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siRNA阻断NF-κB信号通路抑制胃癌SGC-7901细胞的增殖及侵袭 被引量:3
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作者 王红军 廖新华 +1 位作者 崔飞博 魏光兵 《西安交通大学学报(医学版)》 CAS CSCD 北大核心 2012年第4期466-469,共4页
目的采用RNA干扰(RNA interference,RNAi)技术下调胃癌细胞株SGC-7901中NF-κB p65基因的表达,探讨其对肿瘤细胞增殖活性和侵袭能力的影响。方法利用阳离子脂质体LipofectamineTM2000将化学合成的人NF-κB p65的小干扰RNA(small interfe... 目的采用RNA干扰(RNA interference,RNAi)技术下调胃癌细胞株SGC-7901中NF-κB p65基因的表达,探讨其对肿瘤细胞增殖活性和侵袭能力的影响。方法利用阳离子脂质体LipofectamineTM2000将化学合成的人NF-κB p65的小干扰RNA(small interference RNA,siRNA)转染入胃癌细胞株SGC-7901中。采用RT-PCR法测定细胞内NF-κB p65mRNA的表达;酶联免疫吸附测定法(ELISA)检测NF-κB亚单位p65的DNA结合活性的改变;采用MTT法测定细胞增殖活性的变化;利用Transwell侵袭实验检测细胞体外侵袭能力的变化。结果与对照组比较,化学合成的人NF-κB p65siRNA能有效地抑制SGC-7901细胞中NF-κB p65mRNA的表达(P<0.05);RelAsiRNA组的p65亚单位与DNA结合活性明显低于对照组(P<0.05),并且RelA siRNA组中SGC-7901细胞的体外侵袭力减弱,增殖活性降低。结论特异的siRNA可以有效阻断NF-κB信号通路,影响人胃癌细胞的增殖活性和体外侵袭能力。 展开更多
关键词 胃癌 nuclear factor-kappa b(nf-κb) RNA干扰 细胞侵袭 细胞增殖
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胸腺素β4壳聚糖纳米粒的制备及其对NF-κB表达调节治疗兔角膜创伤
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作者 计岩 赵敏 邬桂玉 《第三军医大学学报》 CAS CSCD 北大核心 2013年第14期1466-1470,共5页
目的考察胸腺素β4壳聚糖(thymosinβ4 chitosan,Tβ4/CS)纳米粒的体外性质及其在兔角膜创伤中通过调节核转录因子NF-κB的表达修复角膜的作用。方法采用离子交联法制备Tβ4/CS纳米粒,考察纳米粒粒径、zeta电位、包封率及体外释放情况。... 目的考察胸腺素β4壳聚糖(thymosinβ4 chitosan,Tβ4/CS)纳米粒的体外性质及其在兔角膜创伤中通过调节核转录因子NF-κB的表达修复角膜的作用。方法采用离子交联法制备Tβ4/CS纳米粒,考察纳米粒粒径、zeta电位、包封率及体外释放情况。2.0 mg/L的Tβ4/CS纳米粒混悬液滴兔眼,右眼为实验眼,左眼为对照眼,HE染色观察眼表组织学变化,并观察其是否有眼表毒性。建立兔角膜创伤模型,右眼作为实验眼,采用单纯随机抽样法,分为Tβ4/CS纳米粒组(A组)、Tβ4滴眼液组(B组)、损伤对照组(C组),每组20只。治疗后1、3、7、14 d大体观察及HE染色观察角膜修复情况,并使用RT-PCR方法检测角膜核转录因子NF-κB的表达。结果 Tβ4/CS纳米粒大部分呈规则的球型,粒径为(354.0±1.6)nm,zeta电位为(22.5±0.7)mV,包封率为(76.2±2.8)%,体系较为稳定,具有缓释功能。Tβ4/CS纳米粒滴眼液对兔眼睑、结膜、角膜无损害;明显下调兔创伤角膜中的NF-κB的表达促进角膜修复,各时间点各组间差异具有统计学意义(P<0.01)。结论胸腺素β4壳聚糖纳米粒滴眼液通过下调兔创伤角膜中的NF-κB的表达促进角膜修复,对兔眼表无损害。 展开更多
关键词 角膜创伤愈合 胸腺素Β4 纳米粒 药物缓释 核转录因子
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Integrating network pharmacology and pharmacological evaluation for deciphering the mechanism of(-)-epigallocatechin-3-gallate alleviating ethanol-induced endothelial cells injury
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作者 XU Jie ZHANG Shi-hao +2 位作者 YAN Yu HAO Ting XU Shou-zhu 《中国药理学与毒理学杂志》 CAS 北大核心 2021年第10期774-774,共1页
Objective To investigate the potential therapeutic targets and pharmacological mechanism of(-)-epigallocatechin-3-gallate(EGCG)based on network pharmacology and experimental verification.METHODS The druggability of EG... Objective To investigate the potential therapeutic targets and pharmacological mechanism of(-)-epigallocatechin-3-gallate(EGCG)based on network pharmacology and experimental verification.METHODS The druggability of EGCG was measured by the traditional Chinese medicine systems pharmacology(TCMSP)server,and potential targets of EGCG were identified by Pharm Mapper and Drug Repositioning and Adverse drug Reaction via Chemical-Protein Interactome(DRAR-CPI).The potential targets were imported into GeneMANIA database to obtain the protein-protein direct interaction network,and target physical interaction,co-expression,prediction,genetic interaction,and shared protein domains.The biological process,molecular functions,cellular components and KEGG signaling pathways of potential targets were analyzed using DAVID database.For further study,ethanol was used to establish a model of endothelial injury in vitro.The cell viability was assayed by MTT method,the cellular apoptosis was stained by Annexin V/PI,and the expression levels of Bcl-2,Bax and cleved-caspase-3 were tested by Western blotting.Then,JC-1 and nuclear translocation of NF-κB experiments were used to study the mitochondrial membrane potential and nuclear translocation.RESULTS The oral availability of EGCG was 55.09%(≥30%)and drug-like index was 0.77(≥0.18),which were considered pharmacokinetically active.17 potential targetable proteins of EGCG were predicted by Pharm Mapper and DRAR-CPI.Further research showed that 68.13%displayed similar co-expression characteristics,26.11%physical interactions,and 2.74%shared the same protein domain.The depth network analysis results showed that the biofunctions of EGCG were mainly by regulating glutathione derivative biosynthetic process,glutathione metabolic process,nitrogen compound metabolic process etc..via drug binding,catalytic activity,glutathione transferase activity,anion binding etc..in sarcoplasmic reticulum,spindle pole,microtubule cytoskeleton and cytoplasm.KEGG enrichment analysis showed that Glutathione metabolism,IL^(-1)7 signaling pathway,EGFR tyrosine kinase inhibitor resistance,PI3K-Akt signaling pathway and other pathways were involves in the biofunction of EGCG.The above analyses indicated that EGCG exerts its biofunction through antioxidant and anti-inflammatory mechanisms.The experimental results showed that ethanol 20.0 mmol·L^(-1) decreased cell viability,Bcl-2 expression,and increased cell apoptosis,the intracellular ROS,as well as the expression of Bax and cleaved-caspase-3 of human endothelial cells.However,treatment of the cells with EGCG can significantly alleviate ethanol induced endothelial cells injury.Further study showed that EGCG significantly alleviates ethanol induced mitochondrial depolarization and nuclear translocation of NF-κB.CONCLUSIONS EGCG exerts pharmacological efficacies on ethanol induced endothelial cell injury through multi-target,multi-function and multi-pathway mode.Protective effect of EGCG on ethanol induced cell injury was mainly through alteration of mitochondrial function and NF-κB translocation.Therefore,EGCG have great potential in protecting against endothelial dysfunction of the persons who are chronically abuse of ethanol.This study also provides a new understanding of EGCG in clinical application on cardiovascular and cerebrovascular diseases. 展开更多
关键词 (-)-epigallocatechin-3-gallate ETHANOL network pharmacology target fishing nuclear translocation of nf-κb
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