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Dive into the research topics where Yuqiang Ge is active.

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Featured researches published by Yuqiang Ge.


Hypertension | 2008

Collecting Duct-Derived Endothelin Regulates Arterial Pressure and Na Excretion via Nitric Oxide

Markus P. Schneider; Yuqiang Ge; David M. Pollock; Jennifer S. Pollock; Donald E. Kohan

Mice with a collecting duct-specific deletion of endothelin-1 are hypertensive and have impaired Na excretion. Because endothelin-1 activates NO synthase (NOS) in the collecting duct, we hypothesized that impaired renal NO production in knockout mice exacerbates the hypertensive state. Control and knockout mice were treated chronically with NG-nitro-l-arginine methyl ester, and blood pressure (BP) and urinary nitrate/nitrite excretion were assessed. On a normal Na diet, knockout systolic BP was 18 mm Hg greater than in controls. NG-nitro-l-arginine methyl ester increased BP in control mice by 30 mm Hg and 10 mm Hg in collecting duct-specific deletion of endothelin-1 knockout mice, thereby abolishing the difference in systolic BP between the groups. A high-Na diet increased BP similarly in both groups. Urinary nitrate/nitrite excretion was lower in knockout mice than in controls on normal or high Na intake. In separate experiments, renal perfusion pressure was adjusted in anesthetized mice, and urinary nitrate/nitrite and Na excretion were determined. Similar elevations of BP increased urinary Na and nitrate/nitrite excretion in control mice but to a significantly lesser extent in knockout mice. Isoform-specific NOS activity and expression were determined in renal inner medulla homogenates from control and knockout mice. NOS1 and NOS3 activities were lower in knockout than in control mice given normal or high-Na diets. However, NOS1 or NOS3 protein expressions were similar in both groups on normal or high-Na intake. These data demonstrate that collecting duct-derived endothelin-1 is important in the following: (1) chronic NG-nitro-l-arginine methyl ester–induced hypertension; (2) full expression of pressure-dependent changes in sodium excretion; and (3) control of inner medullary NOS1 and NOS3 activity.


American Journal of Physiology-renal Physiology | 2008

Potential role of purinergic signaling in urinary concentration in inner medulla: insights from P2Y2 receptor gene knockout mice

Yue Zhang; Jeff M. Sands; Donald E. Kohan; Raoul D. Nelson; Christopher F. Martin; Noel G. Carlson; Craig D. Kamerath; Yuqiang Ge; Janet D. Klein; Bellamkonda K. Kishore

Osmotic reabsorption of water through aquaporin-2 (AQP2) in the inner medulla is largely dependent on the urea concentration gradients generated by urea transporter (UT) isoforms. Vasopressin (AVP) increases expression of both AQP2 and UT-A isoforms. Activation of the P2Y2 receptor (P2Y2-R) in the medullary collecting duct inhibits AVP-induced water flow. To gain further insights into the overarching effect of purinergic signaling on urinary concentration, we compared the protein abundances of AQP2 and UT-A isoforms between P2Y2-R knockout (KO) and wild-type (WT) mice under basal conditions and following AVP administration. Under basal conditions (a gel diet for 10 days), KO mice concentrated urine to a significantly higher degree, with 1.8-, 1.66-, and 1.29-fold higher protein abundances of AQP2, UT-A1, and UT-A2, respectively, compared with WT, despite comparable circulating AVP levels in both groups. Infusion of 1-desamino-8-d-arginine vasopressin (dDAVP; desmopressin; 1 ng/h sc) for 5 days resulted in 2.14-, 2.6-, and 2.22-fold higher protein abundances of AQP2, AQP3, and UT-A1, respectively, in the inner medullas of KO mice compared with WT mice. In response to acute (45 min) stimulation by AVP (0.2 unit/mouse sc), UT-A1 protein increased by 1.39- and 1.54-fold in WT and KO mice, respectively. These data suggest that genetic deletion of P2Y2-R results in increased abundances of key proteins involved in urinary concentration in the inner medulla, both under basal conditions and following AVP administration. Thus purinergic regulation may play a potential overarching role in balancing the effect of AVP on the urinary concentration mechanism.


Journal of Clinical Investigation | 2004

Collecting duct-specific knockout of endothelin-1 causes hypertension and sodium retention.

Dowhan Ahn; Yuqiang Ge; Peter K. Stricklett; Pritmohinder S. Gill; Deborah Taylor; Alisa K. Hughes; Masashi Yanagisawa; Lance Miller; Raoul D. Nelson; Donald E. Kohan


American Journal of Physiology-renal Physiology | 2006

Collecting duct-specific knockout of the endothelin B receptor causes hypertension and sodium retention

Yuqiang Ge; Alan Bagnall; Peter K. Stricklett; Kevin A. Strait; David J. Webb; Yuri Kotelevtsev; Donald E. Kohan


American Journal of Physiology-renal Physiology | 2005

Collecting duct-specific knockout of the endothelin A receptor alters renal vasopressin responsiveness, but not sodium excretion or blood pressure

Yuqiang Ge; Peter K. Stricklett; Alisa K. Hughes; Masashi Yanagisawa; Donald E. Kohan


American Journal of Physiology-renal Physiology | 2005

Collecting duct-specific knockout of endothelin-1 alters vasopressin regulation of urine osmolality

Yuqiang Ge; Dowahn Ahn; Peter K. Stricklett; Alisa K. Hughes; Masashi Yanagisawa; Joseph G. Verbalis; Donald E. Kohan


American Journal of Physiology-renal Physiology | 2008

Combined knockout of collecting duct endothelin A and B receptors causes hypertension and sodium retention.

Yuqiang Ge; Alan Bagnall; Peter K. Stricklett; David J. Webb; Yuri Kotelevtsev; Donald E. Kohan


American Journal of Physiology-renal Physiology | 2007

Role of prostaglandins in collecting duct-derived endothelin-1 regulation of blood pressure and water excretion

Yuqiang Ge; Kevin A. Strait; Peter K. Stricklett; Tianxin Yang; Donald E. Kohan


The FASEB Journal | 2007

Increased urinary concentrating ability of P2Y2 receptor null mice is associated with marked increase in protein abundances of AQP2 and UT-A in renal medulla

Bellamkonda K. Kishore; Jeff M. Sands; Donald E. Kohan; Christopher F. Martin; Yuqiang Ge; Raoul D. Nelson; Janet D. Klein


The FASEB Journal | 2007

Nitric oxide mediates collecting duct endothelin-1 effects on blood pressure

Donald E. Kohan; Yuqiang Ge; Markus P. Schneider; David M. Pollock; Jennifer S. Pollock

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