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6篇 您的检索式:作者名="Liu Congwei"
    题名 作者 年代 出处 被引量
1Nodal Promotes mir206 Expression to Control Convergence and Extension Movements During Zebrafish Gastrulation显示文摘Nodal,a member of the transforming growth factor b(TGF-b)superfamily,has been shown to play a role in mesendoderm induction and gastrulation movements.The activity of Nodal signaling can be modulated by microRNAs(miRNAs)as previously reported,but little is known about which miRNAs are regulated by Nodal during gastrulation.In the present study,we found that the expression of mir206,one of the most abundant miRNAs during zebrafish early embryo development,is regulated by Nodal signaling.Abrogation of Nodal signal activity results in defective convergence and extension(CE)movements,and these cell migration defects can be rescued by supplying an excess of mir206,suggesting that mir206 acts downstream of Nodal signaling to regulate CE movements.Furthermore,in mir206 morphants,the expression of cell adhesion molecule E-cadherin is significantly increased,while the key transcriptional repressor of E-cadherin,snail1a,is depressed.Our study uncovers a novel mechanism by which Nodal-regulated mir206 modulates gastrulation movements in connection with the Snail/E-cadherin pathway.Xiuli Liu Yuanqing Ma Congwei Zhang Shi Wei Yu Cao Qiang Wang 2013Journal of Genetics and Genomics2013,40,10:2
2A novel nine-switch PWM rectifier-inverter topology for three-phase UPS applications显示文摘Liu Congwei Wu Bin Zargari N R 2009Journal of European Power Electron2009,19,2:1
3Estimates of rotor position and velocity of brushless DC motors with an EKF显示文摘XU Jing SUN Xudong LIU Congwei 2004Journal of Tsinghua University2004,44,7:1
4SMC1A served as a potential therapeutic target to regulate malignant phenotypes of cervical cancer显示文摘Introduction:Structural maintenance of chromosome 1A(SMC1A)is a crucial compound of the cohesin complex.It has been reported to regulate the epithelial-mesenchymal transition(EMT)process in multiple cancers.Objectives:The present study aims to further clarify the role of SMC1A in cervical cancer.Methods:We analyzed data from four datasets and confirmed that SMC1A showed high expression in cervical cancer samples and was related to poor prognosis of patients with cervical cancer.Cell proliferation of SiHa and C-33A with knockdown of SMC1A was assessed using CCK-8 and colony formation assay.The migration and invasion were estimated by wound healing assay and Transwell assay separately.The effect of SMC1A on the chemosensitivity of cisplatin and paclitaxel in cervical cancer cells was detected by flow cytometry assay.Results:Results of the immunohistochemistry(IHC)assay confirmed that the expression of SMC1A was increased in tumor tissues.The cell viability was remarkably suppressed in SiHa and C-33A by knocking down the expression of SMC1A.The increase of E-cadherin expression and decrease of N-cadherin and Snail expression verified that inhibition of SMC1A suppressed the EMT process of cervical cancer cells.Further,cell migration,and invasion were significantly repressed by the absence of SMC1A.Cisplatin and paclitaxel are effective chemotherapeutic agents used in the treatment of cervical cancer.Silencing of SMC1A remarkably promoted the apoptosis induced by cisplatin and paclitaxel,revealing that the chemotherapy resistance to cisplatin and paclitaxel in cervical cancer could reduce by knocking down SMC1A.Further,metastasis associated with colon cancer 1(MACC1)was identified as the downstream factor of SMC1A.Its upregulation reversed the proliferation and the EMT process induced by SMC1A silencing.Conclusion:Therefore,our study concluded that SMC1A serves as a therapeutic molecular target to regulate the malignant phenotypes of cervical cancer.WEILAN LIU XIAOYAN DUAN KAIYUN QIN YAN JIANG CAIFU ZHAO CONGWEI DAI 2023BIOCELL2023,47,11:0
5Oxygen-assisted direct growth of large-domain and high-quality graphene on glass targeting advanced optical filter applications显示文摘Growing high quality graphene films directly on glass by chemical vapor deposition(CVD)meets a growing demand for constructing high-performance electronic and optoelectronic devices.However,the graphene synthesized by prevailing methodologies is normally of polycrystalline nature with high nucleation density and limited domain size,which significantly handicaps its overall properties and device performances.Herein,we report an oxygen-assisted CVD strategy to allow the direct synthesis of 6-inch-scale graphene glass harvesting markedly increased graphene domain size(from 0.2 to 1.8μm).Significantly,as-produced graphene glass attains record high electrical conductivity(realizing a sheet resistance of 900Ω·sq^(-1)at a visible-light transmittance of 92%)amongst the state-of-the-art counterparts,readily serving as transparent electrodes for fabricating high-performance optical filter devices.This work might open a new avenue for the scalable production and application of emerging graphene glass materials with high quality and low cost.Bingzhi Liu Huihui Wang Wei Gu Le Zhou Zhaolong Chen Yufeng Nie Congwei Tan Haina Ci Nan Wei Lingzhi Cui Xuan Gao Jingyu Sun Yanfeng Zhang Zhongfan Liu 2021Nano Research2021,14,1:0
6Differential regulation of JAK1 expression by ETS1 associated with predisposition to primary biliary cholangitis显示文摘Primary biliary cholangitis(PBC)is an autoimmune liver disease characterized by the destruction of intrahepatic small bile ducts and progressive cholestasis,eventually leading to liver cirrhosis and hepatic failure without appropriate treatment(Terziroli Beretta-Piccoli et al.,2019).Peng Jiang Chan Wang Mingming Zhang Ye Tian Weifeng Zhao Junyi Xin Yexi Huang Zhibin Zhao Wenjuan Sun Jie Long Ruqi Tang Fang Qiu Xingjuan Shi Yi Zhao Li Zhu Na Dai Lei Liu Xudong Wu Jinshan Nie Bo Jiang Youlin Shao Yueqiu Gao Jianjiang Yu Zhigang Hu Zhidong Zang Yuhua Gong Yaping Dai Lan Wang Ningling Ding Ping Xu Sufang Chen Lu Wang Jing Xu Luyao Zhang Junyan Hong Ruonan Qian Hu Li Xuan Jiang Congwei Chen Wenyan Tian Jian Wu Yuzhang Jiang Chongxu Han Kui Zhang Hong Qiu Li Li Hong Fan Liming Chen Jianqiong Zhang Zhongsheng Sun Xiao Han Zhenhua Dai Erguang Li M.Eric Gershwin Zhexiong Lian Xiong Ma Michael F.Seldin Weichang Chen Meilin Wang Xiangdong Liu 2023Journal of Genetics and Genomics2023,50,10:0
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