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Dapagliflozin Mitigates Medullary Hypoxia in CKD Patients

作者
Elisa Russo,Emilio Venturelli,Julie Di Vincenzo,Lucia Macciò,Pasquale Esposito,Francesca Cappadona,Giulio Ferrazzi,Giacomo Garibotto,Francesca Viazzi
出处
期刊:Kidney360 [American Society of Nephrology (ASN)]
标识
DOI:10.34067/kid.0000001015
摘要

Background: Renal hypoxia is believed to play a central role in the pathophysiology of both diabetic and non-diabetic CKD. Dapagliflozin has been shown to slow the progression of kidney disease by counteracting several pathogenic mechanisms. The advent of blood oxygenation level-dependent magnetic resonance imaging (BOLD-MRI) has enabled the noninvasive assessment of renal oxygenation in humans. However, it remains uncertain whether dapagliflozin affects changes in renal oxygenation. The aim of the study was to assess whether dapagliflozin modifies kidney oxygenation measured by BOLD-MRI. Methods: The GLUTREPRO study is a randomized controlled clinical trial investigating the effect of dapagliflozin on kidney measures. Here, we investigate whether changes in global and segmental renal oxygenation estimated by BOLD MRI (namely, changes in R2* parameter) can be measured, after randomization to dapagliflozin or placebo. We analyzed data from 720 pairs of ROIs of 20 patients who underwent BOLD-MRI on a 3 Tesla MRI scanner, comparing baseline measurements against the ones obtained after three months from the onset of treatment. Results: After 12 weeks, dapagliflozin treatment significantly reduced the medullary R2* relaxation rate, indicating improved oxygenation (p=0.015), while cortical R2* remained unchanged (p=0.56). This effect was more pronounced in non-diabetic patients. Dapagliflozin was identified as the sole independent determinant of improved medullary renal oxygenation (β -14.4, 95%CI: -23.9 to -4.89; p=0.003) after accounting for other confounding factors such as age, presence of diabetes or macroalbuminuria and blood pressure levels. Additionally, dapagliflozin appeared to alter the relationship between changes in renal oxygenation and the estimated glomerular filtration rate slope. Conclusions: These findings suggest that dapagliflozin may mitigate medullary hypoxia in CKD patients. BOLD-MRI could serve as a valuable biomarker for assessing renal functional reserve and predicting CKD progression. Further studies are warranted to confirm these effects and explore underlying molecular mechanisms.
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