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Reactive oxygen species (ROS) are physiologically generated during mitochondrial respiration and are involved in several signaling mechanisms. However, under pathological conditions, the concentration of ROS may exceed the antioxidant scavenging systems and subsequently lead to cell damage. High ROS levels have been proven to be detrimental to spermatozoa and furthermore compromise sperm function through lipid peroxidation, protein damage, and DNA strand breakage. Although the oral administration of antioxidants has been demonstrated to improve the semen quality in subfertile men, it is still a matter of debate if it can positively influence fertilization outcome and embryo developmental competence. Studies carried out in suitable animal models could resolve these fundamental questions. Hence, the main aims of the present study were to evaluate: (1) the effects of zinc, d-aspartate, and coenzyme Q10, included in the dietary supplement Genadis (Merck Serono), on bull sperm motility and DNA fragmentation; and (2) whether treated spermatozoa have a superior competence in fertilization and in supporting the development of healthy embryos. Our data indicate that this treatment prevents the loss of sperm motility and the rise in sperm DNA fragmentation over time. Moreover, blastocyst rate was found to be significantly higher in oocytes fertilized by treated spermatozoa, and these blastocysts harbored a significantly lower percentage of apoptotic cells.
Antioxidants; DNA damage; Embryo development; Spermatozoa, Male, Ubiquinone, D-Aspartic Acid, Embryonic Development, Bovine, DNA Fragmentation, Embryo development, Spermatozoa, Antioxidants, Zinc, Sperm Motility, DNA damage, Animals, Cattle, Reactive Oxygen Species
Antioxidants; DNA damage; Embryo development; Spermatozoa, Male, Ubiquinone, D-Aspartic Acid, Embryonic Development, Bovine, DNA Fragmentation, Embryo development, Spermatozoa, Antioxidants, Zinc, Sperm Motility, DNA damage, Animals, Cattle, Reactive Oxygen Species
| selected citations These citations are derived from selected sources. This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically). | 60 | |
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| influence This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically). | Top 10% | |
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