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Intravital imaging reveals glomerular capillary distension and endothelial and immune cell activation early in Alport syndrome
Georgina Gyarmati, Urvi Nikhil Shroff, Audrey Izuhara, Xiaogang Hou, Stefano Da Sacco, Sargis Sedrakyan, Kevin V. Lemley, Kerstin Amann, Laura Perin, János Peti-Peterdi
Georgina Gyarmati, Urvi Nikhil Shroff, Audrey Izuhara, Xiaogang Hou, Stefano Da Sacco, Sargis Sedrakyan, Kevin V. Lemley, Kerstin Amann, Laura Perin, János Peti-Peterdi
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Research Article Nephrology

Intravital imaging reveals glomerular capillary distension and endothelial and immune cell activation early in Alport syndrome

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Abstract

Alport syndrome (AS) is a genetic disorder caused by mutations in type IV collagen that lead to defective glomerular basement membrane, glomerular filtration barrier (GFB) damage, and progressive chronic kidney disease. While the genetic basis of AS is well known, the molecular and cellular mechanistic details of disease pathogenesis have been elusive, hindering the development of mechanism-based therapies. Here, we performed intravital multiphoton imaging of the local kidney tissue microenvironment in a X-linked AS mouse model to directly visualize the major drivers of AS pathology. Severely distended glomerular capillaries and aneurysms were found accompanied by numerous microthrombi, increased glomerular endothelial surface layer (glycocalyx) and immune cell homing, GFB albumin leakage, glomerulosclerosis, and interstitial fibrosis by 5 months of age, with an intermediate phenotype at 2 months. Renal histology in mouse or patient tissues largely failed to detect capillary aberrations. Treatment of AS mice with hyaluronidase or the ACE inhibitor enalapril reduced the excess glomerular endothelial glycocalyx and blocked immune cell homing and GFB albumin leakage. This study identified central roles of glomerular mechanical forces and endothelial and immune cell activation early in AS, which could be therapeutically targeted to reduce mechanical strain and local tissue inflammation and improve kidney function.

Authors

Georgina Gyarmati, Urvi Nikhil Shroff, Audrey Izuhara, Xiaogang Hou, Stefano Da Sacco, Sargis Sedrakyan, Kevin V. Lemley, Kerstin Amann, Laura Perin, János Peti-Peterdi

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Figure 1

Overview MPM images and microvascular features of AS pathology in the intact living mouse kidney.

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Overview MPM images and microvascular features of AS pathology in the in...
(A–C) Overview of the renal cortex in 2-month-old control (A) and AS (Early AS; B) and 5-month-old AS mice (Late AS; C). Plasma was labeled with albumin–Alexa Fluor 680 (gray), and second harmonic generation (SHG; cyan) illuminated fibrotic tissue regions (cyan arrows). Optical sections were acquired approximately 150 μm under the kidney surface. Note the presence of normal glomeruli (no albumin filtration) among albumin-leaking and collapsing glomeruli (arrowheads; gray filtration space in G and tubular lumen) and tubular protein casts (white arrows) in AS mice (B and C) but not in controls (A). G, glomerulus. Scale bar: 100 μm. (D–F) Close-up images of glomeruli in late-stage AS mice (E and F) compared with controls (D) demonstrate severe distension of the afferent arteriole (AA) and glomerular capillaries, the presence of capillary aneurysms (red dotted line illustrates capillary wall), microthrombi and albumin-excluding dark cells (arrows) sticking to capillary walls and blocking red blood cell passage (dark bands in the light gray plasma), robust GFB albumin leakage (arrowheads), and interstitial fibrosis (SHG; cyan). EA, efferent arteriole. Scale bars: 20 μm. (G–K) Statistical summary of the changes in largest glomerular (G), afferent arteriole (H), efferent arteriole (I), and glomerular capillary diameters (J) and glomerular albumin leakage (albumin glomerular sieving coefficient [GSC]; K) in early- and late-stage AS mice compared with controls (CTRL). (L–P) Representative immunofluorescence images (L–N) and quantification (O and P) of the number of podocyte marker p57+ cells per glomerular section (green) and the PLVAP+ (glomerular endothelial injury marker; red) area of the glomerular tuft in control, early-stage, and late-stage AS mice. Nuclei are stained blue with DAPI. Scale bars: 20 μm. Data are shown as the mean ± SEM. *P < 0.05, **P < 0.01, ***P < 0.001, ****P < 0.0001, using 1-way ANOVA with Tukey’s multiple-comparison test. Data points represent the average of multiple measurements/mouse for n = 8 mice in each group.

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