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Published on: August 13, 2013
Testosterone abrogates TLR4 activation in prostate smooth muscle cells contributing to the preservation of a
Carolina Leimgruber1, Amado Alfredo Quintar, Luciana Noemí García
1Facultad de Ciencias Médicas, Centro de Microscopía Electrónica, Instituto de Investigaciones en Ciencias de la Salud (INICSA-CONICET), Universidad Nacional de Córdoba, Córdoba, Argentina.
Abstract:
Prostate smooth muscle cells (pSMCs) are capable of responding to inflammatory stimuli by secreting proinflammatory products, which causes pSMCs to undergo dedifferentiation. Although it has been proposed that androgens decrease proinflammatory molecules in many cells and under various conditions, the role of testosterone in the prostate inflammatory microenvironment is still unclear. Therefore, our aim was to evaluate if testosterone was able to modulate the pSMCs response to bacterial LPS by stimulating primary pSMC cultures, containing testosterone or vehicle, with LPS (1 or 10 µg/ml) for 24-48 h. The LPS challenge induced pSMCs dedifferentiation as evidenced by a decrease of calponin and alpha smooth muscle actin along with an increase of vimentin in a dose-dependent manner, whereas testosterone abrogated these alterations. Additionally, an ultrastructural analysis showed that pSMCs acquired a secretory profile after LPS and developed proteinopoietic organelles, while pSMCs preincubated with testosterone maintained a more differentiated phenotype. Testosterone downregulated the expression of surface TLR4 in control cells and inhibited any increase after LPS treatment. Moreover, testosterone prevented IκB-α degradation and the LPS-induced NF-κB nuclear translocation. Testosterone also decreased TNF-α and IL6 production by pSMCs after LPS as quantified by ELISA. Finally, we observed that testosterone inhibited the induction of pSMCs proliferation incited by LPS. Taken together, these results indicate that testosterone reduced the proinflammatory pSMCs response to LPS, with these cells being less reactive in the presence of androgens. In this context, testosterone might have a homeostatic role by contributing to preserve a contractile phenotype on pSMCs under inflammatory conditions.
Insights
Testosterone reduces prostate smooth muscle cell inflammation and dedifferentiation caused by bacterial lipopolysaccharide (LPS). This suggests testosterone plays a homeostatic role in maintaining prostate smooth muscle cell function during inflammation.
Area of Science:
- Urology
- Immunology
- Cell Biology
Background:
- Prostate smooth muscle cells (pSMCs) dedifferentiate and secrete inflammatory products when exposed to inflammatory stimuli.
- The role of testosterone in the prostate's inflammatory microenvironment is not fully understood.
- Androgens are generally thought to decrease inflammatory molecules in various cell types.
Purpose of the Study:
- To investigate testosterone's effect on pSMC response to bacterial lipopolysaccharide (LPS).
- To determine if testosterone modulates pSMC dedifferentiation, inflammatory signaling, and proliferation under LPS challenge.
Main Methods:
- Primary pSMC cultures were stimulated with LPS in the presence or absence of testosterone.
- Changes in pSMC differentiation markers (calponin, alpha smooth muscle actin, vimentin) were assessed.
- Ultrastructural analysis, TLR4 expression, NF-κB pathway activation, cytokine production (TNF-α, IL6), and proliferation were evaluated.
Main Results:
- LPS induced pSMC dedifferentiation, which was abrogated by testosterone.
- Testosterone prevented LPS-induced changes in ultrastructure and proteinopoietic organelles.
- Testosterone downregulated TLR4, inhibited IκB-α degradation and NF-κB translocation, and reduced TNF-α and IL6 production.
- Testosterone inhibited LPS-induced pSMC proliferation.
Conclusions:
- Testosterone significantly reduces the proinflammatory response of pSMCs to LPS.
- Testosterone helps maintain a differentiated, contractile phenotype in pSMCs under inflammatory conditions.
- Testosterone may exert a homeostatic role in the prostate during inflammation.
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