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Shaolin Shi
shaolin.shi@nju.edu.cn
English, Chinese
Jiangsu
Nanjing University
Medical School
  • 1986 - Bachelor's Degree: Xiamen University
  • 1992 - Master's Degree: Fudan University
  • 1997 - Doctoral Degree: Fudan University
  • Discovered new mechanisms of Notch glycosylation regulation
  • Revealed roles and mechanisms of microRNAs in podocyte physiology and pathology
  • Identified key genes and their functions in glomerular podocytes
  • 1997-2004 - University of Glasgow/Cyclacel Ltd. and Albert Einstein College of Medicine - Postdoctoral Researcher
  • 2005 - Mount Sinai Icahn School of Medicine - Assistant Professor
  • 2011 - Present - Eastern Theater General Hospital (Jinling Hospital) - Chief Technician, National Clinical Research Center for Kidney Disease
  • National Science and Technology Progress Award (2020): Innovation and application of strategies and key technologies for the diagnosis and treatment of glomerulonephritis
  • Jiangsu Provincial Science and Technology Progress Award (2017): Research on podocyte injury mechanisms and clinical translation
Molecular mechanisms and therapeutic target gene identification in diabetic nephropathy, FSGS, and various glomerulonephritis
  • Glucocorticoids Inhibit EGFR Signaling Activation in Podocytes in Anti-GBM Crescentic Glomerulonephritis, Wu X, Ren L, Yang Q, Song H, Tang Q, Zhang M, Zhang J, Tang Z*, Shi S*, 2022
  • A novel approach to identify the mechanism of miR-145-5p toxicity to podocytes based on the essential genes targeting analysis, Zhang S, Wu J, Zhu X, Song H, Ren L, Tang Q, Xu X, Liu C, Zhang J, Hu W, Liu Z*, Shi S*, 2021
  • MiR-30 family prevents uPAR-ITGB3 signaling activation through calcineurin-NFATC pathway to protect podocytes, Lang Y, Zhao Y, Zheng C, Lu Y, Wu J, Zhu X, Zhang M, Yang F, Xu X, Shi S*, Liu Z*, 2019
  • Genome-wide identification of genes essential for podocyte cytoskeletons based on single-cell RNA sequencing, Lu Y, Ye Y, Bao W, Yang Q, Wang J, Liu Z, Shi S*, 2017
  • Single-cell RNA-sequence analysis of mouse glomerular mesangial cells uncovers mesangial cell essential genes, Lu Y, Ye Y, Yang Q, Shi S*, 2017
  • Toll-like Receptor 9 Can be Activated by Endogenous Mitochondrial DNA to Induce Podocyte Apoptosis, Bao W, Xia H, Liang Y, Ye Y, Lu Y, Xu X, Duan A, He J, Chen Z, Wu Y, Wang X, Zheng C, Liu Z, Shi S*, 2016
  • MicroRNA-30 family members regulate calcium/calcineurin signaling in podocytes, Wu J, Zheng C, Wang X, Yun S, Zhao Y, Liu L, Lu Y, Ye Y, Zhu X, Zhang C, Shi S*, Liu Z*, 2015
  • Plasma microRNA-186 and proteinuria in focal segmental glomerulosclerosis, Zhang C, Zhang W, Chen H, Liu C, Wu J, Shi S*, Liu Z*, 2015
Diabetic Nephropathy Fsgs Glomerulonephritis Molecular Mechanisms Therapeutic Targets Podocytes Mesangial Cells Endothelial Cells Bioinformatics Gene Knockout

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