DNA damage is frequently encountered in spermatozoa of subfertile males and is correlated with a range of adverse clinical outcomes including impaired fertilization, disrupted preimplantation embryonic development, increased rates of miscarriage and an enhanced risk of disease in the progeny. The etiology of DNA fragmentation in human spermatozoa is closely correlated with the appearance of oxidative base adducts and evidence of impaired spermiogenesis. We hypothesize that oxidative stress impedes spermiogenesis, resulting in the generation of spermatozoa with poorly remodelled chromatin. These defective cells have a tendency to default to an apoptotic pathway associated with motility loss, caspase activation, phosphatidylserine exterioriza...
International audienceOne important reason for male infertility is oxidative stress and its destruct...
Abstract Human spermatozoa generate low levels of reactive oxygen species in order to stimulate key ...
International audienceOne important reason for male infertility is oxidative stress and its destruct...
DNA damage in the male germ line has been linked with a variety of adverse clinical outcomes includi...
DNA damage in human spermatozoa has been associated with a range of adverse clinical outcomes, inclu...
DNA damage in human spermatozoa has been associated with a range of adverse clinical outcomes, inclu...
One of the major causes of defective sperm function is sperm DNA damage induced by oxidative stress....
Defective sperm function is the largest single defined cause of human infertility and one of the maj...
The objective of this study was to evaluate the effect of the generation of reactive oxygen species ...
International audienceOne important reason for male infertility is oxidative stress and its destruct...
grantor: University of TorontoObjectives. To correlate the percentage of sperm with damage...
grantor: University of TorontoObjectives. To correlate the percentage of sperm with damage...
Spermatozoa are highly vulnerable to oxidative attack because they lack significant antioxidant prot...
International audienceOne important reason for male infertility is oxidative stress and its destruct...
International audienceOne important reason for male infertility is oxidative stress and its destruct...
International audienceOne important reason for male infertility is oxidative stress and its destruct...
Abstract Human spermatozoa generate low levels of reactive oxygen species in order to stimulate key ...
International audienceOne important reason for male infertility is oxidative stress and its destruct...
DNA damage in the male germ line has been linked with a variety of adverse clinical outcomes includi...
DNA damage in human spermatozoa has been associated with a range of adverse clinical outcomes, inclu...
DNA damage in human spermatozoa has been associated with a range of adverse clinical outcomes, inclu...
One of the major causes of defective sperm function is sperm DNA damage induced by oxidative stress....
Defective sperm function is the largest single defined cause of human infertility and one of the maj...
The objective of this study was to evaluate the effect of the generation of reactive oxygen species ...
International audienceOne important reason for male infertility is oxidative stress and its destruct...
grantor: University of TorontoObjectives. To correlate the percentage of sperm with damage...
grantor: University of TorontoObjectives. To correlate the percentage of sperm with damage...
Spermatozoa are highly vulnerable to oxidative attack because they lack significant antioxidant prot...
International audienceOne important reason for male infertility is oxidative stress and its destruct...
International audienceOne important reason for male infertility is oxidative stress and its destruct...
International audienceOne important reason for male infertility is oxidative stress and its destruct...
Abstract Human spermatozoa generate low levels of reactive oxygen species in order to stimulate key ...
International audienceOne important reason for male infertility is oxidative stress and its destruct...