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Kidney360|January 2, 2026
Transforming the Venous Blood Gas to the Arterial Blood Gas from Concurrent MeasurementsDaniel Batlle, Romy Fischer, Luise Hassler, et al.Hypertension (Dallas, Tex. : 1979)|December 3, 2019
Ang II (Angiotensin II) Conversion to Angiotensin-(1-7) in the Circulation Is POP (Prolyloligopeptidase)-Dependent and ACE2 (Angiotensin-Converting Enzyme 2)-IndependentPeter Serfozo, Jan Wysocki, Gvantca Gulua, et al.Kidney International|December 14, 2020
Knockout of aminopeptidase A in mice causes functional alterations and morphological glomerular basement membrane changes in the kidneysBenedikt Marahrens, Arndt Schulze, Jan Wysocki, et al.Kidney International|September 24, 2019
Angiotensin-(1-7) for diabetic kidney disease: better than an angiotensin-converting enzyme inhibitor alone?Alonso Marquez, Daniel BatlleAdvances in Chronic Kidney Disease|August 25, 2018
Hyperkalemic Forms of Renal Tubular Acidosis: Clinical and Pathophysiological AspectsDaniel Batlle, Jose ArrudaKidney Research and Clinical Practice|September 3, 2019
Proximal renal tubular acidosis with and without Fanconi syndromeIbrahim Kashoor, Daniel BatllePhysiological Reports|October 13, 2019
Urinary angiotensinogen antedates the development of stage 3 CKD in patients with type 1 diabetes mellitusSheeba Ba Aqeel, Minghao Ye, Jan Wysocki, et al.Hypertension (Dallas, Tex. : 1979)|May 14, 2019
Urinary Renin in Patients and Mice With Diabetic Kidney DiseaseJeannette Tang, Jan Wysocki, Minghao Ye, et al.Clinical Kidney Journal|April 3, 2023
Intravenous fluid therapy in accordance with kidney injury risk: when to prescribe what volume of which solutionMehmet Kanbay, Sidar Copur, Berk Mizrak, et al.Nephrology, Dialysis, Transplantation : Official Publication of the European Dialysis and Transplant Association - European Renal Association|November 2, 2012
Genetic causes and mechanisms of distal renal tubular acidosisDaniel Batlle, Syed K HaquePageof 19