Prebiotic diet normalizes aberrant immune and behavioral phenotypes in a mouse model of autism spectrum disorder

Publication date

2024

Authors

Prince, Naika ZoéISNI 0000000492915477
Peralta Marzal, Lucia NataliaISNI 0000000507288120
Markidi, AnastasiaISNI 0000000524167507
Ahmed, SabbirISNI 0000000492833463
Adolfs, Youri
Pasterkamp, R. Jeroen
Kumar, Himanshu
Roeselers, Guus
Garssen, JohanORCID 0000-0002-8678-9182ISNI 0000000034097251
Kraneveld, Aletta D.ISNI 000000038803088X

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Advisors

Supervisors

Document Type

Article
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cc_by

Abstract

Autism spectrum disorder (ASD) is a cluster of neurodevelopmental disorders characterized by deficits in communication and behavior. Increasing evidence suggests that the microbiota-gut-brain axis and the likely related immune imbalance may play a role in the development of this disorder. Gastrointestinal deficits and gut microbiota dysfunction have been linked to the development or severity of autistic behavior. Therefore, treatments that focus on specific diets may improve gastrointestinal function and aberrant behavior in individuals with ASD. In this study, we investigated whether a diet containing specific prebiotic fibers, namely, 3% galacto-oligosaccharide/fructo-oligosaccharide (GOS/FOS; 9:1), can mitigate the adverse effects of in utero exposure to valproic acid (VPA) in mice. Pregnant BALB/cByJ dams were injected with VPA (600 mg/kg, sc.) or phosphate-buffered saline (PBS) on gestational day 11 (G11). Male offspring were divided into four groups: (1) in utero PBS-exposed with a control diet, (2) in utero PBS-exposed with GOS/FOS diet, (3) in utero VPA-exposed with a control diet, and (4) in utero VPA-exposed with GOS/FOS diet. Dietary intervention started from birth and continued throughout the duration of the experiment. We showed that the prebiotic diet normalized VPA-induced alterations in male offspring, including restoration of key microbial taxa, intestinal permeability, peripheral immune homeostasis, reduction of neuroinflammation in the cerebellum, and impairments in social behavior and cognition in mice. Overall, our research provides valuable insights into the gut-brain axis involvement in ASD development. In addition, dietary interventions might correct the disbalance in gut microbiota and immune responses and, ultimately, might improve detrimental behavioral outcomes in ASD.

Keywords

autism spectrum disorder, gastrointestinal microbiome, gut-brain axis, immunomodulation, prebiotics, Pharmacology, Pharmacology (medical)

Citation

Prince, N, Peralta Marzal, L N, Markidi, A, Ahmed, S, Adolfs, Y, Pasterkamp, R J, Kumar, H, Roeselers, G, Garssen, J, Kraneveld, A D & Perez-Pardo, P 2024, 'Prebiotic diet normalizes aberrant immune and behavioral phenotypes in a mouse model of autism spectrum disorder', Acta Pharmacologica Sinica, vol. 45, no. 8, pp. 1591-1603. https://doi.org/10.1038/s41401-024-01268-x