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首页> 外文期刊>Biological research: BR >Knockdown of ZFR suppresses cell proliferation and invasion of human pancreatic cancer
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Knockdown of ZFR suppresses cell proliferation and invasion of human pancreatic cancer

机译:ZFR的抑制可抑制人胰腺癌的细胞增殖和侵袭

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Zinc finger RNA binding protein (ZFR) is involved in the regulation of growth and cancer development. However, little is known about ZFR function in pancreatic cancer. Herein, to investigate whether ZFR is involved in tumor growth, Oncomine microarray data was firstly used to evaluate ZFR gene expression in human pancreatic tumors. Then short hairpin RNA (shRNA) targeting ZFR was designed and delivered into PANC-1 pancreatic cancer cells to knock down ZFR expression. Cell viability, cell proliferation and cell cycle analysis after ZFR knockdown were determined by MTT, colony forming and FACS, respectively. In addition, cell migration and invasion were assessed using the Transwell system. The expression of ZFR was significantly higher in pancreatic tumors than normal pancreas tissues by Oncomine database analysis. Knockdown of ZFR by shRNA-expressing lentivirus significantly decreased the viability and invasion ability of pancreatic cancer cells. Moreover, FACS analysis showed that knockdown of ZFR in PANC-1 cells caused a significant cell cycle arrest at G0/G1 phase. Furthermore, knockdown of ZFR decreased the levels of CDK2, CDK4, CyclinA and CyclinD1 and enhanced the expression of p27, which has evidenced by qRT-PCR and Western blot analysis. Knockdown of ZFR might provide a novel alternative to targeted therapy of pancreatic cancer and deserves further investigation.
机译:锌指RNA结合蛋白(ZFR)参与调节生长和癌症的发展。但是,关于ZFR在胰腺癌中的功能知之甚少。在此,为了研究ZFR是否参与肿瘤生长,首先使用Oncomine微阵列数据来评估人胰腺肿瘤中ZFR基因的表达。然后设计靶向ZFR的短发夹RNA(shRNA),并将其传递到PANC-1胰腺癌细胞中以降低ZFR表达。分别通过MTT,集落形成和FACS确定ZFR敲低后的细胞活力,细胞增殖和细胞周期分析。另外,使用Transwell系统评估细胞迁移和侵袭。通过Oncomine数据库分析,ZFR在胰腺肿瘤中的表达明显高于正常胰腺组织。表达shRNA的慢病毒对ZFR的抑制显着降低了胰腺癌细胞的活力和侵袭能力。此外,FACS分析表明,PANC-1细胞中ZFR的敲低导致细胞周期明显停滞在G0 / G1期。此外,通过qRT-PCR和Western印迹分析证明,ZFR的敲低降低了CDK2,CDK4,CyclinA和CyclinD1的水平并增强了p27的表达。降低ZFR可能为胰腺癌的靶向治疗提供一种新颖的替代方法,值得进一步研究。

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