Seminal oxidative stress (OS) is one of the most promising factors to describe the causes of idiopathic male infertility. Redox balance is essential in several biological processes related to fertility, so alterations such as high reactive oxygen species (ROS) levels or low antioxidant agent levels can compromise it. MiOXSYS has been developed to evaluate the seminal static oxidation-reduction potential (sORP) and it has been proposed as an effective diagnostic biomarker. However, its relationship with parameters like sperm DNA fragmentation (SDF), chromatin compaction status or seminal pH requires further analysis, making it the object of this study. Semen and sORP analysis were performed for all samples. A terminal deoxynucleotidyl transf...
Oxidative stress (OS) is detrimental to sperm functions, and the oxidation reduction potential (ORP)...
38-43Excess reactive oxygen species (ROS) beyond the scavenging capacity of antioxidants leads to DN...
Male infertility, a relatively common and multifactorial medical condition, affects approximately 15...
Oxidative stress (OS) is a significant cause of DNA fragmentation and is associated with poor embryo...
International audienceMale Infertility Oxidative System (MiOXSYS) has been proposed as a rapid and p...
Seminal oxidative stress and sperm DNA damage are potential etiologies of male factor infertility. T...
The diagnosis of male infertility relies largely on conventional semen analysis, and its interpretat...
Male infertility affects men worldwide. Oxidative stress (OS), characterized by an overabundance of ...
Our research was designed to verify the relationship between male infertility, basic semen character...
Background: Male factor infertility has increased to more than 40 during the last decade. About 30 o...
Background Oxidative stress is the result of an imbalance between the production and scave...
Objectives: infertility is a clinical disorder affecting approximately 15% of reproductive-aged coup...
Objective: To assess seminal oxidation–reduction potential (ORP) and sperm DNA fragmentation (SDF) i...
International audienceOne important reason for male infertility is oxidative stress and its destruct...
Background: DNA damage in human spermatozoa is known to be associated with a variety of adverse clin...
Oxidative stress (OS) is detrimental to sperm functions, and the oxidation reduction potential (ORP)...
38-43Excess reactive oxygen species (ROS) beyond the scavenging capacity of antioxidants leads to DN...
Male infertility, a relatively common and multifactorial medical condition, affects approximately 15...
Oxidative stress (OS) is a significant cause of DNA fragmentation and is associated with poor embryo...
International audienceMale Infertility Oxidative System (MiOXSYS) has been proposed as a rapid and p...
Seminal oxidative stress and sperm DNA damage are potential etiologies of male factor infertility. T...
The diagnosis of male infertility relies largely on conventional semen analysis, and its interpretat...
Male infertility affects men worldwide. Oxidative stress (OS), characterized by an overabundance of ...
Our research was designed to verify the relationship between male infertility, basic semen character...
Background: Male factor infertility has increased to more than 40 during the last decade. About 30 o...
Background Oxidative stress is the result of an imbalance between the production and scave...
Objectives: infertility is a clinical disorder affecting approximately 15% of reproductive-aged coup...
Objective: To assess seminal oxidation–reduction potential (ORP) and sperm DNA fragmentation (SDF) i...
International audienceOne important reason for male infertility is oxidative stress and its destruct...
Background: DNA damage in human spermatozoa is known to be associated with a variety of adverse clin...
Oxidative stress (OS) is detrimental to sperm functions, and the oxidation reduction potential (ORP)...
38-43Excess reactive oxygen species (ROS) beyond the scavenging capacity of antioxidants leads to DN...
Male infertility, a relatively common and multifactorial medical condition, affects approximately 15...