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Open AccessJournal ArticleDOI

Reduction of the Incidence of Sperm DNA Fragmentation by Oral Antioxidant Treatment

TLDR
Data show that sperm DNA damage can be efficiently treated with oral antioxidants administered during a relatively short time period.
Abstract
Sperm DNA fragmentation is known to compromise male fertility. Previous findings have suggested the implication of oxidative stress in the etiology of this pathological condition. The present study was conducted to find out if the pathologically increased incidence of DNA fragmentation in ejaculated spermatozoa can be reduced by oral treatment with two antioxidants, vitamins C and E. Sixty-four men with unexplained infertility and an elevated (> or = 15%) percentage of DNA-fragmented spermatozoa in the ejaculate were randomized between an antioxidant treatment (1 g vitamin C and 1 g vitamin E daily for 2 months) group and a placebo group. Sperm DNA fragmentation was evaluated by terminal deoxyribonucleotidyl transferase-mediated dUTP nick-end labeling assay before and after treatment. No differences in basic sperm parameters were found between the antioxidant treatment and the placebo group before or after treatment. However, the percentage of DNA-fragmented spermatozoa was markedly reduced (P < .001) in the antioxidant treatment group after the treatment (9.1 +/- 7.2) as compared with the pretreatment values (22.1 +/- 7.7). No difference in the pretreatment and posttreatment incidence of sperm DNA fragmentation was observed in the placebo group. These data show that sperm DNA damage can be efficiently treated with oral antioxidants administered during a relatively short time period.

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Citations
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Journal ArticleDOI

Oxidative stress and male infertility—a clinical perspective

TL;DR: This review will provide an overview of oxidative biochemistry related to sperm health and identify which men are most at risk of oxidative infertility, and outline methods available for diagnosing oxidative stress and the various treatments available.
Journal ArticleDOI

Clinical relevance of oxidative stress in male factor infertility: an update.

TL;DR: In this article, the authors discuss the need of ROS in normal sperm physiology, the mechanism of production of ROS and its pathophysiology in relation to male reproductive system and highlight the emerging concept of utilizing ROS as a method of contraception and the potential problems associated with it.
Journal ArticleDOI

Antioxidants for male subfertility

TL;DR: This Cochrane review aimed to evaluate the effectiveness and safety of oral supplementation with antioxidants for subfertile male partners in couples seeking fertility assistance with a placebo, no treatment or another antioxidant.
Journal ArticleDOI

Recurrent implantation failure: definition and management

TL;DR: Recurrent implantation failure refers to failure to achieve a clinical pregnancy after transfer of at least four good-quality embryos in a minimum of three fresh or frozen cycles in a woman under the age of 40 years.
Journal ArticleDOI

Oxidative stress and male infertility

TL;DR: Lifestyle interventions including yoga and meditation can substantially improve the integrity of sperm DNA by reducing levels of oxidative DNA damage, regulating oxidative stress and by increasing the expression of genes responsible for DNA repair, cell-cycle control and anti-inflammatory effects.
References
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Journal ArticleDOI

Utility of the sperm chromatin structure assay as a diagnostic and prognostic tool in the human fertility clinic

TL;DR: Based on logistic regression, spermatozoa with denatured DNA (cells outside the main population, COMP alpha t) were the best predictor for whether a couple would not achieve pregnancy.
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Cellular basis of defective sperm function and its association with the genesis of reactive oxygen species by human spermatozoa.

Robert John Aitken, +1 more
- 01 Nov 1987 - 
TL;DR: Studies with scavengers of reactive oxygen species revealed that, while reagents directed against singlet oxygen and the hydroxyl radical were without effect, cytochrome C reduced the response to A23187 by about 50%, suggesting that the superoxide anion radical is a major product of the activated human spermatozoon.
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Relation of mammalian sperm chromatin heterogeneity to fertility.

TL;DR: Flow cytometry of heated sperm nuclei revealed a significant decrease in resistance to in situ denaturation of spermatozoal DNA in samples from bulls, mice, and humans of low or questionable fertility when compared with others of high fertility.
Journal ArticleDOI

Peroxidative Breakdown of Phospholipids in Human Spermatozoa, Spermicidal Properties of Fatty Acid Peroxides, and Protective Action of Seminal Plasma

TL;DR: The antiperoxidant factor present in human seminal plasma effectively counteracts the toxic effect of exogenous peroxidized fatty acids upon human spermatozoa, but is unable to restore motility lost by lipid peroxide action.
Journal ArticleDOI

Oxidative stress, DNA damage and the Y chromosome.

TL;DR: The factors responsible for Y chromosome deletions in spermatozoa remain unresolved but may be one facet of a central reproductive problem: controlling the amount of oxidative stress experienced by germ cells during their differentiation and maturation in the male reproductive tract.
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