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Updated: Jul 19, 2025

Flow Cytometric Analysis of Biomarkers for Detecting Human Sperm Functional Defects
Published on: April 21, 2022
Paternal Age Matters: Association with Sperm Criteria's- Spermatozoa DNA Integrity and Methylation Profile
Marwa Lahimer1,2,3, Debbie Montjean4, Rosalie Cabry1,2
1Reproductive Medicine, Reproductive Biology & Genetics, University Hospital and School of Medicine, Picardie University Jules Verne, CHU Sud, 80054 Amiens, France.
Abstract:
Advanced age has been reported to negatively affect sperm parameters and spermatozoa DNA integrity. A decline in sperm criteria was also associated with altered epigenetic marks such as DNA methylation with a potential downstream impact on in vitro fertilization success and clinical outcomes. The aim of the present retrospective study was to clarify the association between advanced paternal age (APA) and sperm parameters, DNA integrity and DNA methylation profile. A total of 671 patients consulting for infertility underwent sperm analysis, sperm DNA integrity assessment and methylation level measurement. The principal finding was that individuals over 40 years of age exhibit a significant increase in DNA fragmentation levels compared to the younger group (15% versus 9%, respectively, p = 0.04). However, there was no significant difference in DNA decondensation and sperm parameters in association with APA. In addition, a drop in the global methylation level was also found in men over 40 years (6% in the young group versus 2% in the old group, p = 0.03). As a conclusion, men over 40 years are at higher risk of elevated sperm DNA fragmentation and lower methylation level. Based on these observations, it is recommended that the assessment of sperm DNA fragmentation should be taken into consideration particularly after the age of 40. Our findings support the idea that paternal age is a crucial factor that should not be neglected during fertility evaluation and treatment since it is associated with epigenetics changes in sperm. Although the underlying mechanism remains to be clarified, we believe that environmental and professional exposure factors are likely involved in the process.
Insights
Advanced paternal age (APA) over 40 increases sperm DNA fragmentation and lowers DNA methylation. Fertility evaluations should consider DNA fragmentation testing in older men.
Area of Science:
- Reproductive Biology
- Epigenetics
- Andrology
Background:
- Advanced paternal age (APA) is linked to reduced sperm quality and DNA integrity.
- Epigenetic alterations, including DNA methylation changes, may impact fertility outcomes.
- The relationship between APA, sperm DNA integrity, and methylation requires further clarification.
Purpose of the Study:
- To investigate the association between advanced paternal age (APA) and sperm parameters.
- To assess the impact of APA on sperm DNA integrity and global DNA methylation profiles.
- To determine if APA influences in vitro fertilization (IVF) success and clinical outcomes.
Main Methods:
- Retrospective analysis of 671 infertile patients.
- Sperm analysis including motility, morphology, and count.
- Assessment of sperm DNA integrity (fragmentation and decondensation) and DNA methylation levels.
Main Results:
- Men over 40 showed significantly higher sperm DNA fragmentation (15% vs. 9%, p=0.04).
- A significant decrease in global DNA methylation levels was observed in men over 40 (2% vs. 6%, p=0.03).
- No significant differences in sperm parameters or DNA decondensation were associated with APA.
Conclusions:
- Advanced paternal age (over 40) is associated with increased sperm DNA fragmentation and reduced DNA methylation.
- Sperm DNA fragmentation assessment is recommended for men over 40 undergoing fertility evaluation.
- Paternal age-related epigenetic changes in sperm warrant further investigation regarding their impact on fertility.
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