A Study to Investigate the Mechanistic Effects of Dapagliflozin Alone or in Combination With Balcinrenone, Compared to Balcinrenone and Placebo on Body Fluid and Electrolyte Handling and Energy Metabolism in Participants Over 50 Years of Age With Chronic Kidney Disease.
Summary
The purpose of this study is to investigate the mechanistic effects of dapagliflozin 10 mg, alone or in combination with balcinrenone 150 mg, with balcinrenone 150 mg and placebo, on the way the body handles electrolytes and water content, as well as the effects these interventions may have on energy metabolism in participants with stage 3 chronic kidney disease. The study interventions will be administered orally, daily, in addition to current therapy, for a duration of 28 days. This will allow us to maximize our ability to detect a drug effect while minimizing the drop-out rate that accompanies longer studies. In order to understand the different mechanistic effects of these interventions on energy metabolism, the study will be conducted at two study sites. The study design and treatment allocation, treatment duration as well as sample analysis for evaluation of the primary endpoint will be identical for all participants, at both sites. Therefore, urine and plasma samples for analysis of water and electrolyte handling will be collected from all study participants at both sites. In addition to the primary endpoint, the main study site (Nuremberg) will conduct a metabolic study to investigate the early- and late-effects of the interventions, while the second site, Marseille, will conduct an imaging sub-study to assess changes at the tissue level before and after treatment.
Timeline
- Start
- 2023-07-13
- Primary completion
- 2025-12-29
- Completion
- 2026-01-28
Publications
- Background Marton A, Kaneko T, Kovalik JP, Yasui A, Nishiyama A, Kitada K, Titze J. Organ protection by SGLT2 inhibitors: role of metabolic energy and water conservation. Nat Rev Nephrol. 2021 Jan;17(1):65-77. doi: 10.1038/s41581-020-00350-x. Epub 2020 Oct 1.
- Background Kovarik JJ, Morisawa N, Wild J, Marton A, Takase-Minegishi K, Minegishi S, Daub S, Sands JM, Klein JD, Bailey JL, Kovalik JP, Rauh M, Karbach S, Hilgers KF, Luft F, Nishiyama A, Nakano D, Kitada K, Titze J. Adaptive physiological water conservation explains hypertension and muscle catabolism in experimental chronic renal failure. Acta Physiol (Oxf). 2021 May;232(1):e13629. doi: 10.1111/apha.13629. Epub 2021 Mar 7.
- Background Wild J, Jung R, Knopp T, Efentakis P, Benaki D, Grill A, Wegner J, Molitor M, Garlapati V, Rakova N, Marko L, Marton A, Mikros E, Munzel T, Kossmann S, Rauh M, Nakano D, Kitada K, Luft F, Waisman A, Wenzel P, Titze J, Karbach S. Aestivation motifs explain hypertension and muscle mass loss in mice with psoriatic skin barrier defect. Acta Physiol (Oxf). 2021 May;232(1):e13628. doi: 10.1111/apha.13628. Epub 2021 Feb 23.
- Background Kitada K, Daub S, Zhang Y, Klein JD, Nakano D, Pedchenko T, Lantier L, LaRocque LM, Marton A, Neubert P, Schroder A, Rakova N, Jantsch J, Dikalova AE, Dikalov SI, Harrison DG, Muller DN, Nishiyama A, Rauh M, Harris RC, Luft FC, Wassermann DH, Sands JM, Titze J. High salt intake reprioritizes osmolyte and energy metabolism for body fluid conservation. J Clin Invest. 2017 May 1;127(5):1944-1959. doi: 10.1172/JCI88532. Epub 2017 Apr 17.
Drugs
| Evaluation | Drug | Modality | Dose | Route |
|---|---|---|---|---|
| Subject | Dapagliflozin | Small molecule | 10 mg | Oral |
| Subject | balcinrenone | Small molecule | 150 mg | Oral |