Rui Yue
ryue@tongji.edu.cn
English, Chinese
Shanghai
Tongji University
Life Sciences
  • 2005 - Bachelor of Engineering, Zhejiang University
  • 2011 - PhD in Biochemistry and Cell Biology, Shanghai Institute of Biochemistry and Cell Biology, Chinese Academy of Sciences
  • Awards: Wu Rui Scholarship, CAS President's Special Prize, CAS Outstanding PhD Thesis Award, CAS Graduate School-BHP Billiton Scholarship, Meiji Dairy Life Science Award
  • 2011-2016 - Postdoctoral Researcher, University of Texas Southwestern Medical Center
  • 2016-present - Professor at Tongji University, Researcher at Shanghai Key Laboratory of Signal Transduction and Disease Research
  • Damon Runyon Fellowship
  • Dean's Discretionary Award at UT Southwestern Medical Center
Skeletal stem cells and hematopoietic microenvironment
Novel skeletal stem cell identification and regulatory mechanisms
Development of new drugs for osteoporosis and osteoarthritis
Composition of hematopoietic stem cell microenvironment and in vitro remodeling
Rejuvenation of aging hematopoietic stem cells and clinical applications
  • Harnessing matrix stiffness to engineer a bone marrow niche for hematopoietic stem cell rejuvenation, Zhang, X., Cao, D., Xu, L., Xu, Y., Gao, Z., Pan, Y., Jiang, M., Wei, Y., Wang, L., Liao, Y., Wang, Q., Yang, L., Xu, X., Gao, Y., Gao, S., Wang, J., and Yue, R., 2023
  • Inhibition of Fap Promotes Cardiac Repair by Stabilizing BNP, Sun, Y., Ma, M., Cao, D., Zheng, A., Zhang, Y., Su, Y., Wang, J., Xu, Y., Zhou, M., Tang, Y., Liu, Y., Ma, T., Fan, A., Zhang, X., Zhu, Q., Qin, J., Mo, C., Xu, Y., Zhang, L., Xu, D., and Yue, R., 2023
  • Bone marrow-derived IGF-1 orchestrates maintenance and regeneration of the adult skeleton, Wang, J., Zhu, Q., Cao, D., Peng, Q., Zhang, X., Li, C., Zhang, C., Zhou, B. O., and Yue, R., 2023
  • Inhibition of fibroblast activation protein ameliorates cartilage matrix degradation and osteoarthritis progression, Fan, A., Wu, G., Wang, J., Lu, L., Wang, J., Wei, H., Sun, Y., Xu, Y., Mo, C., Zhang, X., Pang, Z., Pan, Z., Wang, Y., Lu, L., Fu, G., Ma, M., Zhu, Q., Cao, D., Qin, J., Yin, F., and Yue, R., 2023
  • Skeletal stem cells: a game changer of skeletal biology and regenerative medicine?, Zhu, Q., Ding, L., and Yue, R., 2022
  • Single-cell transcriptomics of LepR-positive skeletal cells reveals heterogeneous stress-dependent stem and progenitor pools, Mo, C., Guo, J., Qin, J., Zhang, X., Sun, Y., Wei, H., Cao, D., Zhang, Y., Zhao, C., Xiong, Y., Zhang, Y., Sun, Y., Shen, L., and Yue, R., 2022
  • Dissecting human embryonic skeletal stem cell ontogeny by single-cell transcriptomic and functional analyses, He, J., Yan, J., Wang, J., Zhao, L., Xin, Q., Zeng, Y., Sun, Y., Zhang, H., Bai, Z., Li, Z., Ni, Y., Gong, Y., Li, Y., He, H., Bian, Z., Lan, Y., Ma, C., Bian, L., Zhu, H., Liu, B., and Yue, R., 2021
  • Identification of Fibroblast Activation Protein as an Osteogenic Suppressor and Anti-osteoporosis Drug Target, Wei, H., Xu, Y., Wang, Y., Xu, L., Mo, C., Li, L., Shen, B., Sun, Y., Cheng, P., Yang, L., Pang, Y., Qin, A., Cao, Y., Morrison, S. J., and Yue, R., 2020
  • Advice for the Next Generation: Rui Yue, Yue, R., 2019
  • Integrin alpha11 is an Osteolectin receptor and is required for the maintenance of adult skeletal bone mass, Shen, B., Vardy, K., Hughes, P., Tasdogan, A., Zhao, Z., Yue, R., Crane, G. M., and Morrison, S. J., 2019
  • Mapping the Mouse Cell Atlas by Microwell-Seq, Han, X., Wang, R., Zhou, Y., Fei, L., Sun, H., Lai, S., Saadatpour, A., Zhou, Z., Chen, H., Ye, F., Huang, D., Xu, Y., Huang, W., Jiang, M., Jiang, X., Mao, J., Chen, Y., Lu, C., Xie, J., Fang, Q., Wang, Y., Yue, R., Li, T., Huang, H., Orkin, S. H., Yuan, G. C., Chen, M., and Guo, G., 2018
  • Bone marrow adipocytes promote the regeneration of stem cells and haematopoiesis by secreting SCF, Zhou, B. O., Yu, H., Yue, R., Zhao, Z., Rios, J. J., Naveiras, O., and Morrison, S. J., 2017
  • Clec11a/osteolectin is an osteogenic growth factor that promotes the maintenance of the adult skeleton, Yue, R., Shen, B., and Morrison, S. J., 2016
  • Leptin Receptor Promotes Adipogenesis and Reduces Osteogenesis by Regulating Mesenchymal Stromal Cells in Adult Bone Marrow, Yue, R., Zhou, B. O., Shimada, I. S., Zhao, Z., and Morrison, S. J., 2016
  • Leptin-receptor-expressing mesenchymal stromal cells represent the main source of bone formed by adult bone marrow, Zhou, B. O., Yue, R., Murphy, M. M., Peyer, J. G., and Morrison, S. J., 2014
  • Lysophosphatidic acid acts as a nutrient-derived developmental cue to regulate early hematopoiesis, Li, H., Yue, R., Wei, B., Gao, G., Du, J., and Pei, G., 2014
  • Thrombin receptor regulates hematopoiesis and endothelial-to-hematopoietic transition, Yue, R., Li, H., Liu, H., Li, Y., Wei, B., Gao, G., Jin, Y., Liu, T., Wei, L., Du, J., and Pei, G., 2012
  • Beta-arrestin1 regulates zebrafish hematopoiesis through binding to YY1 and relieving polycomb group repression, Yue, R., Kang, J., Zhao, C., Hu, W., Tang, Y., Liu, X., and Pei, G., 2009
Skeletal Stem Cells Hematopoietic Microenvironment Identification Regulatory Osteoporosis Osteoarthritis Rejuvenation Clinical Applications

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