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Maternal high-fat diet during lactation reprograms the dopaminergic circuitry in mice

Abstract:
The maternal perinatal environment modulates brain formation, and altered maternal nutrition has been linked to the development of metabolic and psychiatric disorders in the offspring. Here, we showed that maternal high-fat diet (HFD) feeding during lactation in mice elicits long-lasting changes in gene expression in the offspring’s dopaminergic circuitry. This translated into silencing of dopaminergic midbrain neurons, reduced connectivity to their downstream targets, and reduced stimulus-evoked dopamine (DA) release in the striatum. Despite the attenuated activity of DA midbrain neurons, offspring from mothers exposed to HFD feeding exhibited a sexually dimorphic expression of DA-related phenotypes, i.e., hyperlocomotion in males and increased intake of palatable food and sucrose in females. These phenotypes arose from concomitantly increased spontaneous activity of D1 medium spiny neurons (MSNs) and profoundly decreased D2 MSN projections. Overall, we have unraveled a fundamental restructuring of dopaminergic circuitries upon time-restricted altered maternal nutrition to induce persistent behavioral changes in the offspring.
Publication status:
Published
Peer review status:
Peer reviewed

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Publisher copy:
10.1172/JCI134412

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Publisher:
American Society for Clinical Investigation
Journal:
Journal of Clinical Investigation More from this journal
Volume:
130
Issue:
7
Pages:
3761–3776
Publication date:
2020-06-08
Acceptance date:
2020-03-26
DOI:
EISSN:
1558-8238
ISSN:
0021-9738


Language:
English
Keywords:
Pubs id:
1100875
Local pid:
pubs:1100875
Deposit date:
2020-04-21
ARK identifier:

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