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MOIZ LOKHANDWALA, DO
DO
Internal Medicine Physician
NPI: 1689419673Individual
Specialties, Licenses & Credentials
Internal Medicine PhysicianPrimary
Internal Medicine
Code: 207R00000X
BP10089889(TX)
Research & Publications (20)
Inhibition of natriuretic factors increases blood pressure in rats.
PMID 19474184·Am J Physiol Renal Physiol·2009
7-preclinical
Renal proximal tubules from old Fischer 344 rats grow into epithelial cells in cultures and exhibit increased oxidative stress and reduced D1 receptor function.
PMID 18799649·Am J Physiol Cell Physiol·2008
4-observational
Oxidative stress causes renal dopamine D1 receptor dysfunction and salt-sensitive hypertension in Sprague-Dawley rats.
PMID 18158345·Hypertension·2008
7-preclinical
Oxidative stress-induced renal angiotensin AT1 receptor upregulation causes increased stimulation of sodium transporters and hypertension.
PMID 18614617·Am J Physiol Renal Physiol·2008
7-preclinical
Loss of biphasic effect on Na/K-ATPase activity by angiotensin II involves defective angiotensin type 1 receptor-nitric oxide signaling.
PMID 18955661·Hypertension·2008
7-preclinical
Mechanisms of oxidative stress-induced increase in salt sensitivity and development of hypertension in Sprague-Dawley rats.
PMID 17200436·Hypertension·2007
7-preclinical
Role of nuclear factor kappa B (NF-kappaB) in oxidative stress-induced defective dopamine D1 receptor signaling in the renal proximal tubules of Sprague-Dawley rats.
PMID 17320758·Free Radic Biol Med·2007
7-preclinical
Oxidative stress causes renal dopamine D1 receptor dysfunction and hypertension via mechanisms that involve nuclear factor-kappaB and protein kinase C.
PMID 17409305·J Am Soc Nephrol·2007
7-preclinical
Oxidative stress reduces renal dopamine D1 receptor-Gq/11alpha G protein-phospholipase C signaling involving G protein-coupled receptor kinase 2.
PMID 17459951·Am J Physiol Renal Physiol·2007
7-preclinical
Super CitriMax (HCA-SX) attenuates increases in oxidative stress, inflammation, insulin resistance, and body weight in developing obese Zucker rats.
PMID 17503004·Mol Cell Biochem·2007
7-preclinical
Insulin causes renal dopamine D1 receptor desensitization via GRK2-mediated receptor phosphorylation involving phosphatidylinositol 3-kinase and protein kinase C.
PMID 17567939·Am J Physiol Renal Physiol·2007
7-preclinical
Exercise decreases oxidative stress and inflammation and restores renal dopamine D1 receptor function in old rats.
PMID 17634393·Am J Physiol Renal Physiol·2007
7-preclinical
Mitogen-activated protein kinase upregulation reduces renal D1 receptor affinity and G-protein coupling in obese rats.
PMID 17191082·Kidney Int·2007
7-preclinical
Hydrogen peroxide causes uncoupling of dopamine D1-like receptors from G proteins via a mechanism involving protein kinase C and G-protein-coupled receptor kinase 2.
PMID 16337875·Free Radic Biol Med·2006
7-preclinical
Tempol reduces oxidative stress and restores renal dopamine D1-like receptor- G protein coupling and function in hyperglycemic rats.
PMID 16478977·Am J Physiol Renal Physiol·2006
7-preclinical
Role of oxidative stress in defective renal dopamine D1 receptor-G protein coupling and function in old Fischer 344 rats.
PMID 16757732·Am J Physiol Renal Physiol·2006
7-preclinical
Antioxidant tempol lowers age-related increases in insulin resistance in Fischer 344 rats.
PMID 16820349·Clin Exp Hypertens·2006
4-observational
Defective renal dopamine D1 receptor function contributes to hyperinsulinemia-mediated hypertension.
PMID 17132536·Clin Exp Hypertens·2006
7-preclinical
Data courtesy of the U.S. National Library of Medicine (NLM). Ltrl is not affiliated with or endorsed by NLM.
Contact & Hours
- Address
- 301 UNIVERSITY BLVD
GALVESTON, TX 77555 - Phone
- (409) 747-1883
Quick Facts
- NPI
- 1689419673
- Entity Type
- Individual
- Gender
- Male
- Medicare
- Not confirmed
- Specialties
- 1
- Locations
- 1
- Publications
- 20
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