周 园,杜丽辉,张 娟.宫颈癌组织中YB-1、miR-29a、Nek2的表达与细胞增殖、侵袭基因的相关性[J].肿瘤学杂志,2020,26(3):190-193.
宫颈癌组织中YB-1、miR-29a、Nek2的表达与细胞增殖、侵袭基因的相关性
Expression of YB-1,miR-29a and Nek2 in Cervical Cancer and Its Relation with Cell Proliferation and Invasion
投稿时间:2019-10-23  
DOI:10.11735/j.issn.1671-170X.2020.03.B005
中文关键词:  宫颈癌  细胞增殖  细胞侵袭
英文关键词:cervical cancer  cell proliferation  cell invasion
基金项目:
作者单位
周 园 宜昌市妇幼保健院 
杜丽辉 湖北三峡职业技术学院附属医院 
张 娟 宜昌市妇幼保健院 
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中文摘要:
      摘 要:[目的] 评价宫颈癌组织中YB-1、miR-29a、Nek2表达与细胞增殖、侵袭基因的相关性。[方法] 选取2017年1月至2018年1月我院收治的宫颈癌患者60例,取宫颈癌患者手术切除癌组织及癌旁组织标本,检测癌组织、癌旁组织中YB-1、miR-29a、Nek2、细胞增殖基因和细胞侵袭基因表达情况。[结果] 癌组织中YB-1 mRNA、Nek2 mRNA表达量为(1.52±0.36、1.96±0.35)高于癌旁组织(1.00±0.10、1.00±0.13),miR-29a mRNA表达量为(0.98±0.10)低于癌旁组织(1.06±0.23)(P均<0.05)。癌组织细胞增殖基因YAP1 mRNA、Piwil2 mRNA、EZH2 mRNA、PKCε mRNA表达量高于癌旁组织(P均<0.05)。癌组织细胞侵袭基因Rab11 mRNA、TUG1 mRNA、Gli1 mRNA、FoxM1 mRNA表达量高于癌旁组织(P均<0.05)。[结论] YB-1、Nek2在宫颈癌组织中高表达,miR-29a在宫颈癌组织中低表达,且与癌细胞增殖、侵袭基因相关,其表达异常可促进细胞增殖、侵袭。
英文摘要:
      Abstract:[Objective] To investigate the expression of YB-1,miR-29a,Nek2 in cervical cancer and its relation with cell proliferation and invasion. [Methods] Sixty patients with cervical cancer admitted to our hospital from January 2017 to January 2018 were recruited. The mRNA expression of cell proliferation-related genes YAP1,Piwil2,EZH2,PKCε and cell invasive related-genes Rab11,TUG1,Gli1,FoxM1 in cancer tissues and adjacent tissues were detected by RT-PCR. [Results] The expression of YB-1 mRNA and Nek2 mRNA in cancer tissues was higher than that in adjacent tissues,and the expression of miR-29a mRNA was lower than that in adjacent tissues(P all<0.05 ). The expression levels of Yap1 mRNA,PIWIL2 mRNA,EZH2 mRNA and PKC ε mRNA in cancer tissue were higher than that in adjacent tissue(all P<0.05). The expression levels of Rab11 mRNA,tug1 mRNA,Gli1 mRNA and FoxM1 mRNA in cancer tissues were higher than those in adjacent tissues(P all<0.05). [Conclusion] Cell proliferation and invasion genes YB-1 and Nek2 are highly expressed,miR-29a is low expressed in cervical cancer,which can promote cell proliferation and invasion.
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