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Updated: Mar 28, 2026

Isolation of Sertoli Cells and Peritubular Cells from Rat Testes
Published on: February 8, 2016
Transfection of Sertoli cells with androgen receptor alters gene expression without androgen stimulation
D Fietz1, M Markmann2, D Lang3
1Institute of Veterinary Anatomy, Histology and Embryology, Justus Liebig University, Frankfurter Straße 98, 35392, Giessen, Germany. Daniela.Fietz@vetmed.uni-giessen.de.
Background:
Androgens play an important role for the development of male fertility and gained interest as growth and survival factors for certain types of cancer. Androgens act via the androgen receptor (AR/Ar), which is involved in various cell biological processes such as sex differentiation. To study the functional mechanisms of androgen action, cell culture systems and AR-transfected cell lines are needed. Transfection of AR into cell lines and subsequent gene expression analysis after androgen treatment is well established to investigate the molecular biology of target cells. However, it remains unclear how the transfection with AR itself can modulate the gene expression even without androgen stimulation. Therefore, we transfected Ar-deficient rat Sertoli cells 93RS2 by electroporation using a full length human AR.
Results:
Transfection success was confirmed by Western Blotting, immunofluorescence and RT-PCR. AR transfection-related gene expression alterations were detected with microarray-based genome-wide expression profiling of transfected and non-transfected 93RS2 cells without androgen stimulation. Microarray analysis revealed 672 differentially regulated genes with 200 up- and 472 down-regulated genes. These genes could be assigned to four major biological categories (development, hormone response, immune response and metabolism). Microarray results were confirmed by quantitative RT-PCR analysis for 22 candidate genes.
Conclusion:
We conclude from our data, that the transfection of Ar-deficient Sertoli cells with AR has a measurable effect on gene expression even without androgen stimulation and cause Sertoli cell damage. Studies using AR-transfected cells, subsequently stimulated, should consider alterations in AR-dependent gene expression as off-target effects of the AR transfection itself.
Insights
Transfecting androgen receptor (AR) into cells alters gene expression without androgen stimulation, affecting cell function. Researchers must account for these off-target effects in AR studies.
Area of Science:
- Endocrinology
- Molecular Biology
- Cell Biology
Background:
- Androgens are crucial for male fertility and implicated in cancer growth.
- The androgen receptor (AR) mediates androgen functions in cell differentiation and other processes.
- Understanding AR's role requires cell culture models, but AR transfection effects are unclear.
Purpose of the Study:
- To investigate gene expression changes in Ar-deficient Sertoli cells after androgen receptor (AR) transfection, independent of androgen stimulation.
- To identify potential off-target effects of AR transfection on cellular gene expression.
Main Methods:
- Ar-deficient rat Sertoli cells (93RS2) were transfected with full-length human AR via electroporation.
- Gene expression profiling was performed using microarrays on transfected and non-transfected cells.
- Western Blotting, immunofluorescence, and RT-PCR confirmed transfection and validated microarray findings.
Main Results:
- AR transfection was successful, confirmed by multiple methods.
- Microarray analysis revealed 672 differentially regulated genes (200 up, 472 down) without androgen stimulation.
- Affected genes were categorized into development, hormone response, immune response, and metabolism.
Conclusions:
- AR transfection into Ar-deficient Sertoli cells significantly alters gene expression, even without androgen presence.
- These AR transfection-induced changes can impact cell function and potentially cause cell damage.
- Future studies using AR-transfected cells should consider these transfection-related gene expression alterations as potential off-target effects.
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