Oxidative stress and male infertility—a clinical perspective

Окислительный стресс и мужское бесплодие — клинический аспект
Kelton Tremellen
2008-02-14

male infertilityoxidative stressreactive oxygen speciessperm DNA damagesperm motility
Oxidative stress occurs when the production of potentially destructive reactive oxygen species (ROS) exceeds the bodies own natural antioxidant defenses, resulting in cellular damage. Oxidative stress is a common pathology seen in approximately half of all infertile men. ROS, defined as including oxygen ions, free radicals and peroxides are generated by sperm and seminal leukocytes within semen and produce infertility by two key mechanisms. First, they damage the sperm membrane, decreasing sperm motility and its ability to fuse with the oocyte. Second, ROS can alter the sperm DNA, resulting in the passage of defective paternal DNA on to the conceptus. This review will provide an overview of oxidative biochemistry related to sperm health and will identify which men are most at risk of oxidative infertility. Finally, the review will outline methods available for diagnosing oxidative stress and the various treatments available.
1
Clinical management requires identifying men at risk and using available diagnostic tests and treatments for oxidative stress.
2
Oxidative stress affects approximately half of infertile men and arises when reactive oxygen species production overwhelms endogenous antioxidant defenses.
3
Oxidative stress can alter sperm DNA, enabling defective paternal genetic material to be transmitted to the conceptus.
4
Reactive oxygen species damage sperm membranes, reducing motility and impairing sperm–oocyte fusion.
5
Sperm and seminal leukocytes generate reactive oxygen species, including oxygen ions, free radicals, and peroxides, within semen.

Oxidative stress in semen/sperm of infertile men

Oxidative stress and its effects on sperm membrane function, motility, oocyte fusion, and sperm DNA integrity

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2008-02-14
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Kelton Tremellen
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