Oxidative stress differentially impacts male and female bovine embryos depending on the culture medium and the stress condition

Theriogenology. 2018 Sep 1:117:49-56. doi: 10.1016/j.theriogenology.2018.05.020. Epub 2018 May 24.

Abstract

Male and female embryos are known to differ for their metabolism and response to environmental factors very early in development. The present study aimed to evaluate the response to oxidative stress of male and female bovine embryos at the morula-blastocyst stages in terms of developmental rates, total cell number and apoptotic rates in two culture conditions. Embryos where cultured in a medium supplemented with either 5% fetal calf serum (FCS) or 4 mg/mL bovine serum albumin and a mixture of insulin, transferrin and selenium (BSA-ITS). Oxidative stress was applied at Day-5 post insemination (pi) by adding either AAPH or menadione to the culture medium, and blastocysts were analyzed at Day-7pi. The impact on development and blastocyst quality was dependent on the culture medium and the stress inducer but differed between male and female embryos. Male embryos resisted better to oxidative stress in FCS supplemented medium, no matter the stress inducer. Accordingly, the impact on blastocyst cell number tended to be higher in female blastocysts after stress induction with AAPH in FCS supplemented medium. On the other hand, in BSA-ITS supplemented medium, female embryos were more resistant to AAPH induced stress, while menadione had no impact on sex ratio. The weaker resistance of males to AAPH in this medium is in accordance with their trend to show a higher increase in apoptotic rates than females in this condition. In conclusion, this study shows that oxidative stress has differential impact on male and female bovine blastocysts depending on the culture condition and on the way oxidative stress is induced.

Keywords: Blastocyst quality; Bovine blastocyst; Embryo culture; Oxidative stress; Sex ratio.

MeSH terms

  • Animals
  • Cattle / embryology*
  • Culture Media
  • Embryo, Mammalian / physiology*
  • Embryonic Development*
  • Female
  • Male
  • Oxidative Stress
  • Sex Factors
  • Sex Ratio
  • Stress, Physiological*

Substances

  • Culture Media