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1.
Neuropsychopharmacology ; 46(3): 579-602, 2021 02.
Article in English | MEDLINE | ID: mdl-32781459

ABSTRACT

Maternal immune activation (MIA) and poor maternal nutritional habits are risk factors for the occurrence of neurodevelopmental disorders (NDD). Human studies show the deleterious impact of prenatal inflammation and low n-3 polyunsaturated fatty acid (PUFA) intake on neurodevelopment with long-lasting consequences on behavior. However, the mechanisms linking maternal nutritional status to MIA are still unclear, despite their relevance to the etiology of NDD. We demonstrate here that low maternal n-3 PUFA intake worsens MIA-induced early gut dysfunction, including modification of gut microbiota composition and higher local inflammatory reactivity. These deficits correlate with alterations of microglia-neuron crosstalk pathways and have long-lasting effects, both at transcriptional and behavioral levels. This work highlights the perinatal period as a critical time window, especially regarding the role of the gut-brain axis in neurodevelopment, elucidating the link between MIA, poor nutritional habits, and NDD.


Subject(s)
Fatty Acids, Omega-3 , Prenatal Exposure Delayed Effects , Animals , Behavior, Animal , Brain , Female , Humans , Inflammation , Microglia , Pregnancy
2.
Nat Commun ; 11(1): 6133, 2020 11 30.
Article in English | MEDLINE | ID: mdl-33257673

ABSTRACT

Omega-3 fatty acids (n-3 PUFAs) are essential for the functional maturation of the brain. Westernization of dietary habits in both developed and developing countries is accompanied by a progressive reduction in dietary intake of n-3 PUFAs. Low maternal intake of n-3 PUFAs has been linked to neurodevelopmental diseases in Humans. However, the n-3 PUFAs deficiency-mediated mechanisms affecting the development of the central nervous system are poorly understood. Active microglial engulfment of synapses regulates brain development. Impaired synaptic pruning is associated with several neurodevelopmental disorders. Here, we identify a molecular mechanism for detrimental effects of low maternal n-3 PUFA intake on hippocampal development in mice. Our results show that maternal dietary n-3 PUFA deficiency increases microglia-mediated phagocytosis of synaptic elements in the rodent developing hippocampus, partly through the activation of 12/15-lipoxygenase (LOX)/12-HETE signaling, altering neuronal morphology and affecting cognitive performance of the offspring. These findings provide a mechanistic insight into neurodevelopmental defects caused by maternal n-3 PUFAs dietary deficiency.


Subject(s)
Brain/drug effects , Fatty Acids, Omega-3/pharmacology , Microglia/drug effects , Neuronal Plasticity/drug effects , Neurons/drug effects , Neurons/physiology , Phagocytosis/drug effects , Animals , Brain/growth & development , Dietary Supplements , Fatty Acids, Omega-3/deficiency , Fatty Acids, Omega-3/genetics , Female , Gene Expression Regulation, Developmental/drug effects , Hippocampus/cytology , Hippocampus/growth & development , Homeostasis , Humans , Lipoxygenase , Male , Mice , Neurodevelopmental Disorders
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