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Author Spotlight: Enhancing the Offspring Health in Rats with Maternal Exercise During Pregnancy
Published on: April 5, 2024
Maternal high-fat diet increases independent feeding in pre-weanling rat pups
Sayuri Kojima1, Christina Catavero1, Linda Rinaman1
1Department of Neuroscience, University of Pittsburgh, Pittsburgh, PA, USA.
Insights
Maternal high-fat diet (HFD) exposure in rodents advances offspring
Area of Science:
- Developmental biology
- Nutritional science
- Animal models
Background:
- Maternal high-fat diet (HFD) exposure in rodents is linked to offspring obesity and metabolic dysfunction.
- Obese phenotypic markers emerge early in postnatal life in offspring of HFD-fed dams.
Purpose of the Study:
- To investigate the impact of maternal HFD on ingestive behaviors, specifically suckling and independent feeding, in rat pups.
- To determine if maternal diet influences the transition to solid food consumption in early life.
Main Methods:
- Detailed analysis of ingestive behaviors in rat pups within the home-cage environment.
- Comparison of pups raised by dams on HFD versus regular chow.
Main Results:
- Offspring of HFD dams exhibited an earlier onset of independent feeding and increased solid food intake during the third postnatal week.
- No significant differences in suckling behavior were observed between the diet groups.
- Offspring of HFD dams showed more frequent post-nursing independent feeding episodes, especially after nutritive suckling.
Conclusions:
- Early-life exposure to maternal HFD enhances the link between nutritive suckling and subsequent independent feeding in pups.
- This enhanced feeding behavior promotes increased caloric intake from solid food in the home-cage environment.
- Maternal diet plays a crucial role in shaping early-life feeding patterns and caloric intake in offspring.
Abstract:
In laboratory settings, the adult offspring of rodent dams that are maintained on high-fat diet (HFD) before conception and/or during pregnancy/lactation display an increased incidence of obese phenotypic markers, including increased body weight and adiposity, reduced leptin sensitivity, and impaired glucose tolerance. In rat pups raised by dams consuming HFD, these obese markers emerge during the first postnatal week. Since the week-old offspring of HFD dams consume excess amounts of milk during experimental tests of independent feeding (i.e., intake away from the dam), we hypothesized that maternal diet affects suckling and/or independent ingestion by pups in the home-cage environment. In the present study, this hypothesis was tested by conducting detailed analyses of ingestive behaviors expressed by pups in the home cage. Pups raised by dams consuming HFD displayed an earlier onset of independent feeding and more amounts of calorie intake from solid food during the third postnatal week compared to pups raised by dams consuming regular chow, with no diet-related differences in suckling behavior. Independent ingestion by pups in both diet groups was most frequently observed after nursing, with offspring of HFD dams engaged more frequently in post-nursing independent feeding episodes compared to offspring of chow-fed dams, particularly when the prior nursing episode was nutritive (i.e., including milk receipt by pups). We conclude that early-life exposure to HFD enhances the facilitative effect of nutritive suckling on independent feeding in pups, promoting increased caloric intake from solid food in the home-cage environment.

