Prenatal Hyperhomocysteinemia Leads to Synaptic Dysfunction and Structural Alterations in the CA1 Hippocampus of Rats

Tatyana Y Postnikova1, Alexandra V Griflyuk1, Natalia L Tumanova1

  • 1Sechenov Institute of Evolutionary Physiology and Biochemistry, Russian Academy of Sciences, 194223 St. Petersburg, Russia.

Biomolecules
|February 26, 2025
PubMed

Insights

Prenatal exposure to high homocysteine (HCY) impairs hippocampal synaptic function and causes structural changes in adult rats. These deficits persist, suggesting a link to neurodevelopmental disorders.

Area of Science:

  • Neuroscience
  • Developmental Biology
  • Metabolic Disorders

Background:

  • Prenatal hyperhomocysteinemia (HCY) is linked to neurodevelopmental deficits.
  • Long-term effects on hippocampal synaptic function are not well understood.

Purpose of the Study:

  • To investigate the impact of moderate maternal HCY on hippocampal excitatory synaptic transmission in rat offspring.
  • To assess age-dependent changes at juvenile and adult stages.

Main Methods:

  • Field postsynaptic potential (fPSP) recordings in the CA1 region.
  • Electron microscopy for structural analysis.
  • Western blot for protein expression (Synapsin I).

Main Results:

  • Age-dependent decline in excitatory synaptic transmission efficiency in HCY-exposed rats.
  • Synaptic vesicle agglutination and reduced pyramidal neuron density observed.
  • Altered Synapsin I expression indicated presynaptic dysfunction.

Conclusions:

  • Moderate prenatal HCY causes persistent hippocampal synaptic and structural deficits.
  • Findings suggest a potential contribution to adult cognitive impairments.
  • Highlights the role of maternal homocysteine in neurodevelopment.