First, we obtained 8 active ingredients and 159 effective action targets of Dendrobium huoshanense using network pharmacology, and searching target interactions through STRING, constructing the PPI network and KEGG, GO and Hallmark enrichment analysis.

Then, we combined target's enrichment analysis and GSEA enrichment analysis of IL-35, indicating the mechanism of cDHPs for non-small cell lung cancer (NSCLC) may be related to tight junction and NSCLC pathway.

Further, FXR1 and ACTR3 were identified as core therapeutic targets, and high expression of FXR1 or ACTR3 was significantly associated with poor prognosis of patients. The analysis of single-cell data also indicated that the percentage of CD4-CTLA4-Treg cells may be increased by the expression of IL-35, resulting in a suppressive immune microenvironment.

Next, In vivo experiment, we detected iTr35 by flow cytometry, detected IL-35 level by RT-PCR, Western blotting and ELISA, and detected NK cell activity to explore the immunomodulatory effects and anti-tumor mechanism of cDHPs. After cDHPs administration, the conversion of CD4 + T cells to iTr35 is inhibited, p35 and EBI3 in both protein and mRNA levels, the levels of IL-35 and IL-4 in serum decreased. The levels of IFN- , while the activity of NK cells in mice increased, enhancing the anti-tumor immune effect of the organism.

Finally, analysis of sequencing data from the immunotherapy cohort of tumor-bearing mice obtained from the TISMO database shows that the combination of cDHPs and PD-1/PD-L1 antibodies improves effector and thus PD-1/PD-L1 antibody efficacy.

These findings suggest that cDHPs inhibit NSCLC proliferation and immune escape via the FXR1-IL-35 axis signaling pathway.

论文信息

作者
Zhu X、Yin G、Xu J、Tang X、Yu F
第一作者单位
Translational Medicine Center, The Second Affiliated Hospital of Wannan Medical College, Wuhu, 241000, Anhui Province, China.China
通讯作者单位
Department of Medical Microbiology and Immunology, School of Preclinical Medicine, Wannan Medical College, Wuhu, 241001, Anhui Province, China. yufang9244@163.com.China
期刊
Journal of natural medicines2025 Jul
原文标识
PubMed 40259042 · DOI 10.1007/s11418-025-01894-7