Maternal protein-free diet during lactation programs male Wistar rat offspring for increased novelty-seeking,

Bruna M Lotufo1, Frank Tenório2, Penha C Barradas2

  • 1Laboratório de Neurofisiologia, Departamento de Ciências Fisiológicas, Instituto de Biologia Roberto Alcantara Gomes, Centro Biomédico, Universidade do Estado do Rio de Janeiro.

Insights

Protein malnutrition during the brain growth spurt in Wistar rats altered offspring behavior. Adolescent activity and adult memory improved, showing sensitivity to early nutritional insults.

Area of Science:

  • Neuroscience
  • Developmental Biology
  • Nutritional Science

Background:

  • Chronic undernutrition negatively impacts brain development.
  • The effects of protein malnutrition specifically during the brain growth spurt on offspring behavior are understudied.

Purpose of the Study:

  • To investigate the effects of a protein-free diet during the early postnatal period on maternal milk, maternal behavior, and offspring behavior in Wistar rats.
  • To determine the long-term behavioral consequences of protein malnutrition during the brain growth spurt.

Main Methods:

  • Lactating Wistar rats were fed either a protein-free or normoprotein diet from birth to postnatal day 10 (P10).
  • Milk macronutrient content, maternal behavior, and serum corticosterone levels were assessed.
  • Offspring behavior was evaluated at P40 (adolescents) and P90 (adults) using the elevated plus-maze, hole board arena, and radial arm water maze.

Main Results:

  • A protein-free diet reduced milk protein content at P10 but did not affect carbohydrate or lipid content.
  • Maternal behavior and serum corticosterone levels in dams and offspring remained unaffected.
  • Offspring exhibited increased adolescent locomotor activity and enhanced adult novelty-seeking behavior and memory performance.
  • No differences in anxiety-like behaviors were observed between groups.

Conclusions:

  • The brain growth spurt is a sensitive period for protein malnutrition.
  • Even brief protein deficiency during this critical window can lead to specific, age-dependent behavioral alterations in offspring.
  • Early life nutrition significantly influences long-term behavioral outcomes.

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