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Ying Han
yhancn@njmu.edu.cn
Chinese, English
Jiangsu
Nanjing Medical University
Basic Medical Sciences
  • 1995.8–1999.7 Bachelor: Southeast University, Biomedical Engineering
  • 1999.9–2002.7 Double Bachelor: Nanjing Medical University, Clinical Medicine
  • 2005.9–2010.7 Doctorate: Nanjing Medical University, Biochemistry and Molecular Biology
  • 2016 Jiangsu Higher Education 'Qinglan Project' Outstanding Young Backbone Teacher
  • 2002.8-2006.6 - Nanjing Medical University, School of Basic Medical Sciences, Department of Physiology - Assistant
  • 2006.7-2013.8 - Nanjing Medical University, School of Basic Medical Sciences, Department of Physiology - Lecturer
  • 2013.9-2023.6 - Nanjing Medical University, School of Basic Medical Sciences, Department of Physiology - Associate Professor
  • 2013.8-2014.4 - University of Illinois at Chicago - Postdoctoral
  • 2014.5-2014.8 - University of Arizona - Postdoctoral
  • 2023.7-present - Nanjing Medical University, School of Basic Medical Sciences, Department of Physiology - Professor
  • 2015: Jiangsu Provincial Government Science and Technology Progress Award Third Prize: Research on the Mechanism and Intervention Targets of Sympathetic Activation in Hypertension (Ranked 4/7)
  • 2013: Ministry of Education of China Science and Technology Achievement: Central Regulation Mechanism of Cardiac Sympathetic Afferent Reflex and Molecular Intervention Targets for Cardiovascular Diseases (Ranked 2/10)
  • Jiangsu Provincial Government Science and Technology Progress Third Prize: Mechanism of Paraventricular Nucleus Regulation of Cardiac Sympathetic Afferent Reflex and Sympathetic Nerve Activity and Its Relationship with Chronic Heart Failure (Ranked 3/5)
  • 2016: Jiangsu Higher Education 'Qinglan Project' Outstanding Young Backbone Teacher
  • 2016: Nanjing Medical University 'Excellent Young and Middle-aged Teacher Support Program' Excellent Young and Middle-aged Discipline (Academic) Leader Training Object
Research on the pathogenesis of cardiovascular diseases
  • Salusin-β Promotes Vascular Calcification via Nicotinamide Adenine Dinucleotide Phosphate/Reactive Oxygen Species-Mediated Klotho Downregulation, Sun H#, Zhang F#, Xu Y, Sun S, Pan Y, Wang H, Du Q, Gu C, Black S, Han Y*, Tang H*, 2019
  • Effects of Angiotensin-(1-7) and Angiotensin II on Acetylcholine Induced Vascular Relaxation in Spontaneously Hypertensive Rats, Zhang F, Xu Y, Pan Y, Sun S, Chen A, Li P, Bao C, Wang J, Tang H*, Han Y*, 2019
  • Curcumin attenuates migration of vascular smooth muscle cells via inhibiting NFκB-mediated NLRP3 expression in spontaneously hypertensive rats, Han Y, Sun HJ, Tong Y, Chen YZ, Ye C, Qiu Y, Zhang F, Chen AD, Qi XH, Chen Q, Li YH, Kang YM, Zhu GQ*, 2019
  • Angiotensin-(1-7) induced vascular relaxation in spontaneously hypertensive rats, Zhang F#, Tang H#, Sun S, Luo Y, Ren X, Chen A, Xu Y, Li P, Han Y*, 2019
  • Angiotensin-(1-7) in the Rostral Ventrolateral Medulla modulates enhanced Cardiac Sympathetic Afferent Reflex and Sympathetic Activation in Renovascular Hypertensive Rats, Li P, Sun HJ, Cui BP, Zhou YB, Han Y*, 2013
  • Angiotensin-(1-7) in Paraventricular Nucleus Contributes to the Enhanced Cardiac Sympathetic Afferent Reflex and Sympathetic Activity in Chronic Heart Failure Rats, Ren X, Zhang F, Zhao M, Zhao Z, Sun S, Fraidenburg DR, Tang H, Han Y*, 2017
  • Angiotensin-(1-7) abrogates angiotensin II-induced proliferation, migration and inflammation in VSMCs through inactivation of ROS-mediated PI3K/Akt and MAPK/ERK signaling pathways, Zhang F, Ren X, Zhao M, Zhou B, Han Y*, 2016
  • Angiotensin-(1-7) enhances the effects of angiotensin II on the cardiac sympathetic afferent reflex and sympathetic activity in rostral ventrolateral medulla in renovascular hypertensive rats, Li P, Zhang F, Sun HJ, Zhang F, Han Y*, 2015
  • SGLT Inhibitors Attenuate NO-dependent Vascular Relaxation in Pulmonary Artery but not in Coronary Artery, Han Y, Cho YE, Ayon R, Guo R, Youssef KD, Pan M, Dai A, Yuan JX, Makino A*, 2015
Cardiovascular Pathogenesis Hypertension Sympathetic Activation Intervention Targets Heart Failure Vascular Function Molecular Biology Biochemistry Research

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