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首页> 外文期刊>Cancer Cell International >Bone morphogenetic protein 2 (BMP2) induces growth suppression and enhances chemosensitivity of human colon cancer cells
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Bone morphogenetic protein 2 (BMP2) induces growth suppression and enhances chemosensitivity of human colon cancer cells

机译:骨形态发生蛋白2(BMP2)诱导生长抑制并增强人结肠癌细胞的化学敏感性

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Background Molecular profiling of colorectal cancer (CRC) based on global gene expression has revealed multiple dysregulated signalling pathways associated with drug resistance and poor prognosis. However, the role of BMP2 signaling in CRC is not fully characterised. Methods Bioinformatics data analysis were conducted on the GSE21510 dataset. Leniviral technology was utilized to stably express BMP2 in the HCT116 CRC model. Gene expression profiling was conducted using Agilent microarray platform while data normalization and bioinformatics were conducted using GeneSpring software. Changes in gene expression were assessed using qRT-PCR. AlamarBlue assay was used to assess cell viability in vitro. In vivo experiments were conducted using SCID mice. Results Our data revealed frequent downregulation of BMP2 in primary CRC tissues. Additionally, interrogation of publically available gene expression datasets revealed significant downregulation of BMP2 in metastatic recurrent compared to non-metastatic cancer (p?=?0.02). Global gene expression analysis in CRC cells over-expressing BMP2 revealed multiple dysregulated pathways mostly affecting cell cycle and DNA damage response. Concordantly, lentiviral-mediated re-expression of BMP2 inhibited HCT116 CRC growth, sphere formation, clonogenic potential, cell migration, and sensitized CRC cells to 5-fluorouracil (5-FU) in vitro. Additionally, BMP2 inhibited CRC tumor formation in SCID mice. Conclusions Our data revealed an inhibitory role for BMP2 in CRC, suggesting that restoration of BMP2 expression could be a potential therapeutic strategy for CRC.
机译:背景基于全球基因表达的大肠癌(CRC)分子分析揭示了与药物耐药性和不良预后相关的多种信号通路失调。但是,BMP2信号在CRC中的作用尚未完全表征。方法对GSE21510数据集进行生物信息学数据分析。在HCT116 CRC模型中,利用了Leniviral技术稳定表达BMP2。使用安捷伦微阵列平台进行基因表达谱分析,同时使用GeneSpring软件进行数据归一化和生物信息学分析。使用qRT-PCR评估基因表达的变化。 AlamarBlue分析用于评估体外细胞活力。使用SCID小鼠进行体内实验。结果我们的数据显示,原发性CRC组织中BMP2频繁下调。此外,对可公开获得的基因表达数据集的调查显示,与非转移性癌症相比,转移性复发中BMP2的显着下调(p = 0.02)。过度表达BMP2的CRC细胞中的全局基因表达分析显示,存在多种失调的途径,主要影响细胞周期和DNA损伤反应。相应地,慢病毒介导的BMP2的重新表达在体外抑制HCT116 CRC的生长,球形成,克隆潜力,细胞迁移以及使CRC细胞对5-氟尿嘧啶(5-FU)敏感。此外,BMP2抑制SCID小鼠中CRC肿瘤的形成。结论我们的数据揭示了BMP2在CRC中的抑制作用,这表明BMP2表达的恢复可能是CRC的潜在治疗策略。

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