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Pan Pan
panpan@gzhmu.edu.cn
Chinese, English
Guangdong
Guangzhou Medical University
Basic Medical Sciences
  • Doctorate: PhD
  • Published over 30 academic papers
  • H-index of 18
  • Over 4000 citations
  • 5 national invention patents
  • Led 10 research projects
Molecular mechanisms of virus-induced inflammation
Screening of antiviral drug targets
Clinical translational research of stem and immune cells
  • Inhibition of SARS-CoV-2 replication by a ssDNA aptamer targeting the nucleocapsid protein, Huang, Y., Huang, C., Chen, J., Chen, S., Li, B., Li, J., Jin, Z., Zhang, Q., Pan, P., Du, W., Liu, L., & Liu, Z., 2024
  • The Interaction between SARS-CoV-2 Nucleocapsid Protein and UBC9 Inhibits MAVS Ubiquitination by Enhancing Its SUMOylation, Huang, C., Yin, Y., Pan, P., Huang, Y., Chen, S., Chen, J., Wang, J., Xu, G., Tao, X., Xiao, X., Li, J., Yang, J., Jin, Z., Li, B., Tong, Z., Du, W., Liu, L., & Liu, Z., 2023
  • A programmable DNA nanodevice for colorimetric detection of DNA methyltransferase activity using functionalized hemin/G-quadruplex DNAzyme, Yuan W, Xiao K, Liu X, Lai Y, Luo F, Xiao W, Wu J, Pan P, Li Y, Xiao H., 2023
  • SARS-CoV-2 N protein enhances the anti-apoptotic activity of MCL-1 to promote viral replication, Pan, P., Ge, W., Lei, Z., Luo, W., Liu, Y., Guan, Z., Chen, L., Yu, Z., Shen, M., Hu, D., Xiang, Q., Wang, W., Wan, P., Tian, M., Yu, Y., Luo, Z., Chen, X., Xiao, H., Zhang, Q., Liang, X., Chen, X., Li, Y., & Wu, J., 2023
  • Inhibitory effects of Patchouli alcohol on the early lifecycle stages of influenza A virus, Fan, Y., Zhang, Q., Zhang, W., Lai, Y., Long, H., Huang, H., Zhan, S., Liu, X., Lai, J., Zhang, Z., Pan, P., Su, Z., & Li, G., 2023
  • A vaccine delivery system promotes strong immune responses against SARS-CoV-2 variants, Lei, Z., Zhu, L., Pan, P., Ruan, Z., Gu, Y., Xia, X., Wang, S., Ge, W., Yao, Y., Luo, F., Xiao, H., Guo, J., Ding, Q., Yin, Z., Li, Y., Luo, Z., Zhang, Q., Chen, X., & Wu, J., 2023
  • Editorial: The role of inflammasome in viral infection, Wan, P., Zhang, Y., Pan, P., & Li, Y., 2023
  • In Memory of the Virologist Jianguo Wu, 1957-2022, Yang, G., Yue, Z., Pan, P., & Li, Y., 2023
  • SARS-CoV-2 N protein promotes NLRP3 inflammasome activation to induce hyperinflammation, Pan, P., Shen, M., Yu, Z., Ge, W., Chen, K., Tian, M., Xiao, F., Wang, Z., Wang, J., Jia, Y., Wang, W., Wan, P., Zhang, J., Chen, W., Lei, Z., Chen, X., Luo, Z., Zhang, Q., Xu, M., Li, G., Li, Y., & Wu, J., 2021
  • Sericin and sericin-derived peptide alleviate viral pathogenesis in mice though inhibiting lactate production and facilitating antiviral response, Li Y, Huang Y, Pan P, Che X, Zhang Y, Zhang Y, Amal A, Li X, Niu W, Luo N, Zhang W, Gao D, Tan Q, Zhang Q, Xing X, Luo Z, Wu J., 2021
  • DENV NS1 and MMP-9 cooperate to induce vascular leakage by altering endothelial cell adhesion and tight junction, Pan, P., Li, G., Shen, M., Yu, Z., Ge, W., Lao, Z., Fan, Y., Chen, K., Ding, Z., Wang, W., Wan, P., Shereen, M. A., Luo, Z., Chen, X., Zhang, Q., Lin, L., & Wu, J., 2021
  • Cinnamic acid inhibits Zika virus by inhibiting RdRp activity, Chen, Y., Li, Z., Pan, P., Lao, Z., Xu, J., Li, Z., Zhan, S., Liu, X., Wu, Y., Wang, W., Li, G., 2021
  • Dengue Virus M Protein Promotes NLRP3 Inflammasome Activation To Induce Vascular Leakage in Mice, Pan, P., Zhang, Q., Liu, W., Wang, W., Lao, Z., Zhang, W., Shen, M., Wan, P., Xiao, F., Liu, F., Zhang, W., Tan, Q., Liu, X., Wu, K., Liu, Y., Li, G., & Wu, J., 2019
  • Dengue Virus Infection Activates Interleukin-1β to Induce Tissue Injury and Vascular Leakage, Pan, P., Zhang, Q., Liu, W., Wang, W., Yu, Z., Lao, Z., Zhang, W., Shen, M., Wan, P., Xiao, F., Shereen, M. A., Zhang, W., Tan, Q., Liu, Y., Liu, X., Wu, K., Liu, Y., Li, G., & Wu, J., 2019
  • Molecular epidemiology demonstrates that imported and local strains circulated during the 2014 dengue outbreak in Guangzhou, China, Li, G., Pan, P., He, Q., Kong, X., Wu, K., Zhang, W., Liu, Y., Huang, H., Liu, J., Zhang, Z., Wu, D., Lai, X., Liu, X., & Wu, J., 2017
Virus Inflammation Molecular Mechanism Antiviral Drug Target Stem Cells Immune Cells Clinical

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