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Global DNA methylation level in spermatozoa is not associated with ICSI fertilization outcome and embryo quality in donor oocyte programme. | LitMetric

Global DNA methylation level in spermatozoa is not associated with ICSI fertilization outcome and embryo quality in donor oocyte programme.

Hum Fertil (Camb)

Centre of Excellence in Clinical Embryology, Department of Reproductive Science, Kasturba Medical College, Manipal, Manipal Academy of Higher Education, Manipal, Karnataka, India.

Published: December 2024

AI Article Synopsis

  • Epigenetic mechanisms, like DNA methylation and histone modifications, play a crucial role in sperm quality, affecting motility and DNA integrity necessary for reproduction.
  • A study examined sperm DNA methylation levels from 75 normal and 15 abnormal ejaculates, revealing no significant link between methylation levels and sperm characteristics, though lower methylation was found in abnormal samples.
  • Results indicated that injecting sperm from patients into donor eggs showed no significant connection between sperm DNA methylation and the developmental potential of embryos, suggesting methylation is not a reliable biomarker for embryo quality.

Article Abstract

Epigenetic mechanisms, including DNA methylation and histone modifications, govern chromatin arrangement in sperm, enhancing motility and safeguarding DNA integrity for accurate epigenetic inheritance. Abnormal methylation is linked to poor sperm quality and fertility issues, underscoring the need to study sperm DNA methylation and its impact on sperm function and embryo development in assisted reproductive technology. In this study, processed spermatozoa from 75 normozoospermic and 15 abnormal ejaculates were examined for sperm global DNA methylation levels using a colourimetric absorbance method. Although semen characteristics were poor in abnormal ejaculates, no significant correlation was found between sperm global DNA methylation levels and sperm characteristics in either normozoospermic or abnormal cohorts. However, mean global DNA methylation levels were significantly lowered in abnormal sperm samples compared to normozoospermic samples ( < 0.05). Furthermore, injecting spermatozoa from these patients (N = 50) into donor oocytes did not show a significant relationship between sperm global DNA methylation and embryo developmental competence. These findings highlight the limitation of sperm global DNA methylation as a biomarker for embryo development and quality.

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Source
http://dx.doi.org/10.1080/14647273.2024.2421191DOI Listing

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