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Androgen-induced changes in Leydig cell ultrastructure and steroidogenesis in juvenile African catfish, Clarias

J E Cavaco1, B van Blijswijk, J F Leatherland

  • 1Research Group for Comparative Endocrinology, Faculty of Biology, Utrecht University, The Netherlands.

Cell and Tissue Research
|September 2, 1999
PubMed

Insights

Steroid androgens, but not estradiol, decrease androgen production in African catfish testes by impairing Leydig cell function. This negative feedback mechanism may explain reduced androgen secretion during puberty.

Area of Science:

  • Endocrinology
  • Reproductive Biology
  • Fish Physiology

Background:

  • Previous studies observed a steroid-induced decrease in androgen production in immature African catfish testes.
  • Understanding the mechanisms behind this feedback is crucial for reproductive health in fish.

Purpose of the Study:

  • To investigate the mechanisms of steroid-induced androgen production decrease in African catfish testes.
  • To determine the effects of different androgens and estradiol on Leydig cell function and steroidogenesis.

Main Methods:

  • Juvenile African catfish were implanted with various androgens (11-oxygenated androgens, testosterone) or estradiol-17 beta.
  • Testis tissue fragments were incubated with catfish luteinizing hormone (LH) or radiolabeled steroid precursors ([3H]-pregnenolone, [3H]-androstenedione).
  • Leydig cell morphology was quantitatively assessed.

Main Results:

  • Estradiol-17 beta had minimal effects on androgen production.
  • All tested androgens inhibited basal and LH-stimulated androgen secretion in vitro.
  • Androgen treatment reduced Leydig cell size, decreased mitochondrial content, and affected steroidogenic steps prior to 11 beta-hydroxylation.

Conclusions:

  • Androgens, particularly 11-oxygenated androgens and testosterone, negatively feedback on Leydig cell function to reduce androgen production.
  • These findings suggest a conserved mechanism for androgen feedback in fish reproduction.
  • This negative feedback may be relevant to the natural decline in androgen secretion during the onset of spermatogenesis in African catfish.

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