Protein expression/activity of antioxidative defense enzymes (AD) in seminal plasma of fertile men might be used as biomarkers of male fertility status. To test this concept, the present study examined the semen parameters of males among 14 normal idiopathic (normozoospermia) and 84 subnormal (teratozoospermia, oligoteratozoospermia, oligoasthenoteratozoospermia) infertile individuals\. We investigated levels of protein expression/activity of Cu, Zn superoxide dismutase (CuZnSOD), manganese superoxide dismutase (MnSOD), catalase and glutathione peroxidase (GSH-Px), their association with functional sperm parameters, as well as their potential to serve as biomarkers of specific sperm pathologies. Although the activity of CuZnSOD and protein ...
Objective: Oxidative stress has been implicated in the pathogenesis of male infertility. In this stu...
This study was aimed to assess the antioxidant enzymatic and non-enzymatic compounds in semen of inf...
38-43Excess reactive oxygen species (ROS) beyond the scavenging capacity of antioxidants leads to DN...
Protein expression/activity of antioxidative defense enzymes (AD) in seminal plasma of fertile men m...
Protein expression/activity of antioxidative defense enzymes (AD) in seminal plasma of fertile men m...
Background. Semen analysis is the cornerstone in the evaluation of male (in)fertility. However, ther...
Background. Semen analysis is the cornerstone in the evaluation of male (in) fertility. However,...
Copyright © 2015 Biljana Macanovic et al. This is an open access article distributed under the Creat...
Background. Semen analysis is the cornerstone in the evaluation of male (in) fertility. However,...
The evaluation of superoxide dismutase (SOD) activity, as one of the most important antioxidative de...
Background: There is growing evidence that damage to spermatozoa by reactive oxygen species (ROS) p...
Background: There is growing evidence that damage to spermatozoa by reactive oxygen species (ROS) p...
This study was aimed to assess the antioxidant enzymatic and non-enzymatic compounds in semen of inf...
Objective: Oxidative stress has been implicated in the pathogenesis of male infertility. In this stu...
This study was aimed to assess the antioxidant enzymatic and non-enzymatic compounds in semen of inf...
Objective: Oxidative stress has been implicated in the pathogenesis of male infertility. In this stu...
This study was aimed to assess the antioxidant enzymatic and non-enzymatic compounds in semen of inf...
38-43Excess reactive oxygen species (ROS) beyond the scavenging capacity of antioxidants leads to DN...
Protein expression/activity of antioxidative defense enzymes (AD) in seminal plasma of fertile men m...
Protein expression/activity of antioxidative defense enzymes (AD) in seminal plasma of fertile men m...
Background. Semen analysis is the cornerstone in the evaluation of male (in)fertility. However, ther...
Background. Semen analysis is the cornerstone in the evaluation of male (in) fertility. However,...
Copyright © 2015 Biljana Macanovic et al. This is an open access article distributed under the Creat...
Background. Semen analysis is the cornerstone in the evaluation of male (in) fertility. However,...
The evaluation of superoxide dismutase (SOD) activity, as one of the most important antioxidative de...
Background: There is growing evidence that damage to spermatozoa by reactive oxygen species (ROS) p...
Background: There is growing evidence that damage to spermatozoa by reactive oxygen species (ROS) p...
This study was aimed to assess the antioxidant enzymatic and non-enzymatic compounds in semen of inf...
Objective: Oxidative stress has been implicated in the pathogenesis of male infertility. In this stu...
This study was aimed to assess the antioxidant enzymatic and non-enzymatic compounds in semen of inf...
Objective: Oxidative stress has been implicated in the pathogenesis of male infertility. In this stu...
This study was aimed to assess the antioxidant enzymatic and non-enzymatic compounds in semen of inf...
38-43Excess reactive oxygen species (ROS) beyond the scavenging capacity of antioxidants leads to DN...