Maternal Obesity Modulates Expression of Satb2 in Hypothalamic VMN of Female Offspring
Kelly A Glendining1, Lorryn C Fisher1, Christine L Jasoni1
1Centre for Neuroendocrinology, Department of Anatomy, University of Otago, Dunedin 9054, New Zealand.
Insights
Maternal obesity during pregnancy alters offspring brain development. A high-fat diet in mothers increased glutamatergic neurons in the female offsprings ventromedial nucleus, suggesting sex-specific effects on future health.
Area of Science:
- Neuroscience
- Developmental Biology
- Endocrinology
Background:
- Maternal obesity is linked to offspring health issues like obesity and anxiety, with differing incidence between sexes.
- The ventromedial nucleus of the hypothalamus (VMN) regulates metabolism and anxiety and exhibits sexual dimorphism.
- Glutamatergic neurons in the VMN are crucial for its functions.
Purpose of the Study:
- To investigate if maternal obesity alters the number of glutamatergic neurons in the offspring VMN.
- To examine sex-specific effects of maternal high-fat diet on VMN development.
Main Methods:
- Utilized a mouse model with a maternal high-fat diet (mHFD).
- Assessed mRNA expression of the glutamatergic marker Satb2 in the mediobasal hypothalamus at GD17.5.
- Employed immunohistochemistry to quantify SATB2-positive cells in the VMN.
Main Results:
- Maternal high-fat diet upregulated Satb2 mRNA in the mediobasal hypothalamus of female offspring, but not males.
- An increased number of SATB2-positive cells was observed in the VMN of female offspring exposed to mHFD.
- This increase was localized to the rostral VMN.
Conclusions:
- Maternal nutrition during gestation impacts VMN development in offspring.
- Maternal obesity may enhance glutamatergic drive in the female offspring VMN in a sex-specific manner.
- These alterations could contribute to sexual dimorphism in offspring health outcomes.
Abstract:
Maternal obesity during pregnancy is associated with a greater risk of poor health outcomes in offspring, including obesity, metabolic disorders, and anxiety, however the incidence of these diseases differs for males and females. Similarly, animal models of maternal obesity have reported sex differences in offspring, for both metabolic outcomes and anxiety-like behaviors. The ventromedial nucleus of the hypothalamus (VMN) is a brain region known to be involved in the regulation of both metabolism and anxiety, and is well documented to be sexually dimorphic. As the VMN is largely composed of glutamatergic neurons, which are important for its functions in modulating metabolism and anxiety, we hypothesized that maternal obesity may alter the number of glutamatergic neurons in the offspring VMN. We used a mouse model of a maternal high-fat diet (mHFD), to examine mRNA expression of the glutamatergic neuronal marker Satb2 in the mediobasal hypothalamus of control and mHFD offspring at GD17.5. We found sex differences in Satb2 expression, with mHFD-induced upregulation of Satb2 mRNA in the mediobasal hypothalamus of female offspring, compared to controls, but not males. Using immunohistochemistry, we found an increase in the number of SATB2-positive cells in female mHFD offspring VMN, compared to controls, which was localized to the rostral region of the nucleus. These data provide evidence that maternal nutrition during gestation alters the developing VMN, possibly increasing its glutamatergic drive of offspring in a sex-specific manner, which may contribute to sexual dimorphism in offspring health outcomes later in life.
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