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Isolation and Culture of Cells from the Nephrogenic Zone of the Embryonic Mouse Kidney
Published on: April 22, 2011
Cell type specific changes in BMP-7 expression contribute to the progression of kidney disease in patients with
Scott R Manson1, Joseph B Song1, Qiusha Guo1
1Department of Surgery, Division of Urology, St. Louis Children's Hospital and Department of Pathology and Immunology, Barnes-Jewish Hospital (HL), Washington University, St. Louis, Missouri.
Insights
Reduced bone morphogenetic protein-7 (BMP-7) expression in congenital urinary tract obstruction contributes to irreversible kidney damage and impaired development. Restoring BMP-7 activity may limit disease progression in affected patients.
Area of Science:
- Nephrology
- Developmental Biology
- Molecular Medicine
Background:
- Congenital urinary tract obstruction is a primary cause of pediatric kidney disease and renal maldevelopment.
- The molecular mechanisms underlying this condition remain incompletely understood.
- Bone morphogenetic protein-7 (BMP-7) is crucial for kidney repair and development.
Purpose of the Study:
- To investigate the role of BMP-7 in the molecular pathogenesis of congenital obstructive uropathy.
- To evaluate BMP-7 expression in relation to disease progression in a murine model and human patients.
Main Methods:
- Examined BMP-7 expression in kidneys of a murine unilateral ureteral obstruction model.
- Assessed BMP-7 levels in patients with congenital ureteropelvic junction obstruction.
- Correlated BMP-7 expression with markers of renal injury, fibrosis, and clinical parameters.
Main Results:
- Decreased BMP-7 expression in tubules preceded significant renal damage and fibrosis in the murine model.
- Loss of BMP-7 extended to glomeruli and collecting ducts in end-stage disease.
- In patients, reduced BMP-7 correlated with fewer nephrons, architectural loss, fibrosis, and impaired kidney function.
Conclusions:
- Cell-specific alterations in BMP-7 expression are key contributors to irreversible renal injury in congenital urinary tract obstruction.
- These changes impair kidney development and drive disease progression.
- Therapies aimed at restoring BMP-7 activity in specific cell populations may offer a strategy to mitigate disease progression.
Purpose:
Congenital urinary tract obstruction is a leading cause of renal maldevelopment and pediatric kidney disease. Nonetheless, few groups have examined its molecular pathogenesis in humans. We evaluated the role of BMP-7, a protein required for renal injury repair and nephrogenesis, in disease progression in patients with obstructive uropathy.
Materials And Methods:
Whole kidney and cell specific BMP-7 expression was examined in a murine model of unilateral ureteral obstruction and in patients with congenital ureteropelvic junction obstruction. Findings were correlated with molecular markers of renal injury and clinical parameters.
Results:
Unilateral ureteral obstruction led to a dramatic decrease in BMP-7 expression in the proximal and distal tubules before the onset of significant loss of renal architecture and fibrosis, suggesting that this is a critical molecular event that drives early stage disease progression. Loss of BMP-7 expression then extended to the collecting ducts and glomeruli in end stage kidney disease. When translating these findings to patients with ureteropelvic junction obstruction, global loss of BMP-7 expression correlated with a decreased number of nephrons, loss of renal architecture, severe renal fibrosis and loss of kidney function.
Conclusions:
Given that BMP-7 has a critical role in renal injury repair and nephrogenesis, these findings show that cell specific changes in BMP-7 expression contribute to the onset of irreversible renal injury and impaired kidney development secondary to congenital urinary tract obstruction. Accordingly therapies that target these cell populations to restore BMP-7 activity may limit disease progression in patients with obstructive uropathy.
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