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miR-224-5p对人肝癌细胞HepG2增殖、凋亡、侵袭及迁移的作用机制
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作者 顾铃毓 王利新 +1 位作者 崔洁 董辉 《安徽医科大学学报》 北大核心 2025年第6期1022-1029,共8页
目的 探讨miR-224-5p对人肝癌细胞HepG2细胞增殖、凋亡、侵袭和迁移的作用机制。方法 从TCGA数据集获取肝细胞癌患者中miR-224-5p和早期生长反应因子2(EGR2)的RNA表达水平;体外培养人正常肝细胞LO2和肝癌细胞HepG2细胞,并在HepG2细胞中... 目的 探讨miR-224-5p对人肝癌细胞HepG2细胞增殖、凋亡、侵袭和迁移的作用机制。方法 从TCGA数据集获取肝细胞癌患者中miR-224-5p和早期生长反应因子2(EGR2)的RNA表达水平;体外培养人正常肝细胞LO2和肝癌细胞HepG2细胞,并在HepG2细胞中转染慢病毒载体(敲低miR-224-5p)、小干扰RNA片段或过表达载体(干扰及过表达EGR2)。实时荧光定量PCR实验(qPCR)检测肝癌cDNA芯片及细胞中miR-224-5p及EGR2的RNA表达水平;Western blot检测细胞中EGR2蛋白表达水平;双荧光素酶报告基因实验检测miR-224-5p与EGR2结合情况;EdU实验检测HepG2细胞阳性率,流式细胞术检测细胞凋亡率,Transwell实验检测细胞侵袭数,划痕实验检测细胞迁移率。结果 与癌旁组织相比,HCC组织中miR-224-5p表达升高,EGR2 mRNA水平表达下降;与LO2组细胞相比,HepG2细胞中miR-224-5p表达升高,EGR2 mRNA及蛋白表达下降;与Lv-sh-NC组相比,Lv-sh-miR-224-5p组HepG2细胞24 h EdU阳性细胞率、细胞侵袭数及48 h细胞迁移率降低,细胞凋亡率增加;与Oe-NC组相比,Oe-EGR2组HepG2细胞24 h EdU阳性细胞率、细胞侵袭数及48 h细胞迁移率降低,细胞凋亡率增加;与Lv-sh-NC组相比,Lv-sh-miR-224-5p组EGR2蛋白水平表达升高;与Lv-sh-miR-224-5p+si-NC组相比,Lv-sh-miR-224-5p+si-EGR2组HepG2细胞24 h EdU阳性细胞率、细胞侵袭数及48 h细胞迁移率升高,细胞凋亡率下降。结论 miR-224-5p通过与EGR2结合从而促进HepG2细胞增殖、侵袭和迁移,抑制细胞凋亡。 展开更多
关键词 miR-224-5p HEPG2 增殖 凋亡 侵袭及迁移 早期生长反应因子2
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EGR2 maintains neuropathic pain by promoting microglial phagocytosis
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作者 XI Caiyun ZHANG Jianxi +6 位作者 HUANG Zhifeng HE Liqiong ZOU Kailu XU Xiaoping GUO Qulian SUN Bei HUANG Changsheng 《中南大学学报(医学版)》 北大核心 2025年第4期586-601,共16页
Objective:Neuropathic pain(NP)is one of the most common forms of chronic pain,yet current treatment options are limited in effectiveness.Peripheral nerve injury activates spinal microglia,altering their inflammatory r... Objective:Neuropathic pain(NP)is one of the most common forms of chronic pain,yet current treatment options are limited in effectiveness.Peripheral nerve injury activates spinal microglia,altering their inflammatory response and phagocytic functions,which contributes to the progression of NP.Most current research on NP focuses on microglial inflammation,with relatively little attention to their phagocytic function.Early growth response factor 2(EGR2)has been shown to regulate microglial phagocytosis,but its specific role in NP remains unclear.This study aims to investigate how EGR2 modulates microglial phagocytosis and its involvement in NP,with the goal of identifying potential therapeutic targets.Methods:Adult male Sprague-Dawley(SD)rats were used to establish a chronic constriction injury(CCI)model of the sciatic nerve.Pain behaviors were assessed on days 1,3,7,10,and 14 post-surgery to confirm successful model induction.The temporal and spatial expression of EGR2 in the spinal cord was examined using real-time quantitative PCR(RT-qPCR),Western blotting,and immunofluorescence staining.Adeno-associated virus(AAV)was used to overexpress EGR2 in the spinal cord,and behavioral assessments were performed to evaluate the effects of EGR2 modulation of NP.CCI and lipopolysaccharide(LPS)models were established in animals and microglial cell lines,respectively,and changes in phagocytic activity were measured using RT-qPCR and fluorescent latex bead uptake assays.After confirming the involvement of microglial phagocytosis in NP,AAV was used to overexpress EGR2 in both in vivo and in vitro models,and phagocytic activity was further evaluated.Finally,eukaryotic transcriptome sequencing was conducted to screen differentially expressed mRNAs,followed by Gene Ontology(GO)and Kyoto Encyclopedia of Genes and Genomes(KEGG)pathway analyses to identify potential downstream effectors of EGR2.Results:The CCI model successfully induced NP.Following CCI,EGR2 expression in the spinal cord was upregulated in parallel with NP development.Overexpression of EGR2 via spinal AAV injection enhanced microglial phagocytic activity and increased pain hypersensitivity in rats.Both animal and cellular models showed that CCI or LPS stimulation enhanced microglial phagocytosis,which was further amplified by EGR2 overexpression.Transcriptomic analysis of spinal cord tissues from CCI rats overexpressing EGR2 revealed upregulation of numerous genes associated with microglial phagocytosis and pain regulation.Among them,Lag3 emerged as a potential downstream target of EGR2.Conclusion:EGR2 contributes to the maintenance of NP by enhancing microglial phagocytosis in the spinal dorsal horn. 展开更多
关键词 neuropathic pain spinal dorsal horn early growth response factor 2 MICROGLIA PHAGOCYTOSIS
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