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Lijun Ding
dinglijun@nju.edu.cn
Chinese, English
Jiangsu
Nanjing University
Medical School
  • Jiangsu Province Science and Technology Award First Prize (2018)
  • Jiangsu Province Medical Science and Technology Award Second Prize (2016)
  • Nanjing City Medical New Technology Introduction Award Special Prize (2018)
Mechanisms and stem cell interventions for reproductive disorders (ovarian function decline, severe endometrial damage)
  • Umbilical cord artery-derived perivascular stem cells for treatment of ovarian failure through CD146 signaling, Xu L, Yang Y, Zhang L, Yan G, Li S, Li Y, Hu Y, Ding L, Péault B, Sun H, 2022
  • Human Endometrium-Derived Adventitial Cell Spheroid-Loaded Antimicrobial Microneedles for Uterine Regeneration, Li S, Li Y, Yu F, Li N, Liu C, Mao J, Sun H, Hu Y, Zhu Y, Zhou M, Ding L, 2022
  • The mitochondrial protease LONP1 maintains oocyte development and survival by suppressing nuclear translocation of AIFM1 in mammals, Sheng X, Liu C, Yan G, Li G, Liu J, Yang Y, Li S, Li Z, Zhou J, Zhen X, Zhang Y, Diao Z, Hu Y, Fu C, Yao B, Li C, Cao Y, Lu B, Yang Z, Qin Y, Sun H, Ding L, 2021
  • CD10 expression identifies a subset of human perivascular progenitor cells with high proliferation and calcification potentials, Ding L, Vezzani B, Khan N, Su J, Xu L, Yan G, Liu Y, Li R, Gaur A, Diao Z, Hu Y, Yang Z, Hardy WR, James AW, Sun H, Péault B, 2020
  • Transplantation of bone marrow mesenchymal stem cells on collagen scaffolds for the functional regeneration of injured rat uterus, Ding L, Li X, Sun H, Su J, Lin N, Péault B, Song T, Yang J, Dai J, Hu Y, 2014
Reproductive Disorders Ovarian Function Endometrial Damage Stem Cell Intervention Mechanisms Ovarian Decline Endometrial Repair Stem Cell Therapy Reproductive Health Regenerative Medicine

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