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4篇 您的检索式:作者名="ZHOU Entao"
    题名 作者 年代 出处 被引量
1Construction of on-line monitoring and fault diagnosis system for large scale complicated hydraulic equipment 显示文摘Zhang Jiancheng Zhou Entao Chen Jianwen 1997The Fluid Power and Systems Technology Division ( Publication ) FPST Fluid Power Systems and Technology1997,4,:1
2The research of asymmetric cylinder hydraulic servo force system controlled by symmetric valve building-up显示文摘ZHAO Zhouli ZHOU Entao ZHOU Shichang 2002Machine Tool & Hydraulics2002,,1:1
3Taurolidine improved protection against highly pathogenetic avian influenza H5N1 virus lethal-infection in mouse model by regulating the NF-κB signaling pathway显示文摘Taurolidine(TRD),a derivative of taurine,has anti-bacterial and anti-tumor effects by chemically reacting with cell-walls,endotoxins and exotoxins to inhibit the adhesion of microorganisms.However,its application in antiviral therapy is seldom reported.Here,we reported that TRD significantly inhibited the replication of influenza virus H5N1 in MDCK cells with the half-maximal inhibitory concentration(EC_(50))of 34.45μg/mL.Furthermore,the drug inhibited the amplification of the cytokine storm effect and improved the survival rate of mice lethal challenged with H5N1(protection rate was 86%).Moreover,TRD attenuated virus-induced lung damage and reduced virus titers in mice lungs.Administration of TRD reduced the number of neutrophils and increased the number of lymphocytes in the blood of H5N1 virus-infected mice.Importantly,the drug regulated the NF-κB signaling pathway by inhibiting the separation of NF-κB and IκBa,thereby reducing the expression of inflammatory factors.In conclusion,our findings suggested that TRD could act as a potential anti-influenza drug candidate in further clinical studies.Chaoxiang Lv Yuanguo Li Tiecheng Wang Qiqi Zhang Jing Qi Mingwei Sima Entao Li Tian Qin Zhuangzhuang Shi Fangxu Li Xuefeng Wang Weiyang Sun Na Feng Songtao Yang Xianzhu Xia Ningyi Jin Yifa Zhou Yuwei Gao 2023Virologica Sinica2023,38,1:0
4Inosine:A broad-spectrum anti-inflammatory against SARS-CoV-2 infection-induced acute lung injury via suppressing TBK1 phosphorylation显示文摘Severe acute respiratory syndrome coronavirus 2(SARS-CoV-2)-induced cytokine storms constitute the primary cause of coronavirus disease 19(COVID-19)progression,severity,criticality,and death.Glucocorticoid and anti-cytokine therapies are frequently administered to treat COVID-19,but have limited clinical efficacy in severe and critical cases.Nevertheless,the weaknesses of these treatment modalities have prompted the development of anti-inflammatory therapy against this infection.We found that the broad-spectrum anti-inflammatory agent inosine downregulated proinflammatory interleukin(IL)-6,upregulated anti-inflammatory IL-10,and ameliorated acute inflammatory lung injury caused by multiple infectious agents.Inosine significantly improved survival in mice infected with SARS-CoV-2.It indirectly impeded TANK-binding kinase 1(TBK1)phosphorylation by binding stimulator of interferon genes(STING)and glycogen synthase kinase-3β(GSK3β),inhibited the activation and nuclear translocation of the downstream transcription factors interferon regulatory factor(IRF3)and nuclear factor kappa B(NF-κB),and downregulated IL-6 in the sera and lung tissues of mice infected with lipopolysaccharide(LPS),H1N1,or SARS-CoV-2.Thus,inosine administration is feasible for clinical anti-inflammatory therapy against severe and critical COVID-19.Moreover,targeting TBK1 is a promising strategy for inhibiting cytokine storms and mitigating acute inflammatory lung injury induced by SARS-CoV-2 and other infectious agents.Ningning Wang Entao Li Huifang Deng Lanxin Yue Lei Zhou Rina Su Baokun He Chengcai Lai Gaofu Li Yuwei Gao Wei Zhou Yue Gao 2023Journal of Pharmaceutical Analysis2023,13,1:0
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