Τόμος 21 (2007) – Τεύχος 3 – Άρθρο 3 – Επιθεώρηση Κλινικής Φαρμακολογίας και Φαρμακοκινητικής-Διεθνής Έκδοση – Volume 21 (2007) – Issue 3 – Article 3 – Epitheorese Klinikes Farmakologias και Farmakokinetikes-International Edition

Title Testosterone decreases rat liver and intestinal epithelium apoptosis
Authors H. Frangou and S. Massouridou

Department of General Biology, Medical School, Aristotle University, Thessaloniki, Greece

Citation Frangou, H., Masouridou, S.: Testosterone decreases rat liver and intestinal epithelium apoptosis, Epitheorese Klin. Farmakol. Farmakokinet. 21(3): 257-260 (2007)
Publication Date Accepted for publication (Final version): September 10, 2007
Full Text Language English
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Keywords Testosterone, rat liver, intestinal epithelium, caspase-3, apoptosis.
Other Terms review article
Summary Increased levels of testosterone have been associated with programmed cell death in many tissues. The biological effects of testosterone depend upon the tissue on which it acts and upon the various stages of life. The aim of this study is to examine whether testosterone following administration at different doses and ages of animals influences apoptotic process in rat liver and intestinal epithelium and to elucidate the mechanisms of its action, including caspase-3. Male rats (Wistar) were divided into age groups A (3 months), and B the oldest (9 months). They were further divided into subgroups: A1 and B1 subgroups constituted the controls; A2, B2 subgroups were received at once intramuscular injection of testosterone (2.5 mg/kg b.w), and A3, B3 subgroups received testosterone injection (5 mg/kg b.w.). The animals were sacrificed 5 days later, livers removed and after appropriate manipulation they were homogenized with a Potter Elvehjem homogenator. Caspase-3 activity was determined, using a colorimetric assay (kit, Sigma), based on the hydrolysis of the peptide substrate acetyl-Asp-Glu-Val-Asp p-Nitroaniline (pNA) moiety, according to the method of Nicholson with minor modification. The caspase 3 activity was calculated in µmol pNA released per min per ml. Our findings showed decreased caspase-3 activity in intestinal epithelium as well as in liver after treatment with testosterone, which was independent of dosage and age. Enhanced caspase-3 activity was observed in liver when rats were treated with the highest dose only. We assume that testosterone can restrict apoptotic death in rat intestinal epithelium and hepatocytes.
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