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Toxicant-induced acceleration of epididymal sperm transit: androgen-dependent proteins may be involved

G R Klinefelter1, J D Suarez

  • 1United States Environmental Protection Agency, National Health and Environmental Effects Research Laboratory, Research Triangle Park, North Carolina 27711, USA.

Insights

Chloroethylmethanesulphonate (CEMS) and hydroxyflutamide (HFLUT) accelerate sperm transit through the epididymis. This effect, independent of the testis, may involve androgen-dependent epididymal dysfunction.

Area of Science:

  • Reproductive Biology
  • Endocrinology
  • Toxicology

Background:

  • Chloroethylmethanesulphonate (CEMS) reduces serum testosterone (T) and epididymal sperm reserves.
  • Previous studies showed CEMS decreased cauda epididymal sperm without affecting testicular spermatids.
  • The epididymis-specific effect persisted even with T supplementation.

Purpose of the Study:

  • To investigate if CEMS-induced sperm reduction is due to altered epididymal transit time.
  • To determine the role of testicular fluid and androgen-dependent mechanisms in this phenomenon.
  • To identify specific proteins in the epididymis affected by CEMS and hydroxyflutamide (HFLUT).

Main Methods:

  • Vasa deferentia ligation was performed before CEMS exposure with or without T implants.
  • Efferent ducts were ligated to assess testicular fluid's role.
  • The antiandrogen HFLUT was administered to castrated, T-implanted rats.
  • Sperm counts in epididymal segments and protein profiles were analyzed.

Main Results:

  • CEMS and HFLUT significantly decreased sperm in the caput/corpus epididymidis.
  • A reciprocal increase in sperm numbers was observed in the cauda/vas.
  • Daily sperm production remained unaffected, but transit time through the caput/corpus decreased.
  • Reduced levels of epididymal proteins CC9 and CC34 correlated with decreased sperm numbers.

Conclusions:

  • Both CEMS and HFLUT accelerate sperm transit through the proximal epididymis.
  • This acceleration is independent of the testis.
  • The findings suggest a potential impairment in androgen-dependent epididymal function.

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