Abstract Background Reactive oxygen species (ROS)-induced oxidative stress is well known to play a major role in male infertility. Sperm are sensitive to ROS damaging effects because as male germ cells form mature sperm they progressively lose the ability to repair DNA damage. However, how oxidative DNA lesions in sperm affect early embryonic development remains elusive. Results Using cattle as model, we show that fertilization using sperm exposed to oxidative stress caused a major developmental arrest at the time of embryonic genome activation. The levels of DNA damage response did not directly correlate with the degree of developmental defects. The early cellular response for DNA damage, γH2AX, is already present at high levels in zygotes...
International audienceSignificance: Among the 200 or so cell types that comprise mammals, spermatozo...
One of the major causes of defective sperm function is oxidative stress, which not only disrupts the...
In Mammals, the success of fertilization and embryonic development, are associated to the quality of...
Background Reactive oxygen species (ROS)-induced oxidative stress is well known to play a major role...
Oxidative stress in spermatozoa has effects on subsequent embryo development. The aim of the present...
Sperm chromatin fragmentation may be caused by a number of factors, the most significant of which is...
DNA damage in the male germ line has been linked with a variety of adverse clinical outcomes includi...
One of the major causes of defective sperm function is sperm DNA damage induced by oxidative stress....
DNA damage in human spermatozoa has been associated with a range of adverse clinical outcomes, inclu...
Reactive oxygen metabolites are known to disrupt sperm-oo-cyte fusion, sperm movement, and DNA integ...
Genomic instability is common in human embryos, but the underlying causes are largely unknown. Here,...
DNA damage is frequently encountered in spermatozoa of subfertile males and is correlated with a ran...
International audienceOne important reason for male infertility is oxidative stress and its destruct...
Disruptions to the genetic integrity of the mammalian spermatozoon play a major role in determining ...
International audienceSignificance: Among the 200 or so cell types that comprise mammals, spermatozo...
One of the major causes of defective sperm function is oxidative stress, which not only disrupts the...
In Mammals, the success of fertilization and embryonic development, are associated to the quality of...
Background Reactive oxygen species (ROS)-induced oxidative stress is well known to play a major role...
Oxidative stress in spermatozoa has effects on subsequent embryo development. The aim of the present...
Sperm chromatin fragmentation may be caused by a number of factors, the most significant of which is...
DNA damage in the male germ line has been linked with a variety of adverse clinical outcomes includi...
One of the major causes of defective sperm function is sperm DNA damage induced by oxidative stress....
DNA damage in human spermatozoa has been associated with a range of adverse clinical outcomes, inclu...
Reactive oxygen metabolites are known to disrupt sperm-oo-cyte fusion, sperm movement, and DNA integ...
Genomic instability is common in human embryos, but the underlying causes are largely unknown. Here,...
DNA damage is frequently encountered in spermatozoa of subfertile males and is correlated with a ran...
International audienceOne important reason for male infertility is oxidative stress and its destruct...
Disruptions to the genetic integrity of the mammalian spermatozoon play a major role in determining ...
International audienceSignificance: Among the 200 or so cell types that comprise mammals, spermatozo...
One of the major causes of defective sperm function is oxidative stress, which not only disrupts the...
In Mammals, the success of fertilization and embryonic development, are associated to the quality of...