← 返回前沿论文

养阴扶正解毒方治疗肝细胞癌的机制与网络药理学分析

英文原题:Mechanisms and network pharmacological analysis of Yangyin Fuzheng Jiedu prescription in the treatment of hepatocellular carcinoma.

PubMed 2022/08/31(内容时间) Cancer Med Q2 · IF 3.5(JCR 2025)

研究概要

FZP被发现是YFJP中发挥抗肿瘤和免疫调节作用对抗HCC的关键拆方。FZP通过HCC相关靶点、通路和生物学过程缓解T细胞耗竭并改善免疫抑制微环境。

研究思路结论见上方概要

通过网络药理学识别养阴扶正解毒方(YFJP)的关键药物,并探讨其抗肝细胞癌(HCC)的治疗作用及潜在机制。

建立H22荷瘤小鼠模型。将30只雄性BALB/c小鼠随机分为五组。小鼠分别口服YFJP拆方或生理盐水,连续14天。治疗期间每2天称重一次,并通过拍照观察肿瘤外观。计算肿瘤抑制率及脾脏和胸腺指数。进行苏木精-伊红染色和免疫组化染色,观察组织学变化和TIL(肿瘤浸润淋巴细胞)。采用末端脱氧核苷酸转移酶介导的dUTP缺口末端标记染色检测细胞凋亡。使用流式细胞术分析CD8+ T细胞比例及程序性细胞死亡蛋白1(PD-1)、T细胞免疫球蛋白域和黏蛋白域-3(Tim-3)、T细胞免疫受体与Ig和ITIM域(TIGIT)的表达。使用Milliplex® MAP小鼠高灵敏度T细胞面板试剂盒检测血清细胞因子的产生。从相应数据库中获取关键药物的活性成分和HCC相关靶蛋白。通过靶点映射筛选HCC治疗的推定靶点,并通过构建成分-靶点网络筛选潜在活性成分。从STRING数据库获取推定靶点的交互靶点,构建蛋白质-蛋白质相互作用网络。基于潜在靶点进行基因本体(GO)和京都基因与基因组百科全书通路富集分析。构建并分析基因-基因内部网络和成分-靶点-通路网络,以筛选关键靶点。采用Western blotting评估荷瘤小鼠模型中关键靶点的蛋白表达。通过分子对接验证关键靶点与化合物的结合活性。

在YFJP的三个拆方中,扶正方(FZP)在治疗H22荷瘤小鼠时表现出显著的抗肿瘤作用并抑制体重下降。FZP提高了H22荷瘤小鼠的免疫器官指数以及脾脏和外周血中CD8+和CD3+T细胞的水平。FZP还降低了CD8+T细胞中PD-1、TIGIT和TIM3的表达以及IL-10、IL-4、IL-6和IL-1β的产生。网络药理学和实验验证表明,FZP治疗HCC的关键靶点为PIK3CA、TP53、MAPK1、MAPK3和EGFR。基于HCC相关信号通路评估了对HCC的治疗效果,包括PIK3-Akt信号通路、PD-L1表达以及癌症中的PD-1检查点通路。GO富集分析表明,FZP通过膜筏、膜微区和其他细胞组分正向调控细胞表面转移酶和激酶的分子功能,从而抑制细胞死亡和程序性细胞死亡。

展开英文摘要原文

OBJECTIVE: To identify the key drugs of Yangyin Fuzheng Jiedu prescription (YFJP) and investigate their therapeutic effects against hepatocellular carcinoma (HCC) and the potential mechanism using network pharmacology. METHODS: The H22 tumor-bearing mouse model was established. Thirty male BALB/c mice were divided randomly into five groups. The mice were orally treated with either disassembled prescriptions of YFJP or saline solution continuously for 14 days. The mice were weighed every 2 days during treatment and the appearance of tumors was observed by photographing. The tumor inhibition rate and the spleen and thymus indexes were calculated. Hematoxylin and eosin and immunohistochemical staining were performed to observe the histological changes and tumor-infiltrating lymphocytes. Cell apoptosis was determined by terminal deoxynucleotidyl transferase-mediated dUTP nick-end labeling staining. The proportion of CD8 + T cells and the expression of programmed cell death protein 1 (PD-1), T cell immunoglobulin domain and mucin domain-3 (Tim-3), and T cell immunoreceptor with Ig and ITIM domains (TIGIT) were analyzed using flow cytometry. The production of serum cytokines was detected using the Milliplex® MAP mouse high sensitivity T cell panel kit. The active components of the key drugs and HCC-related target proteins were obtained from the corresponding databases. The putative targets for HCC treatment were screened by target mapping, and potential active components were screened by constructing a component-target network. The interactive targets of putative targets were obtained from the STRING database to construct the protein-protein interaction network. Gene ontology (GO) and Kyoto encyclopedia of genes and genomes pathway enrichment analyses were performed based on potential targets. The gene-gene inner and component-target-pathway networks were constructed and analyzed to screen the key targets. Western blotting was used to evaluate the protein expression of the key targets in the tumor-bearing mouse model. The binding activity of the key targets and compounds was verified by molecular docking. RESULTS: Among the three disassembled prescriptions of YFJP, the Fuzheng prescription (FZP) showed significant antitumor effects and inhibited weight loss during the treatment of H22 tumor-bearing mice. FZP increased the immune organ index and the levels of CD8 + and CD3 + T cells in the spleen and peripheral blood of H22 tumor-bearing mice. FZP also reduced the expression of PD-1, TIGIT, and TIM3 in CD8 + T cells and the production of IL-10, IL-4, IL-6, and IL-1β. Network pharmacology and experimental validation showed that the key targets of FZP in the treatment of HCC were PIK3CA, TP53, MAPK1, MAPK3, and EGFR. The therapeutic effect on HCC was evaluated based on HCC-related signaling pathways, including the PIK3-Akt signaling pathway, PD-L1 expression, and PD-1 checkpoint pathway in cancer. GO enrichment analysis indicated that FZP positively regulated the molecular functions of transferases and kinases on the cell surface through membrane raft, membrane microarea, and other cell components to inhibit cell death and programmed cell death. CONCLUSION: FZP was found to be the key disassembled prescription of YFJP that exerted antitumor and immunoregulatory effects against HCC. FZP alleviated T cell exhaustion and improved the immunosuppressive microenvironment via HCC-related targets, pathways, and biological processes.

论文信息

作者
Xie Y、Yan F、Wang X、Yu L、Yan H、Pu Q、Li W、Yang Z
单位
Center of Integrative Medicine, Beijing Ditan Hospital, Capital Medical University, Beijing, P.R. China.China
文献类型
非美国政府资助研究
期刊
Cancer medicine2023 Feb
原文标识
PubMed 36043445 · DOI 10.1002/cam4.5064