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find Author "许建新" 2 results
  • 大鼠左肺原位移植模型的改进

    目的 建立改进的大鼠左肺原位移植模型,使大鼠肺移植模型的建立更加简便、有效和稳定。 方法 将40只SD大鼠随机配对,采用三袖套法进行肺动、静脉的吻合,内支架进行支气管重建,建立大鼠肺移植模型。 结果 进行大鼠左肺原位移植正式实验20对,供肺灌注到摘取时间为15±3 min,供肺完成体外套管时间为5±2 min,供、受体动静脉和支气管套管吻合时间为30±3 min,总手术时间63±4 min。手术成功18只,手术成功率90%;失败2只,其中操作失误死亡1只,肺静脉撕裂1只。血气、病理学等检查证实成功复制了肺移植缺血再灌注模型。 结论 改进的大鼠左肺原位移植模型操作简便,成功率高,值得推广和应用。

    Release date:2016-08-30 06:05 Export PDF Favorites Scan
  • The prognostic value and immune regulatory role of BRF1 in pan-cancer, and its function in esophageal squamous cell carcinoma

    ObjectiveTo investigate the pan-cancer expression profile, prognostic value, co-expression networks, immune regulatory roles of BRF1, and its biological functions and molecular mechanisms in esophageal squamous cell carcinoma (ESCC). MethodsIntegrated analysis of TCGA pan-cancer datasets was performed to evaluate BRF1 expression differences between tumor/normal tissues, survival correlations, co-expressed gene-enriched pathways, and immune features (immune checkpoints, cytokines, immune cell infiltration). GEO datasets were used to validate BRF1 expression in ESCC. BRF1 was knocked down using siRNA in ESCC cells, with MTT and Transwell assays assessing proliferation/migration, and Western blot analyzing proliferation- (PCNA) and migration-related proteins (Vimentin, MMP, E-Cadherin). TCGA data were analyzed to explore BRF1-ferroptosis correlations. ResultsBRF1 was significantly upregulated in over 20 cancer types. High BRF1 expression predicted poor prognosis in adrenocortical carcinoma (ACC) and prostate adenocarcinoma (PRAD). BRF1 positively regulated T cell-mediated cell death pathways in ESCA and circadian rhythm pathways in PAAD. BRF1 exhibited cancer-type-specific correlations with immune checkpoints, cytokine networks, and immune cell infiltration. In vitro, BRF1 knockdown suppressed ESCC proliferation (PCNA downregulation) and migration (Vimentin/MMP downregulation, E-Cadherin upregulation). BRF1 expression positively correlated with ferroptosis antagonists (GPX4, HSPA5, SLC7A11). ConclusionBRF1 demonstrates complex pan-cancer expression and functional heterogeneity, modulating tumor progression and immune infiltration. BRF1 promotes ESCC proliferation and migration, potentially via ferroptosis resistance regulation, highlighting its potential as a therapeutic target in ESCC.

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