Related Experiment Video
Updated: Jul 11, 2026

Formation of Human Prostate Epithelium Using Tissue Recombination of Rodent Urogenital Sinus Mesenchyme and Human Stem Cells
Published on: June 22, 2013
Dynamics of the epithelium during canalization of the rat ventral prostate
Alexandre Bruni-Cardoso1, Hernandes F Carvalho
1Department of Cell Biology, State University of Campinas (UNICAMP), Campinas SP, Brazil.
Insights
Prostate development involves epithelial canalization starting within 24 hours of birth. This process, crucial for postnatal prostatic morphogenesis, results from cell differentiation and apoptosis, establishing the adult prostate structure.
Area of Science:
- Urology
- Developmental Biology
- Cell Biology
Background:
- Postnatal prostatic morphogenesis begins with solid cord outgrowth and branching.
- These initial events involve cell proliferation and stromal projection, preceding epithelial canalization.
Purpose of the Study:
- To investigate the dynamics of prostate epithelial canalization in the developing rat ventral prostate.
- To analyze cellular events during the first week of postnatal development.
Main Methods:
- Histological, stereological, and ultrastructural analyses were employed.
- Terminal deoxynucleotidyltransferase [TdT]-mediated deoxy-UTP nick end labeling assay was used to detect DNA fragmentation.
Main Results:
- Prostate epithelial canalization initiates by day 1 (24 hours post-birth) and progresses over the first week.
- Luminal volume density reached approximately 3% by day 6.
- Canalization involved epithelial cell differentiation (polarization, organelle development, junction formation) and apoptosis, primarily in cells not on the basement membrane.
Conclusions:
- Prostate epithelial canalization is a complex process involving cell fate decisions.
- Both cell differentiation and apoptosis contribute to lumen formation and the establishment of the adult epithelial pattern.
Abstract:
Outgrowth and branching of solid cords are the initial events in postnatal prostatic morphogenesis. These processes involve cell proliferation and their projection into the stroma and precede epithelial canalization. The purpose of the present study was to examine the dynamics of the prostate epithelium during canalization of the rat ventral prostate in the first week of postnatal development using histological, stereological, and ultrastructural analyses. The terminal deoxynucleotidyltransferase [TdT]-mediated deoxy-UTP nick end labeling assay was used to investigate the occurrence of DNA fragmentation. Our results demonstrate that canalization of the prostate epithelium starts as early as on day 1 (24 hr after birth) and progresses thereafter. By the end of the first week (day 6), luminal volume density reached approximately 3% (P < 0.05) of the organ. Canalization was the result of epithelial cell differentiation and apoptosis. The former involved organization of the epithelial cells into a single layer sitting on the basement membrane, polarization, enlargement of secretory organelles and accumulation of secretory vesicles, microvilli formation, and establishment of the adult pattern of cell junctions. The latter was observed to occur mostly to epithelial cells not in contact with the basement membrane. Structures of variable electron density were observed in the developing lumen. In conclusion, different phenomena seem to be involved in the canalization of the rat ventral prostate. However, it was evident from the present results that complex epithelial cell fate decisions take place during this process.
Related Concept Videos
Urethra
The anatomy of the urethra differs between males and females. In females, the urethra is short, measuring about 3–4 cm in length, and opens anterior to the vaginal opening. In males, the urethra is longer and passes through the penis, serving dual purposes: expelling urine and ejaculating semen. The male urethra is...
Anatomy of the Genitourinary System II: Bladder and Urethra
Vagina
