Low availability of choline in utero disrupts development and function of the retina

Isis Trujillo-Gonzalez1, Walter B Friday1, Carolyn A Munson1

  • 1Nutrition Research Institute, University of North Carolina-Chapel Hill, Kannapolis, North Carolina, USA.

Insights

Maternal choline deficiency during pregnancy disrupts retinal development in mice, leading to structural defects and impaired vision in offspring. Adequate choline is crucial for normal visual system development.

Area of Science:

  • Neuroscience
  • Developmental Biology
  • Nutritional Science

Background:

  • Choline is an essential nutrient vital for brain development.
  • The role of prenatal choline in visual system development, specifically the retina, is not well understood.

Purpose of the Study:

  • To investigate the impact of in utero choline availability on retinal development and visual function in a mouse model.
  • To assess the effects of maternal dietary choline restriction during pregnancy on retinal progenitor cells and offspring visual acuity.

Main Methods:

  • Mice were fed a choline-deficient diet during pregnancy.
  • Retinal progenitor cell proliferation and differentiation were analyzed in embryonic retinas.
  • Visual function was assessed in adult offspring.

Main Results:

  • Low prenatal choline led to retinal cytoarchitectural defects, including misplaced neurons and photoreceptor disorganization.
  • Impaired differentiation of retinal neurons and reduced densities of key retinal cells were observed.
  • Aberrant neurogenesis was linked to increased retinal progenitor cell cycle length and reduced neurofibromin 2/Merlin protein levels.
  • Offspring exhibited significant intraindividual variation in vision with functional discrepancies between eyes.

Conclusions:

  • Adequate choline supply during retinogenesis is essential for proper retinal development and visual system function.
  • Prenatal choline availability critically regulates the temporal progression of retinal development.
  • Maternal choline deficiency during gestation can cause lasting structural and functional deficits in the visual system.

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