International audienceThis article addresses the importance of oxidative processes in both the generation of functional gametes and the aetiology of defective sperm function. Functionally, sperm capacitation is recognized as a redox-regulated process, wherein a low level of reactive oxygen species (ROS) generation is intimately involved in driving such events as the stimulation of tyrosine phosphorylation, the facilitation of cholesterol efflux and the promotion of cAMP generation. However, the continuous generation of ROS ultimately creates problems for spermatozoa because their unique physical architecture and unusual biochemical composition means that they are vulnerable to oxidative stress. As a consequence, they are heavily dependent o...
Reactive oxygen species (ROS) generated at low levels during mitochondrial respiration have key role...
Objective: To summarize the role of reactive oxygen species (ROS) in the pathophysiology of human re...
Full list of author information is available at the end of the articleBackground Oxidative stress ma...
International audienceThis article addresses the importance of oxidative processes in both the gener...
The ability of spermatozoa to generate reactive oxygen species (ROS) has been appreciated since the ...
International audienceSignificance: Among the 200 or so cell types that comprise mammals, spermatozo...
International audienceReactive oxygen species (ROS) play a critical role in defining the functional ...
Infertility is a relatively common condition affecting approximately one in ten of the population. I...
Infertility, especially in the last decade, has been rising as a global problem, affecting ap...
Reactive oxygen species (ROS) are inevitable by-products of aerobic cells. A delicate balance betwee...
Oxidative stress is one of the leading causes of sperm dysfunction. Excessive amounts of reactive ox...
Oxidative stress occurs when the production of potentially destructive reactive oxygen species (ROS)...
Reactive oxygen species (ROS) have beneficial or detrimental effects on sperm functions depending on...
On the one hand, reactive oxygen species (ROS) are mandatory mediators for essential cellular functi...
Abstract: Male infertility continues to be a clinical challenge of increasing significance.Whilemale...
Reactive oxygen species (ROS) generated at low levels during mitochondrial respiration have key role...
Objective: To summarize the role of reactive oxygen species (ROS) in the pathophysiology of human re...
Full list of author information is available at the end of the articleBackground Oxidative stress ma...
International audienceThis article addresses the importance of oxidative processes in both the gener...
The ability of spermatozoa to generate reactive oxygen species (ROS) has been appreciated since the ...
International audienceSignificance: Among the 200 or so cell types that comprise mammals, spermatozo...
International audienceReactive oxygen species (ROS) play a critical role in defining the functional ...
Infertility is a relatively common condition affecting approximately one in ten of the population. I...
Infertility, especially in the last decade, has been rising as a global problem, affecting ap...
Reactive oxygen species (ROS) are inevitable by-products of aerobic cells. A delicate balance betwee...
Oxidative stress is one of the leading causes of sperm dysfunction. Excessive amounts of reactive ox...
Oxidative stress occurs when the production of potentially destructive reactive oxygen species (ROS)...
Reactive oxygen species (ROS) have beneficial or detrimental effects on sperm functions depending on...
On the one hand, reactive oxygen species (ROS) are mandatory mediators for essential cellular functi...
Abstract: Male infertility continues to be a clinical challenge of increasing significance.Whilemale...
Reactive oxygen species (ROS) generated at low levels during mitochondrial respiration have key role...
Objective: To summarize the role of reactive oxygen species (ROS) in the pathophysiology of human re...
Full list of author information is available at the end of the articleBackground Oxidative stress ma...