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Stroke|September 17, 2025
Fetal Hypoxia Suppresses TRPC6 and Impairs Cerebral Autoregulation in Neonatal RatsXiang-Qun Hu, Rui Song, Chiranjib Dasgupta, et al.The Journal of Physiology|March 1, 2023
TET2 confers a mechanistic link of microRNA-210 and mtROS in hypoxia-suppressed spontaneous transient outward currents in uterine arteries of pregnant sheepXiang-Qun Hu, Rui Song, Chiranjib Dasgupta, et al.Biology of Reproduction|July 31, 2015
Antenatal Antioxidant Prevents Nicotine-Mediated Hypertensive Response in Rat Adult OffspringDaLiao Xiao, Xiaohui Huang, Yong Li, et al.Hypertension (Dallas, Tex. : 1979)|July 26, 2017
MicroRNA-210 Targets Ten-Eleven Translocation Methylcytosine Dioxygenase 1 and Suppresses Pregnancy-Mediated Adaptation of Large Conductance Ca<sup>2+</sup>-Activated K<sup>+</sup> Channel Expression and Function in Ovine Uterine ArteriesXiang-Qun Hu, Chiranjib Dasgupta, Daliao Xiao, et al.Hypertension (Dallas, Tex. : 1979)|May 20, 2015
Hypoxia Represses ER-α Expression and Inhibits Estrogen-Induced Regulation of Ca2+-Activated K+ Channel Activity and Myogenic Tone in Ovine Uterine Arteries: Causal Role of DNA MethylationMan Chen, Daliao Xiao, Xiang-Qun Hu, et al.Oncotarget|March 1, 2018
SIRT1 increases cardiomyocyte binucleation in the heart developmentAlexandra N Shin, Limin Han, Chiranjib Dasgupta, et al.Hypertension (Dallas, Tex. : 1979)|March 1, 2021
MicroRNA-210 Mediates Hypoxia-Induced Repression of Spontaneous Transient Outward Currents in Sheep Uterine Arteries During GestationXiang-Qun Hu, Chiranjib Dasgupta, Rui Song, et al.Oncotarget|November 5, 2017
Role of DNA methylation in perinatal nicotine-induced development of heart ischemia-sensitive phenotype in rat offspringJun Ke, Nianguo Dong, Lei Wang, et al.Cardiovascular Research|November 26, 2013
Inhibition of DNA methylation reverses norepinephrine-induced cardiac hypertrophy in ratsDaliao Xiao, Chiranjib Dasgupta, Man Chen, et al.Stroke|June 29, 2012
Perinatal nicotine exposure increases vulnerability of hypoxic-ischemic brain injury in neonatal rats: role of angiotensin II receptorsYong Li, Daliao Xiao, Chiranjib Dasgupta, et al.Pageof 5