Age-Related Changes in Sperm Morphology and Analysis of Multiple Sperm Defects

Maxim Kleshchev1, Ludmila Osadchuk1, Alexander Osadchuk1

  • 1Department of Human Molecular Genetic, Federal Research Center 'Institute of Cytology and Genetics', The Siberian Branch of the Russian Academy of Sciences, 630090 Novosibirsk, Russia.

Abstract

Insights

Sperm morphology changes with age, showing increased coiled tails and specific head defect combinations in men over 40. These linked defects suggest a general disruption in sperm development mechanisms.

Area of Science:

  • Reproductive biology
  • Andrology
  • Spermatozoa morphology

Background:

  • Sperm morphology analysis aids in assessing sperm production and maturation.
  • Advanced paternal age (>40 years) is linked to reduced sperm count and motility.
  • Limited data exists on age-related sperm morphological defects and their combinations.

Purpose of the Study:

  • To investigate age-related changes in sperm morphology.
  • To determine the prevalence of specific sperm morphological defect combinations in relation to age.
  • To explore the link between sperm defects and paternal age in the general population.

Main Methods:

  • Assessed sperm morphology in 1266 male volunteers across various age groups (18-over 40 years).
  • Evaluated 200 sperm per sample, classifying defects per WHO (2010) manual.
  • Analyzed defect percentages, combinations, and compared normospermic vs. pathozoospermic groups.

Main Results:

  • Increased frequency of coiled/short sperm tails observed in men over 40.
  • Aging did not significantly alter the overall percentage of morphologically normal sperm.
  • Specific combinations of head defects with acrosome, midpiece, or tail anomalies were non-random.
  • Coiled tails combined with specific head defects were more frequent in men over 40.
  • Severely deformed heads were more prevalent in men with pathozoospermia.

Conclusions:

  • Age-related impairments in sperm morphology were identified.
  • Stable combinations of defects suggest a general disruption of the sperm morphogenetic mechanism.
  • Further research into these combined defects can enhance understanding of spermiogenesis.

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