20 results on '"Arita, Danielle Y."'
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2. High glucose induces trafficking of prorenin receptor and stimulates profibrotic factors in the collecting duct
3. Additional file 1 of Sex differences in soluble prorenin receptor in patients with type 2 diabetes
4. Abstract 073: The Association Between Plasma Soluble Prorenin Receptor and Renin Activity Points Toward Renin Angiotensin System Activation and Cardiovascular Complications in Women With Type-2 Diabetes
5. 90-kDa N-domain angiotensin I-converting enzyme (ACE): possible marker for hypertension in a renal transplant model
6. 90-kDa N-domain angiotensin I-converting enzyme (ACE): possible marker for hypertension in a renal transplant model
7. Abstract P032: High Glucose Increases Prorenin Receptor (PRR) at the Cell Plasma Membrane in the Collecting Duct Which Promotes the Induction of Downstream Fibrotic Factors
8. Abstract 121: Hyperglycemia-induced Prorenin Receptor Abundance on Plasma Membrane of Kidney Collecting Duct Cells: is a Novel Mechanism to Explain Diabetic Nephropathy?
9. Abstract 408: Hyperglycemia Increases the Prorenin Receptor in the Plasma Membrane of Collecting Duct Cells in Rats with Type 1 Diabetes Mellitus
10. Thyroid hormone interacts with the sympathetic nervous system to modulate bone mass and structure in young adult mice
11. Abstract 158: Role of Prorenin Receptor in the Enhancement of Renin Activity in the Urine of Diabetic Patients
12. Abstract 233: Resistance Training Attenuates Renal Dysfunction in Animal Diabetic Nephropathy but Does Not Restore Kidney ACE/ACE2 Balance
13. Abstract 508: Resistance Exercise Training Performed Prior Diabetes Mellitus Suppresses Renal and Skeletal Muscle Abnormalities
14. Abstract 229: Increased Ace Gene Dosage Reduces Ace2 Activity in Diabetic Mice Kidney: Involvement of Ace/ace2 Balance on the Development of Diabetic Nephropathy
15. Abstract 408.
16. Abstract 508.
17. Abstract 233.
18. Abstract 229.
19. Abstract 158.
20. Thyroid hormone interacts with the sympathetic nervous system to modulate bone mass and structure in young adult mice.
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