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Updated: Aug 29, 2026

Murine Prostate Micro-dissection and Surgical Castration
Published on: May 11, 2016
Smooth muscle cell behavior in the ventral prostate of castrated rats
Eliane Antonioli1, Heloisa H M Della-Colleta, Hernandes F Carvalho
1Department of Cell Biology, Institute of Biology, State University of Campinas, Campinas SP, Brazil.
Abstract:
Smooth muscle cells (SMC) play roles in prostatic development and function. The cells also respond to tissue injury and hormonal variations, alternating between a fully differentiated and contractile phenotype and a dedifferentiated synthetic or secretory phenotype. However, the phenotypic changes in SMC after androgen deprivation have not yet been described. The ventral prostate of control and castrated rats was processed for routine histology, immunocytochemistry, reverse transcriptase polymerase chain reaction (RT-PCR), and scanning electron microscopy (SEM). The maintenance of SMC phenotype was confirmed by immunocytochemistry and by RT-PCR. Stereological analyses were done to define the relative and absolute volume of the SMC. SMC were elongated and flattened against the epithelium. After castration, the cells shortened concomitantly with pleating of the cell surface, leading to a spinous aspect. SEM showed that the smooth surface of SMC became progressively folded. Immunocytochemistry demonstrated both smooth muscle myosin heavy chain and smooth muscle alpha-actin in the prostatic SMC 21 days after castration, whereas RT-PCR amplified the message for smoothelin. Stereological analysis showed an increase in the relative volume of SMC in relation to the whole gland and the stroma. A decrease in the absolute volume of SMC occurred only within the first 7 days after castration and remained unchanged thereafter. The prostatic SMC are affected by the absence of androgens and there is a critical transition point during the first week in which the total volume occupied by SMC diminished. The remaining SMC showed a marked phenotypical change. These findings indicate that ventral prostate SMC maintain their differentiated phenotype after castration. The alterations in SMC behavior correlate with general stromal modifications taking place after castration.
Insights
Androgen deprivation causes significant changes in rat ventral prostate smooth muscle cells (SMC). While their total volume decreases initially, SMC maintain their differentiated phenotype after castration, showing altered cell shape and increased relative volume.
Area of Science:
- Urology
- Cell Biology
- Andrology
Background:
- Smooth muscle cells (SMC) are crucial for prostate development and function.
- SMC can switch between contractile and synthetic phenotypes in response to hormonal changes and injury.
- The impact of androgen deprivation on prostatic SMC phenotype was previously undescribed.
Purpose of the Study:
- To investigate the phenotypic changes in ventral prostate smooth muscle cells following androgen deprivation (castration) in rats.
- To determine if prostatic SMC maintain their differentiated state after castration.
Main Methods:
- Utilized routine histology, immunocytochemistry, RT-PCR, and scanning electron microscopy (SEM) on rat ventral prostate tissues.
- Performed stereological analyses to quantify SMC volume.
- Assessed expression of key SMC markers like smooth muscle alpha-actin and smoothelin.
Main Results:
- Castration led to SMC shortening and surface folding, observed via SEM.
- Immunocytochemistry and RT-PCR confirmed the maintenance of differentiated SMC markers (smooth muscle myosin heavy chain, smooth muscle alpha-actin, smoothelin) up to 21 days post-castration.
- Stereological analysis revealed an initial decrease in absolute SMC volume within 7 days, followed by an increase in relative SMC volume within the gland and stroma.
Conclusions:
- Ventral prostate SMC are significantly affected by androgen absence, with a critical volume transition in the first week.
- Despite morphological changes, prostatic SMC retain their differentiated phenotype after castration.
- Observed alterations in SMC behavior correlate with broader stromal modifications post-castration.

