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Ye Yin
yin@njmu.edu.cn
Chinese, English
Jiangsu
Nanjing Medical University
Basic Medical Sciences
  • 2005.09-2010.06 PhD: Nanjing University, School of Life Sciences
  • 2001.09-2005.06 Bachelor's: China Pharmaceutical University, Bioengineering
  • Hosted National Natural Science Foundation of China projects
  • 2012.09-present - Nanjing Medical University - School of Basic Medical Sciences
  • 2010.09-2012.08 - Nanjing Medical University - School of Basic Medical Sciences - Postdoctoral
  • 2016: Ministry of Education Science Research Outstanding Achievement Award in Natural Science, Second Prize (Ranked Third)
  • 2016: Jiangsu Province Science and Technology Progress Award, Second Prize (Ranked Fifth)
  • 2016: Jiangsu Province Higher Education Scientific Research Achievement Award, Second Prize (Ranked Fourth)
Diabetes Pathogenesis Research
  • Loss of hnRNP A1 in murine skeletal muscle exacerbates high fat diet-induced onset of insulin resistance and hepatic steatosis., Zhao M, Shen L, Ouyang Z, Li M, Deng G, Yang C, Zheng W, Kong L, Wu X, Wu X, Guo W, Yin Y*, Xu Q*, Sun Y*., 2019
  • Pdcd2l Promotes Palmitate-Induced Pancreatic Beta-Cell Apoptosis as a FoxO1 Target Gene., Yin Y, Yong W, Yu J, Zhang X, Lin H, Zhu Y, Han X., 2016
  • Luteolin improves non-alcoholic fatty liver disease in db/db mice by inhibition of liver X receptor activation to down-regulate expression of sterol regulatory element binding protein 1c., Yin Y1, Gao L1, Lin H, Wu Y, Han X, Zhu Y, Li J., 2017
  • Aberrant activation of liver X receptors impairs pancreatic β-cell function through Sterol Regulatory Element-Binding Protein 1c up-regulation., Zhuoxian Meng1, Ye Yin1, Jinghuan Lv, Min Sha, Yan Lin, Lu Gao, Yunxia Zhu, Yujie Sun and Xiao Han*., 2012
  • Identification of direct forkhead box O1 targets involved in palmitate-induced apoptosis in clonal insulin-secreting cells using chromatin immunoprecipitation coupled to DNA selection and ligation., Haiyan Lin, Ye Yin, Jiexin Zhang, Hui Xuan, Yue Zheng, Shanshan Zhan, Yunxia Zhu, Xiao Han*., 2012
  • Obesity- and aging-induced excess of central transforming growth factor-β potentiates diabetic development via an RNA stress response., Yan J, Zhang H, Yin Y, Li J, Tang Y, Purkayastha S, Li L, Cai D., 2014
  • Hypothalamic programming of systemic ageing involving IKK-β, NF-κB and GnRH., Zhang G, Li J, Purkayastha S, Tang Y, Zhang H, Yin Y, Li B, Liu G, Cai D., 2013
Diabetes Pathogenesis Insulin Resistance Beta-Cell Damage Adipocyte Differentiation Metabolic Diseases Chronic Inflammation Central Nervous System Peripheral Insulin Resistance Molecular Mechanisms

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