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Published on: July 12, 2011
Embryonic development of the ureter and bladder: acquisition of smooth muscle
1Department of Pediatrics, University of Virginia School of Medicine, Charlottesville 22908, USA.
Insights
Smooth muscle development in rat ureters begins late in gestation, starting near the bladder and progressing towards the kidneys. This process involves alpha-smooth muscle actin expression, indicating muscle differentiation.
Area of Science:
- Developmental Biology
- Urology
- Histology
Background:
- The development of smooth muscle in visceral organs is crucial for their function.
- Understanding the precise timing and location of smooth muscle acquisition in the ureter is essential for comprehending urinary tract development.
Purpose of the Study:
- To map the temporal and spatial development of ureteral smooth muscle in Sprague-Dawley rats.
- To investigate the expression patterns of alpha-smooth muscle actin (alpha-SM actin) during embryonic and postnatal development of the ureter and bladder.
Main Methods:
- Immunohistochemistry using an alpha-SM actin antibody on rat embryos (E16-E20) and newborn pups.
- Microscopic examination to assess the distribution and intensity of alpha-SM actin staining.
Main Results:
- Alpha-SM actin expression was first detected at E16 in the subserosal zone of the urogenital sinus.
- Significant ureteral smooth muscle staining appeared by E20, with regional differences (distal > mid > proximal).
- Smooth muscle formation was subepithelial in the ureter and subserosal in the bladder, with increased expression postnatally.
Conclusions:
- Ureteral and bladder smooth muscle differentiation occurs later than in other visceral organs.
- Smooth muscle development in the urinary tract proceeds in an ascending manner, from the bladder to the intrarenal system.
- Positional information likely governs the activation of smooth muscle myogenesis in the embryonic urinary tract.
Abstract:
To delineate the temporal and spatial acquisition of the smooth muscle of the ureter, Sprague-Dawley rat embryos and newborn pups were immunostained with alpha-smooth muscle actin (alpha-SM actin) antibody. Alpha-SM actin expression was first detected in the urinary tract at 16 days of gestation (E16) in a thin subserosal zone about the urogenital sinus. At this time, the E16 ureter is composed of a simple cuboidal epithelium which is surrounded by 1 to 2 layers of condensed alpha-SM actin negative spindle shaped cells. No immunostaining was detected along the ureter or its intrarenal branches until the 20th day of gestation (E20). Alpha-SM actin expression in the E20 ureter exhibited regional differences. The number of alpha-SM actin positive smooth muscle cells was greatest in the distal ureter, intermediate in the mid ureter, and least in the proximal ureter near the kidney. While smooth muscle formation in the bladder was subserosal, in the ureter it was subepithelial. During postnatal life, alpha-SM actin expression increased in both organs as all periepithelial spindle cells stained positive and intensified their staining. Smooth muscle differentiation of the ureter and bladder occurs later in embryonic life than other visceral and vascular organs and occurs in an ascending fashion from the bladder to the intrarenal collecting system. It is likely that the activation of visceral smooth muscle myogenesis within the urinary tract is governed by positional information specific to the embryonic development of each organ.
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