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Open AccessJournal ArticleDOI

Impacts of Oxidative Stress and Antioxidants on Semen Functions

TLDR
The impacts of oxidative stress and reactive oxygen species on spermatozoa functions, causes of ROS generation, and antioxidative strategies to reduce OS are reviewed and the emerging concept of utilizing OS as a tool of contraception is highlighted.
Abstract
Oxidative stress (OS) has been considered a major contributory factor to the infertility. Oxidative stress is the result of imbalance between the reactive oxygen species (ROS) and antioxidants in the body which can lead to sperm damage, deformity, and eventually male infertility. Although high concentrations of the ROS cause sperm pathology (ATP depletion) leading to insufficient axonemal phosphorylation, lipid peroxidation, and loss of motility and viability but, many evidences demonstrate that low and controlled concentrations of these ROS play an important role in sperm physiological processes such as capacitation, acrosome reaction, and signaling processes to ensure fertilization. The supplementation of a cryopreservation extender with antioxidant has been shown to provide a cryoprotective effect on mammalian sperm quality. This paper reviews the impacts of oxidative stress and reactive oxygen species on spermatozoa functions, causes of ROS generation, and antioxidative strategies to reduce OS. In addition, we also highlight the emerging concept of utilizing OS as a tool of contraception.

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Journal ArticleDOI

Diabetes mellitus and oxidative stress—A concise review

TL;DR: The basic aim of this review was to summarize the basics of oxidative stress in diabetes mellitus.
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Effect of oxidative stress on male reproduction.

TL;DR: This review highlights the mechanisms of ROS production, the physiological and pathophysiological roles of ROS in relation to the male reproductive system, and recent advances in diagnostic methods; it also explores the benefits of using antioxidants in a clinical setting.
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.
Journal ArticleDOI

Oxidative toxicity in diabetes and Alzheimer’s disease: mechanisms behind ROS/ RNS generation

TL;DR: The mechanisms involved in ROS production and their possible association with AD and T2DM pathogenesis and progression are summarized and the role of current treatments that can be linked with reduced oxidative stress and damage is highlighted.
Journal ArticleDOI

Utility of antioxidants during assisted reproductive techniques : an evidence based review

TL;DR: The current body of evidence as a whole suggests the need for further well-designed and larger scale randomized controlled studies, as well as research to minimize oxidative stress conditions in the clinical ART setting.
References
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Journal ArticleDOI

Metals, toxicity and oxidative stress.

TL;DR: This review summarizes recent findings in the metal-induced formation of free radicals and the role of oxidative stress in the carcinogenicity and toxicity of metals.
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H2O2, a necessary evil for cell signaling

TL;DR: Once considered lethal to cells, reactive oxygen species are now known to be involved in redox signaling pathways that may contribute to normal cell function as well as disease progression.
Journal ArticleDOI

Role of reactive oxygen species in the pathophysiology of human reproduction

TL;DR: High levels of ROS are detrimental to the fertility potential both in natural and assisted conception states.
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Role of oxidative stress in female reproduction

TL;DR: The role OS plays in normal cycling ovaries, follicular development and cyclical endometrial changes is reviewed and female infertility and how it influences the outcomes of assisted reproductive techniques is discussed.
Journal ArticleDOI

Oxidative stress and protection against reactive oxygen species in the pre-implantation embryo and its surroundings

TL;DR: It is now common to add antioxidant compounds to culture media, but maintaining the pro-oxidant-antioxidant equilibrium in embryos through such supplementation is a complex problem.
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