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Xiang-Qun Hu

Showing results (11-20 of 49) with videos related to

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The Journal of Biological Chemistry|January 12, 2008
The 5-HT3B subunit confers spontaneous channel opening and altered ligand properties of the 5-HT3 receptorXiang-Qun Hu, Robert W Peoples
Neuropharmacology|April 26, 2008
The L293 residue in transmembrane domain 2 of the 5-HT3A receptor is a molecular determinant of allosteric modulation by 5-hydroxyindoleXiang-Qun Hu, David M Lovinger
The Journal of Physiology|August 13, 2005
Role of aspartate 298 in mouse 5-HT3A receptor gating and modulation by extracellular Ca2+Xiang-Qun Hu, David M Lovinger
Oxidative Medicine and Cellular Longevity|March 19, 2019
Effect of Oxidative Stress on the Estrogen-NOS-NO-K<sub>Ca</sub> Channel Pathway in Uteroplacental Dysfunction: Its Implication in Pregnancy ComplicationsXiang-Qun Hu, Rui Song, Lubo Zhang
The Journal of Endocrinology|April 25, 2019
Glucocorticoids and programming of the microenvironment in heartRui Song, Xiang-Qun Hu, Lubo Zhang
Cells|November 27, 2019
Mitochondrial MiRNA in Cardiovascular Function and DiseaseRui Song, Xiang-Qun Hu, Lubo Zhang
The Journal of Physiology|November 29, 2015
Direct effect of chronic hypoxia in suppressing large conductance Ca(2+)-activated K(+) channel activity in ovine uterine arteries via increasing oxidative stressXiang-Qun Hu, Xiaohui Huang, Daliao Xiao, et al.
Hypertension (Dallas, Tex. : 1979)|May 29, 2014
Gestational hypoxia increases reactive oxygen species and inhibits steroid hormone-mediated upregulation of Ca(2+)-activated K(+) channel function in uterine arteriesRonghui Zhu, Xiaohui Huang, Xiang-Qun Hu, et al.
The Journal of Biological Chemistry|September 13, 2003
Arginine 222 in the pre-transmembrane domain 1 of 5-HT3A receptors links agonist binding to channel gatingXiang-Qun Hu, Li Zhang, Randall R Stewart, et al.
The Journal of Physiology|June 6, 2018
Long-term high altitude hypoxia during gestation suppresses large conductance Ca<sup>2+</sup> -activated K<sup>+</sup> channel function in uterine arteries: a causal role for microRNA-210Xiang-Qun Hu, Chiranjib Dasgupta, Jeffery Xiao, et al.
Pageof 5

Showing results (11-20 of 49) with videos related to

Sort By:
Pageof 5
The Journal of Biological Chemistry|January 12, 2008
The 5-HT3B subunit confers spontaneous channel opening and altered ligand properties of the 5-HT3 receptorXiang-Qun Hu, Robert W Peoples
Neuropharmacology|April 26, 2008
The L293 residue in transmembrane domain 2 of the 5-HT3A receptor is a molecular determinant of allosteric modulation by 5-hydroxyindoleXiang-Qun Hu, David M Lovinger
The Journal of Physiology|August 13, 2005
Role of aspartate 298 in mouse 5-HT3A receptor gating and modulation by extracellular Ca2+Xiang-Qun Hu, David M Lovinger
Oxidative Medicine and Cellular Longevity|March 19, 2019
Effect of Oxidative Stress on the Estrogen-NOS-NO-K<sub>Ca</sub> Channel Pathway in Uteroplacental Dysfunction: Its Implication in Pregnancy ComplicationsXiang-Qun Hu, Rui Song, Lubo Zhang
The Journal of Endocrinology|April 25, 2019
Glucocorticoids and programming of the microenvironment in heartRui Song, Xiang-Qun Hu, Lubo Zhang
Cells|November 27, 2019
Mitochondrial MiRNA in Cardiovascular Function and DiseaseRui Song, Xiang-Qun Hu, Lubo Zhang
The Journal of Physiology|November 29, 2015
Direct effect of chronic hypoxia in suppressing large conductance Ca(2+)-activated K(+) channel activity in ovine uterine arteries via increasing oxidative stressXiang-Qun Hu, Xiaohui Huang, Daliao Xiao, et al.
Hypertension (Dallas, Tex. : 1979)|May 29, 2014
Gestational hypoxia increases reactive oxygen species and inhibits steroid hormone-mediated upregulation of Ca(2+)-activated K(+) channel function in uterine arteriesRonghui Zhu, Xiaohui Huang, Xiang-Qun Hu, et al.
The Journal of Biological Chemistry|September 13, 2003
Arginine 222 in the pre-transmembrane domain 1 of 5-HT3A receptors links agonist binding to channel gatingXiang-Qun Hu, Li Zhang, Randall R Stewart, et al.
The Journal of Physiology|June 6, 2018
Long-term high altitude hypoxia during gestation suppresses large conductance Ca<sup>2+</sup> -activated K<sup>+</sup> channel function in uterine arteries: a causal role for microRNA-210Xiang-Qun Hu, Chiranjib Dasgupta, Jeffery Xiao, et al.
Pageof 5