KCNH2 regulates the growth and metastasis of pancreatic cancer

Jinghao Lei, Qiang Wang, Tengfei Qu, Lichao Cha, Hanxiang Zhan, Jianwei Xu, Shanglong Liu, Lantian Tian, Chuandong Sun, Jingyu Cao, Fabo Qiu, Weidong Guo, Bin Zhou
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Abstract

Objective: Due to the characteristics of insidious onset and early metastasis of pancreatic cancer (PC), patients are often diagnosed at an advanced stage and often delayed in completing surgical resection timely, resulting in poor prognosis. Therefore, this study aims to explore the expression of potassium voltage-gated channel subfamily H member 2 (KCNH2) in PC and its relationship with clinicopathological parameters and the related mechanisms. Methods: GEPIA database and immunohistochemical staining were used to analyze the difference in KCNH2 expression between PC and adjacent tissue in RNA and protein levels. Chi-squared test was used to evaluate the relationship between KCNH2 expression and clinicopathological features. The Cox regression model was used for multivariate analysis and univariate analysis. Histological diagnosis was performed according to World Health Organization (WHO) criteria to evaluate the relationship between KCNH2 expression and clinicopathological features. Results: KCNH2 expression was upregulated in PC compared with normal pancreatic tissue. In addition, the knockdown of KCNH2 inhibits PC cell proliferation, migration, invasion, and epithelial-mesenchymal transformation and promotes their apoptosis. In addition, clinical data showed that the abnormal expression of KCNH2 in PC was related to the tumor stage. Patients with high expression of KCNH2 had a poor prognosis. Conclusions: KCNH2 is expected to be a novel targeted molecule in treating PC.
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KCNH2调控胰腺癌的生长和转移
目的:由于胰腺癌(PC)起病隐匿、转移早的特点,患者往往诊断较晚,手术切除往往不能及时完成,导致预后较差。因此,本研究旨在探讨钾电压门控通道亚家族H成员2 (KCNH2)在PC中的表达及其与临床病理参数的关系及相关机制。方法:采用GEPIA数据库和免疫组化染色,分析PC与癌旁组织中KCNH2在RNA和蛋白水平上的表达差异。采用卡方检验评价KCNH2表达与临床病理特征的关系。采用Cox回归模型进行多因素分析和单因素分析。按照世界卫生组织(WHO)标准进行组织学诊断,评价KCNH2表达与临床病理特征的关系。结果:与正常胰腺组织相比,PC中KCNH2表达上调。此外,KCNH2的下调抑制了PC细胞的增殖、迁移、侵袭和上皮间质转化,并促进了它们的凋亡。此外,临床资料显示,KCNH2在PC中的异常表达与肿瘤分期有关。KCNH2高表达患者预后较差。结论:KCNH2有望成为治疗PC的新型靶向分子。
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