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Updated: Jun 17, 2026

Epithelial Cell Repopulation and Preparation of Rodent Extracellular Matrix Scaffolds for Renal Tissue Development
Published on: August 10, 2015
Remodeling of the fetal collecting duct epithelium
Michael J Hiatt1, Larissa Ivanova, Nuria Toran
1Child and Family Research Institute and Department of Pediatrics, University of British Columbia, Vancouver, British Columbia, Canada V6H 3V4.
Insights
Congenital urinary tract obstruction alters kidney development, affecting intercalated cells. Obstruction can lead to premature differentiation or depletion of these cells, impacting renal collecting duct development.
Area of Science:
- Nephrology
- Developmental Biology
- Urology
Background:
- Congenital urinary tract obstruction (CUTO) impacts renal development.
- Intercalated cells are crucial for kidney function and are affected by obstruction.
Purpose of the Study:
- To investigate the impact of CUTO on the development of intercalated cells in human kidneys.
- To characterize normal intercalated cell ontogeny and compare it to obstructed kidneys.
Main Methods:
- Examination of normal and obstructed human fetal and postnatal kidneys.
- Histological analysis to identify and quantify intercalated cell subtypes.
Main Results:
- Intercalated cells originate in the fetal medulla and are rare in the cortex.
- CUTO can cause increased intercalated cell abundance and differentiation in milder cases.
- Severe obstruction leads to a significant reduction in intercalated cells.
Conclusions:
- CUTO disrupts normal intercalated cell development and distribution.
- Obstruction may induce premature remodeling and differentiation of the fetal collecting duct epithelium.
Abstract:
Congenital urinary tract obstruction induces changes to the renal collecting duct epithelium, including alteration and depletion of intercalated cells. To study the effects of obstruction on the ontogeny of intercalated cell development, we examined normal and obstructed human fetal and postnatal kidneys. In the normal human fetal kidney, intercalated cells originated in the medullary collecting duct at 8 weeks gestation and remained most abundant in the inner medulla throughout gestation. In the cortex, intercalated cells were rare at 18 and 26 weeks gestation and observed at low abundance at 36 weeks gestation. Although early intercalated cells exhibit an immature phenotype, Type A intercalated cells predominated in the inner and outer medullae at 26 and 36 weeks gestation with other intercalated cell subtypes observed rarely. Postnatally, the collecting duct epithelium underwent a remodeling whereby intercalated cells become abundant in the cortex yet absent from the inner medulla. In 18-week obstructed kidneys with mild to moderate injury, the intercalated cells became more abundant and differentiated than the equivalent age-matched normal kidney. In contrast, more severely injured ducts of the late obstructed kidney exhibited a significant reduction in intercalated cells. These studies characterize the normal ontogeny of human intercalated cell development and suggest that obstruction induces premature remodeling and differentiation of the fetal collecting duct epithelium.
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