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Lingfei Luo
lluo@fudan.edu.cn
English, Chinese, German
Shanghai
Fudan University
Life Sciences
  • 1999 - Bachelor's Degree: Nanjing University
  • 2004 - Ph.D.: University of Goettingen
  • 2004-2006 - Postdoctoral Research: Max-Planck-Institute for Biophysical Chemistry
  • Vice President of the Chinese Society for Cell Biology (2019-present)
  • Member of the Expert Advisory Committee of the Life Sciences Department, National Natural Science Foundation of China (2014-2020)
  • Member of the National Distinguished Young Scholars Evaluation Committee (2018-2020)
  • Recipient of the National Science Fund for Distinguished Young Scholars (2009)
  • Recipient of the China Youth May Fourth Medal (2013)
  • Recipient of the State Council Special Allowance (2019)
  • 2019-present - Vice President of the Chinese Society for Cell Biology
  • 2014-2020 - Member of the Expert Advisory Committee of the Life Sciences Department, National Natural Science Foundation of China
  • 2018-2020 - Member of the National Distinguished Young Scholars Evaluation Committee
  • National Science Fund for Distinguished Young Scholars (2009)
  • China Youth May Fourth Medal (2013)
  • State Council Special Allowance (2019)
Mechanisms of digestive organ regeneration and drug development
Mechanisms of brain vascular regeneration and drug development
Cell lineage and fate determination of digestive organ development
Mechanisms underlying species difference of regenerative capabilities
  • Responses of organ precursors to correct and incorrect inductive signals, Yun Yang, Shuang Li, Lingfei Luo, 2023
  • VEGF signaling governs the initiation of biliary-mediated liver regeneration through the PI3K-mTORC1 axis, Pengcheng Cai, Rui Ni, Mengzhu Lv, Huijuan Liu, Jieqiong Zhao, Jianbo He, Lingfei Luo, 2023
  • Extensive jejunal injury is repaired by migration and transdifferentiation of ileal enterocytes in zebrafish, Xiangyong Wei, Xinmiao Tan, Qi Chen, Yan Jiang, Guozhen Wu, Xue Ma, Jialong Fu, Yongyu Li, Kai Gang, Qifen Yang, Rui Ni, Jianbo He, Lingfei Luo, 2023
  • Intestinal precursors avoid being mis-induced to liver cells by activating Cdx-Wnt inhibition cascade, Yun Yang, Yuanyuan Li, Jialong Fu, Yanfeng Li, Shuang Li, Rui Ni, Qifen Yang, Lingfei Luo, 2022
  • Tel2 regulates redifferentiation of bipotential progenitor cells via Hhex during zebrafish liver regeneration, Junren Zhang, Yang Zhou, Shuang Li, Dashuang Mo, Jianlong Ma, Rui Ni, Qifen Yang, Jianbo He, Lingfei Luo, 2022
  • Acute brain vascular regeneration occurs via lymphatic transdifferentiation, Jingying Chen, Xiuhua Li, Rui Ni, Qi Chen, Qifen Yang, Jianbo He, Lingfei Luo, 2021
  • Farnesoid X Receptor is required for the redifferentiation of bi-potential progenitor cells during biliary-mediated zebrafish liver regeneration, Pengcheng Cai, Xiaoyu Mao, Jieqiong Zhao, Li Nie, Yan Jiang, Qifen Yang, Rui Ni, Jianbo He, Lingfei Luo, 2021
  • A single-cell-resolution fate map of endoderm reveals demarcation of pancreatic progenitors by cell cycle, Yun Yang, Hao Wang, Jia He, Wenchao Shi, Zhanmei Jiang, Lina Gao, Yan Jiang, Rui Ni, Qifen Yang, Lingfei Luo, 2021
  • Mammalian target of rapamycin complex 1 signaling is required for the dedifferentiation from biliary cell to bipotential progenitor cell in zebrafish liver regeneration, Jiaobo He, Jingying Chen, Xiangyong Wei, Hui Leng, Hongliang Mu, Pengcheng Cai, Lingfei Luo, 2019
  • Cerebrovascular injuries induce lymphatic invasion into brain parenchyma to guide vascular regeneration in zebrafish, Jingying Chen, Jianbo He, Rui Ni, Qifen Yang, Yaoguang Zhang, Lingfei Luo, 2019
  • Germline stem cells drive ovary regeneration in zebrafish, Zigang Cao, Xiaoyu Mao, Lingfei Luo, 2019
  • Macrophages mediate the repair of brain vascular rupture through direct physical adhesion and mechanical traction, Chi Liu, Chuan Wu, Qifen Yang, Jing Gao, Li Li, Deqin Yang, Lingfei Luo, 2016
  • Regeneration of liver after extreme hepatocyte loss occurs mainly via biliary transdifferentiation in zebrafish, Jianbo He, Huiqiang Lu, Qingliang Zou, Lingfei Luo, 2014
  • EpCAM is an endoderm-specific Wnt derepressor that licenses hepatic development, Huiqiang Lu, Jun Ma, Yun Yang, Wenchao Shi, Lingfei Luo, 2013
Regeneration Digestive Organs Drug Development Brain Vasculature Cell Lineage Fate Determination Species Difference Zebrafish Mouse Transdifferentiation

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