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Sparsentan improves glomerular hemodynamics, cell functions, and tissue repair in a mouse model of FSGS
Georgina Gyarmati, Urvi Nikhil Shroff, Audrey Izuhara, Sachin Deepak, Radko Komers, Patricia W. Bedard, Janos Peti-Peterdi
Georgina Gyarmati, Urvi Nikhil Shroff, Audrey Izuhara, Sachin Deepak, Radko Komers, Patricia W. Bedard, Janos Peti-Peterdi
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Research Article Nephrology

Sparsentan improves glomerular hemodynamics, cell functions, and tissue repair in a mouse model of FSGS

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Abstract

Dual endothelin-1 (ET-1) and angiotensin II (AngII) receptor antagonism with sparsentan has strong antiproteinuric actions via multiple potential mechanisms that are more pronounced, or additive, compared with current standard of care using angiotensin receptor blockers (ARBs). Considering the many actions of ET-1 and AngII on multiple cell types, this study aimed to determine glomeruloprotective mechanisms of sparsentan compared to the ARB losartan by direct visualization of its effects in the intact kidney in focal segmental glomerulosclerosis (FSGS) using intravital multiphoton microscopy. In both healthy and FSGS models, sparsentan treatment increased afferent/efferent arteriole diameters; increased or preserved blood flow and single-nephron glomerular filtration rate; attenuated acute ET-1 and AngII–induced increases in podocyte calcium; reduced proteinuria; preserved podocyte number; increased both endothelial and renin lineage cells and clones in vasculature, glomeruli, and tubules; restored glomerular endothelial glycocalyx; and attenuated mitochondrial stress and immune cell homing. These effects were either not observed or of smaller magnitude with losartan. The pleiotropic nephroprotective effects of sparsentan included improved hemodynamics, podocyte and endothelial cell functions, and tissue repair. Compared with losartan, sparsentan was more effective in the sustained preservation of kidney structure and function, which underscores the importance of the ET-1 component in FSGS pathogenesis and therapy.

Authors

Georgina Gyarmati, Urvi Nikhil Shroff, Audrey Izuhara, Sachin Deepak, Radko Komers, Patricia W. Bedard, Janos Peti-Peterdi

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Figure 7

Effects of sparsentan and losartan on glomerular cell metabolism, endothelial surface layer, and immune cell homing in FSGS.

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Effects of sparsentan and losartan on glomerular cell metabolism, endoth...
(A and B) Intravital MPM images and quantitative analysis of MitoTracker Red (A, magenta) and FITC-WGA (B, green) fluorescence in glomeruli (G) from no-drug control (left), sparsentan-treated (center), and losartan-treated (right) (for 6 weeks) Pod-TRPC6-Tg mouse (6 months old) kidneys. Note the intensely labeled podocytes suggesting high level of oxidative stress (A, arrowheads) and endothelial glycocalyx heterogeneity (B, accumulation in some capillary segments [thick arrows]), but undetectable levels in other regions (thin arrows) in control but not in sparsentan-treated mice. Numerous CD44+ (green) immune cells (B, arrowheads) were found in the lumen of glomerular capillaries in control FSGS mice. Statistical summary of MitoTracker Red intensity in the entire glomerulus or selectively in podocytes (A) and glomerular endothelial surface layer (glycocalyx) thickness and CD44+ immune cell homing (B) in the various treatment groups (n = 8 each). Data represent mean ± SEM. **P < 0.01; ***P < 0.001; ****P < 0.0001 using 1-way ANOVA with Tukey’s multiple-comparison test. NS, not significant. For all panels, n = 10 measurements averaged for each of the n = 8 mice (n = 4 males [blue] and n = 4 females [red]) in each group. Scale bars: 20 μm.

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