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      Oxidative stress and male infertility: current knowledge of pathophysiology and role of antioxidant therapy in disease management

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          Abstract

          <p class="first" id="d1006929e97">Infertility is a global health problem involving about 15% of couples. Approximately half of the infertility cases are related to male factors. The oxidative stress, which refers to an imbalance in levels of reactive oxygen species (ROS) and antioxidants, is one of the main causes of infertility in men. A small amount of ROS is necessary for the physiological function of sperm including the capacitation, hyperactivation and acrosomal reaction. However, high levels of ROS can cause infertility through not only by lipid peroxidation or DNA damage but inactivation of enzymes and oxidation of proteins in spermatozoa. Oxidative stress (OS) is mainly caused by factors associated with lifestyle. Besides, immature spermatozoa, inflammatory factors, genetic mutations and altering levels of sex hormones are other main source of ROS. Since OS occurs due to the lack of antioxidants and its side effects in semen, lifestyle changes and antioxidant regimens can be helpful therapeutic approaches to overcome this problem. The present study aimed to describe physiological ROS production, roles of genetic and epigenetic factors on the OS and male infertility with various mechanisms such as lipid peroxidation, DNA damage, and disorder of male hormone profile, inflammation, and varicocele. Finally, the roles of oral antioxidants and herbs were explained in coping with OS in male infertility. </p>

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          Contributors
          (View ORCID Profile)
          Journal
          Cellular and Molecular Life Sciences
          Cell. Mol. Life Sci.
          Springer Science and Business Media LLC
          1420-682X
          1420-9071
          January 2020
          August 3 2019
          January 2020
          : 77
          : 1
          : 93-113
          Article
          10.1007/s00018-019-03253-8
          31377843
          eeb7f82b-f338-4ab8-a657-90a4424c3114
          © 2020

          http://www.springer.com/tdm

          http://www.springer.com/tdm

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