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Embryo development is impaired by sperm mitochondrial-derived ROS
Mateo-Otero, Yentel; Llavanera, Marc; Torres-Garrido, Marc; Yeste, Marc.
Affiliation
  • Mateo-Otero, Yentel; University of Girona. Institute of Food and Agricultural Technology. Biotechnology of Animal and Human Reproduction (TechnoSperm. Girona. ES
  • Llavanera, Marc; University of Girona. Institute of Food and Agricultural Technology. Biotechnology of Animal and Human Reproduction (TechnoSperm. Girona. ES
  • Torres-Garrido, Marc; University of Girona. Institute of Food and Agricultural Technology. Biotechnology of Animal and Human Reproduction (TechnoSperm. Girona. ES
  • Yeste, Marc; University of Girona. Institute of Food and Agricultural Technology. Biotechnology of Animal and Human Reproduction (TechnoSperm. Girona. ES
Biol. Res ; 57: 5-5, 2024. ilus, graf
Article in En | LILACS | ID: biblio-1550060
Responsible library: CL1.1
ABSTRACT

BACKGROUND:

Basal energetic metabolism in sperm, particularly oxidative phosphorylation, is known to condition not only their oocyte fertilising ability, but also the subsequent embryo development. While the molecular pathways underlying these events still need to be elucidated, reactive oxygen species (ROS) could have a relevant role. We, therefore, aimed to describe the mechanisms through which mitochondrial activity can influence the first stages of embryo development.

RESULTS:

We first show that embryo development is tightly influenced by both intracellular ROS and mitochondrial activity. In addition, we depict that the inhibition of mitochondrial activity dramatically decreases intracellular ROS levels. Finally, we also demonstrate that the inhibition of mitochondrial respiration positively influences sperm DNA integrity, most likely because of the depletion of intracellular ROS formation.

CONCLUSION:

Collectively, the data presented in this work reveals that impairment of early embryo development may result from the accumulation of sperm DNA damage caused by mitochondrial-derived ROS.
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Full text: 1 Index: LILACS Main subject: Semen / Mitochondria Limits: Humans / Male Language: En Journal: Biol. Res Journal subject: BIOLOGIA Year: 2024 Type: Article

Full text: 1 Index: LILACS Main subject: Semen / Mitochondria Limits: Humans / Male Language: En Journal: Biol. Res Journal subject: BIOLOGIA Year: 2024 Type: Article