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Updated: Jul 17, 2026

Glomerular Outgrowth as an Ex Vivo Assay to Analyze Pathways Involved in Parietal Epithelial Cell Activation
Published on: August 19, 2020
P2Y1 gene deficiency protects from renal disease progression and capillary rarefaction during passive crescentic
Bernd Hohenstein1, Sindy Renk, Kathrin Lang
1Department of Nephrology and Hypertension, University Erlangen-Nuremberg, Loschgestrasse 8, 91054 Erlangen, Germany.
Abstract:
The metabotropic receptor P2Y1 is necessary for full ADP-induced platelet activation and is localized on various intrinsic renal cells, including mesangial cells, podocytes, and endothelial cells. To date, nothing is known about the role of the P2Y1 receptor during inflammatory renal disease. The role of the P2Y1 receptor was investigated using 22 P2Y1 gene-deficient (-/-) and 27 wild-type (wt) mice during the time course of passive crescentic nephrotoxic glomerulonephritis. Six P2Y1 -/- and six wt mice served as undiseased controls. Renal tissues were harvested on days 1, 10, and 28 after disease induction. No renal phenotype was found in P2Y1 -/- versus wt mice. In contrast, during crescentic glomerulonephritis, approximately 50% of all wt mice died, whereas all P2Y1 -/- mice survived. Renal function as assessed by creatinine clearance measurements, glomerulosclerosis, and tubulointerstitial injury indices as well as glomerular and interstitial matrix expansion were improved significantly in P2Y1 -/- compared with wt mice. These changes were preceded by reduced glomerular and peritubular capillary rarefaction indices in P2Y1 -/- compared with wt mice. The alteration of the rates of both peritubular apoptosis and endothelial cell proliferation suggests improved capillary preservation in P2Y1 -/- mice early in disease (day 10) and an additional enhanced repair reaction in P2Y1 -/- mice at the late time point (day 28), whereas injury on day 1 seemed to be equivalent in both groups. It is concluded that loss of P2Y1 receptor function safeguards against capillary loss, fibrosis, and death by renal failure during experimental crescentic glomerulonephritis.
Insights
Mice lacking the P2Y1 receptor (P2Y1-/-) showed improved survival and kidney function during experimental glomerulonephritis. Loss of P2Y1 receptor function protects against kidney damage and failure.
Area of Science:
- Nephrology
- Immunology
- Cell Biology
Background:
- The P2Y1 receptor is involved in platelet activation and present in renal cells.
- Its role in inflammatory kidney disease remains unknown.
Purpose of the Study:
- To investigate the role of the P2Y1 receptor in experimental crescentic glomerulonephritis.
- To assess the impact of P2Y1 gene deficiency on renal function and pathology.
Main Methods:
- Used P2Y1 gene-deficient (-/-) and wild-type (wt) mice in a passive crescentic nephrotoxic glomerulonephritis model.
- Monitored survival, renal function (creatinine clearance), and histological damage at multiple time points.
- Assessed capillary rarefaction, apoptosis, and endothelial cell proliferation.
Main Results:
- P2Y1-/- mice exhibited significantly improved survival rates compared to wt mice during glomerulonephritis.
- Renal function, glomerulosclerosis, tubulointerstitial injury, and matrix expansion were significantly reduced in P2Y1-/- mice.
- P2Y1 deficiency led to reduced capillary rarefaction and altered apoptosis/proliferation rates, suggesting improved capillary preservation and repair.
Conclusions:
- Loss of P2Y1 receptor function protects against capillary loss, fibrosis, and mortality in experimental crescentic glomerulonephritis.
- P2Y1 receptor antagonism may represent a therapeutic strategy for inflammatory renal diseases.
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