Aim: To investigate a simple method for assaying acrosin activity for the evaluation of male fertility. Methods:The acrosin activity of 7.5 × 10~6 sperm without seminal plasma and acrosin activity inhibitors was ...Aim: To investigate a simple method for assaying acrosin activity for the evaluation of male fertility. Methods:The acrosin activity of 7.5 × 10~6 sperm without seminal plasma and acrosin activity inhibitors was assayed using N-α-benzoyl-DL-arginine-p-nitroanilide (BAPNA) and detergent (Triton X-100) as substrate. Results: The acrosin ac-tivity of 60 normal fertile men (35 ± 10 μIU/10~6 sperm ) was higher than that of 168 infertile men ( 16 ± 8 μIU/10~6sperm) (P <0.01). It was indicated that there was a significant positive correlation between the acrosin activity andthe sperm motility ( r ≥ 0.6534, P < 0.01) and a significant negative correlation between the sperm malformed rateand the WBC number ( r ≤ -0.5426, P < 0.01). The temperature and time of incubation and the sperm concentrationcould influence the assay results. Conclusion: Acrosin activity is an important index for the evaluation of male fer-tility. The approach developed by the authors is a simple method for the determination of acrosin activity.展开更多
Aim: To study the association between seminal oxidative stress and human sperm acrosin activity. Methods: It is a prospective study consisting of 30 infertile men and 12 fertile normozoospermic volunteers. A full hist...Aim: To study the association between seminal oxidative stress and human sperm acrosin activity. Methods: It is a prospective study consisting of 30 infertile men and 12 fertile normozoospermic volunteers. A full history, clinical examination and scrotal ultrasound were done to exclude other related factors such as smoking and varicocele. Presence of white blood cells (WBCs) in semen samples was evaluated by peroxidase staining. Lipid peroxidation in spermatozoa was induced after incubating with ferrous sulphate (4 mmol/L) and sodium ascorbate (20 mmol/L). Induced peroxidation of spermatozoa was assessed by determining the production of thiobarbituric acid reactive substances (TBARS). Acrosin activity was measured using the gelatinolysis technique. The halo diameters around the sperm heads and the percentages of spermatozoa showing halo formation were evaluated. An acrosin activity index was calculated by multiplying the halo diameter by the halo formation rate. Results: A significant difference was observed in acrosin activity parameters and TBARS levels between samples with WBCs (>1×106/mL of ejaculate) and those without. This difference was also noted between the normozoospermic and the oligoasthenoteratozoospermic semen samples. The TBARS production by spermatozoa had a significant negative correlation with the acrosin activity index (r = -0.89, P <0.001). Conclusion: The presence of oxidative stress in an individual with leukocytospermia and/or abnormal semen parameters is associated with impaired sperm function as measured by its acrosin activity.展开更多
文摘Aim: To investigate a simple method for assaying acrosin activity for the evaluation of male fertility. Methods:The acrosin activity of 7.5 × 10~6 sperm without seminal plasma and acrosin activity inhibitors was assayed using N-α-benzoyl-DL-arginine-p-nitroanilide (BAPNA) and detergent (Triton X-100) as substrate. Results: The acrosin ac-tivity of 60 normal fertile men (35 ± 10 μIU/10~6 sperm ) was higher than that of 168 infertile men ( 16 ± 8 μIU/10~6sperm) (P <0.01). It was indicated that there was a significant positive correlation between the acrosin activity andthe sperm motility ( r ≥ 0.6534, P < 0.01) and a significant negative correlation between the sperm malformed rateand the WBC number ( r ≤ -0.5426, P < 0.01). The temperature and time of incubation and the sperm concentrationcould influence the assay results. Conclusion: Acrosin activity is an important index for the evaluation of male fer-tility. The approach developed by the authors is a simple method for the determination of acrosin activity.
文摘Aim: To study the association between seminal oxidative stress and human sperm acrosin activity. Methods: It is a prospective study consisting of 30 infertile men and 12 fertile normozoospermic volunteers. A full history, clinical examination and scrotal ultrasound were done to exclude other related factors such as smoking and varicocele. Presence of white blood cells (WBCs) in semen samples was evaluated by peroxidase staining. Lipid peroxidation in spermatozoa was induced after incubating with ferrous sulphate (4 mmol/L) and sodium ascorbate (20 mmol/L). Induced peroxidation of spermatozoa was assessed by determining the production of thiobarbituric acid reactive substances (TBARS). Acrosin activity was measured using the gelatinolysis technique. The halo diameters around the sperm heads and the percentages of spermatozoa showing halo formation were evaluated. An acrosin activity index was calculated by multiplying the halo diameter by the halo formation rate. Results: A significant difference was observed in acrosin activity parameters and TBARS levels between samples with WBCs (>1×106/mL of ejaculate) and those without. This difference was also noted between the normozoospermic and the oligoasthenoteratozoospermic semen samples. The TBARS production by spermatozoa had a significant negative correlation with the acrosin activity index (r = -0.89, P <0.001). Conclusion: The presence of oxidative stress in an individual with leukocytospermia and/or abnormal semen parameters is associated with impaired sperm function as measured by its acrosin activity.