[HTML][HTML] Oxidative stress impairs function and increases redox protein modifications in human spermatozoa

T Morielli, C O'Flaherty - Reproduction, 2015 - rep.bioscientifica.com
Oxidative stress, generated by excessive reactive oxygen species (ROS) or decreased
antioxidant defenses (and possibly both), is associated with male infertility. Oxidative stress …

[HTML][HTML] OXIDATIVE STRESS IMPAIRS FUNCTION AND INCREASES REDOX PROTEIN MODIFICATIONS IN HUMAN SPERMATOZOA

T Morielli, C O'Flaherty - Reproduction (Cambridge, England), 2015 - ncbi.nlm.nih.gov
Oxidative stress, generated by excessive reactive oxygen species (ROS) or decrease in
antioxidant defences (and possibly both), is associated with male infertility. A consequence …

Oxidative stress impairs function and increases redox protein modifications in human spermatozoa

T Morielli, C O'Flaherty - REPRODUCTION, 2015 - cir.nii.ac.jp
抄録< jats: p> Oxidative stress, generated by excessive reactive oxygen species (ROS) or
decreased antioxidant defenses (and possibly both), is associated with male infertility …

Oxidative stress impairs function and increases redox protein modifications in human spermatozoa.

T Morielli, C O'Flaherty - Reproduction (Cambridge, England), 2014 - europepmc.org
Oxidative stress, generated by excessive reactive oxygen species (ROS) or decrease in
antioxidant defences (and possibly both), is associated with male infertility. A consequence …

Oxidative stress impairs function and increases redox protein modifications in human spermatozoa

T Morielli, C O'Flaherty - Reproduction (Cambridge …, 2015 - pubmed.ncbi.nlm.nih.gov
Oxidative stress, generated by excessive reactive oxygen species (ROS) or decreased
antioxidant defenses (and possibly both), is associated with male infertility. Oxidative stress …

Oxidative stress impairs function and increases redox protein modifications in human spermatozoa.

T Morielli, C O'Flaherty - Reproduction (Cambridge, England), 2014 - europepmc.org
Oxidative stress, generated by excessive reactive oxygen species (ROS) or decrease in
antioxidant defences (and possibly both), is associated with male infertility. A consequence …