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Network Pharmacology and Experimental Verification Unraveled The Mechanism of Pachymic Acid in The Treatment of Neuroblastoma
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作者 LIU Hang ZHU Yu-Xin +6 位作者 guo si-lin PAN Xin-Yun XIE Yuan-Jie LIAO Si-Cong DAI Xin-Wen SHEN Ping XIAO Yu-Bo 《生物化学与生物物理进展》 北大核心 2025年第9期2376-2392,共17页
Objective Traditional Chinese medicine(TCM)constitutes a valuable cultural heritage and an important source of antitumor compounds.Poria(Poria cocos(Schw.)Wolf),the dried sclerotium of a polyporaceae fungus,was first ... Objective Traditional Chinese medicine(TCM)constitutes a valuable cultural heritage and an important source of antitumor compounds.Poria(Poria cocos(Schw.)Wolf),the dried sclerotium of a polyporaceae fungus,was first documented in Shennong’s Classic of Materia Medica and has been used therapeutically and dietarily in China for millennia.Traditionally recognized for its diuretic,spleen-tonifying,and sedative properties,modern pharmacological studies confirm that Poria exhibits antioxidant,anti-inflammatory,antibacterial,and antitumor activities.Pachymic acid(PA;a triterpenoid with the chemical structure 3β-acetyloxy-16α-hydroxy-lanosta-8,24(31)-dien-21-oic acid),isolated from Poria,is a principal bioactive constituent.Emerging evidence indicates PA exerts antitumor effects through multiple mechanisms,though these remain incompletely characterized.Neuroblastoma(NB),a highly malignant pediatric extracranial solid tumor accounting for 15%of childhood cancer deaths,urgently requires safer therapeutics due to the limitations of current treatments.Although PA shows multi-mechanistic antitumor potential,its efficacy against NB remains uncharacterized.This study systematically investigated the potential molecular targets and mechanisms underlying the anti-NB effects of PA by integrating network pharmacology-based target prediction with experimental validation of multi-target interactions through molecular docking,dynamic simulations,and in vitro assays,aimed to establish a novel perspective on PA’s antitumor activity and explore its potential clinical implications for NB treatment by integrating computational predictions with biological assays.Methods This study employed network pharmacology to identify potential targets of PA in NB,followed by validation using molecular docking,molecular dynamics(MD)simulations,MM/PBSA free energy analysis,RT-qPCR and Western blot experiments.Network pharmacology analysis included target screening via TCMSP,GeneCards,DisGeNET,SwissTargetPrediction,SuperPred,and PharmMapper.Subsequently,potential targets were predicted by intersecting the results from these databases via Venn analysis.Following target prediction,topological analysis was performed to identify key targets using Cytoscape software.Molecular docking was conducted using AutoDock Vina,with the binding pocket defined based on crystal structures.MD simulations were performed for 100 ns using GROMACS,and RMSD,RMSF,SASA,and hydrogen bonding dynamics were analyzed.MM/PBSA calculations were carried out to estimate the binding free energy of each protein-ligand complex.In vitro validation included RT-qPCR and Western blot,with GAPDH used as an internal control.Results The CCK-8 assay demonstrated a concentration-dependent inhibitory effect of PA on NB cell viability.GO analysis suggested that the anti-NB activity of PA might involve cellular response to chemical stress,vesicle lumen,and protein tyrosine kinase activity.KEGG pathway enrichment analysis suggested that the anti-NB activity of PA might involve the PI3K/AKT,MAPK,and Ras signaling pathways.Molecular docking and MD simulations revealed stable binding interactions between PA and the core target proteins AKT1,EGFR,SRC,and HSP90AA1.RT-qPCR and Western blot analyses further confirmed that PA treatment significantly decreased the mRNA and protein expression of AKT1,EGFR,and SRC while increasing the HSP90AA1 mRNA and protein levels.Conclusion It was suggested that PA may exert its anti-NB effects by inhibiting AKT1,EGFR,and SRC expression,potentially modulating the PI3K/AKT signaling pathway.These findings provide crucial evidence supporting PA’s development as a therapeutic candidate for NB. 展开更多
关键词 pachymic acid network pharmacology molecular dynamics simulation
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强场太赫兹光源及其物质调控研究(特邀) 被引量:8
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作者 田野 郭丝霖 +3 位作者 曾雨珊 宋立伟 冷雨欣 李儒新 《光子学报》 EI CAS CSCD 北大核心 2020年第11期3-25,共23页
介绍了基于超快激光的强场太赫兹波产生技术、探测技术及其在物质调控研究中的应用.强场太赫兹波的产生机制主要包括:晶体非线性效应、激光等离子体相互作用、太赫兹自由电子激光等.太赫兹波的探测技术包括:电光采样探测、空气偏压相干... 介绍了基于超快激光的强场太赫兹波产生技术、探测技术及其在物质调控研究中的应用.强场太赫兹波的产生机制主要包括:晶体非线性效应、激光等离子体相互作用、太赫兹自由电子激光等.太赫兹波的探测技术包括:电光采样探测、空气偏压相干探测和单发探测等.最后介绍了强场太赫兹光源在物质调控研究中的应用,特别指出将强场太赫兹光源与第四代X射线光源相结合,在物性表征和调控方面具有广阔的应用前景. 展开更多
关键词 超快激光 强场太赫兹波 太赫兹波的产生和探测 物质调控
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一步法制备锗/MXene复合材料及其作为锂离子电池负极的研究 被引量:3
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作者 郭丝霖 康帅 陆文强 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2020年第1期105-111,共7页
通过化学溶液法一步制备锗/MXene复合材料,在MXene表面均匀负载了锗金属纳米颗粒。采用SEM和TEM对Ge/MXene复合材料进行了微观形貌分析,探索了复合材料的形成过程,结果表明,Ge/MXene复合材料是二维结构形貌,其元素分布均一。用Ge/MXene... 通过化学溶液法一步制备锗/MXene复合材料,在MXene表面均匀负载了锗金属纳米颗粒。采用SEM和TEM对Ge/MXene复合材料进行了微观形貌分析,探索了复合材料的形成过程,结果表明,Ge/MXene复合材料是二维结构形貌,其元素分布均一。用Ge/MXene复合材料制备了电极,并组装成纽扣电池进行充放电性能测试,对电池的比容量、倍率、循环稳定性能进行了系统分析。测试结果表明,Ge含量为50%时的电化学性能最佳,0.2C下第5~100圈的容量稳定在1200 mAh/g,载量为1 mg/cm^2;载量提高到2 mg/cm^2时的比容量依然能达到450 mAh/g。 展开更多
关键词 MXene 锗纳米颗粒 锂离子电池 负极材料
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1/f噪声及其在二维材料石墨烯中的研究进展
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作者 刘瑛 郭斯琳 +4 位作者 张勇 杨鹏 吕克洪 邱静 刘冠军 《物理学报》 SCIE EI CAS CSCD 北大核心 2023年第1期268-283,共16页
1/f噪声具有丰富的物理内涵,既是科学研究的量化工具,也是电子器件重要性能指标.本文从通用数学形式和物理背景两个方面归纳总结1/f噪声模型.首先介绍了基于马尔可夫过程和基于扩散过程的1/f噪声通用数学模型.在此基础上,溯源1/f噪声物... 1/f噪声具有丰富的物理内涵,既是科学研究的量化工具,也是电子器件重要性能指标.本文从通用数学形式和物理背景两个方面归纳总结1/f噪声模型.首先介绍了基于马尔可夫过程和基于扩散过程的1/f噪声通用数学模型.在此基础上,溯源1/f噪声物理模型的发展历程,总结五类典型物理模型,包括Mc Whorter模型、Hooge模型、Voss-Clarker模型、Dutta-Horn模型、干涉模型以及Hung统一模型.二维材料石墨烯让1/f噪声研究重归学术热点,本文梳理了当前石墨烯1/f噪声研究中形成的共识性研究成果,提出石墨烯低频噪声研究的三层次分类分析模型,分析了不同层面噪声机理研究代表性成果,归纳总结了各层面可能的主导机制.通过比较不同团队报道的石墨烯1/f噪声栅极调控特征谱型及测试条件,分析了复杂多变栅控谱型形成原因.基于分析结论,为避免非本征噪声干扰,提出了石墨烯本征背景1/f噪声规范性测量方案,为厘清和揭示石墨烯1/f噪声机制及特性探索可行技术途径. 展开更多
关键词 1/f噪声 噪声机理 石墨烯 特征谱型
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