The impact of probiotic treatment on sex-specific behavioral differences in valproic acid-induced autism animal model

Autism spectrum disorder (ASD) is defined by social impairments and disturbances of repetitive, stereotypical behaviors. However, its presentation shows sex-specific traits that may have shaped underlying mechanisms and treatment outcomes. The purpose of this study was to investigate the effects of a specific probiotic on behavioral outcomes and serotonin levels in adult rats prenatally exposed to valproic acid (VPA), an established experimental model of ASD. Wistar rats received either 500 mg/kg VPA or physiological saline on gestational day 12.5. Offspring of both sexes were assigned to 8 groups, with designated groups receiving a specific probiotic mixture. Animals were tested at postnatal day 111 in social, anxiety-related and locomotor tasks and platelet serotonin levels were measured after sacrifice. Our results suggest that VPA exposure and probiotic administration elicit distinct sex-specific behavioral responses and differences in platelet serotonin levels. ASD-related social symptoms persist only in male animals, while females generally exhibit higher activity levels and lower anxiety. The probiotic mixture appeared to alleviate social deficits in male VPA-exposed rats. However, the mixture showed no measurable effects on other ASD-related behavioral parameters and caused no adverse outcomes in either sex. Notably, female animals displayed distinct behavioral patterns and did not exhibit VPA-induced alterations, suggesting potential sex-specific protective mechanisms that may modulate both VPA effects and microbiota-related interventions. These findings highlight the importance of sex-specific analysis and timing in evaluating therapies. Therefore, sex differences should be carefully considered, given their impact on both the understanding and treatment of ASD.

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Journal
Brain Behavior & Immunity - Health
Published
2026-09-29
DOI
https://doi.org/10.1016/j.bbih.2026.101378
Primary Topic
Gut microbiota and health
Type
article
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article

The impact of probiotic treatment on sex-specific behavioral differences in valproic acid-induced autism animal model

Renáta Cserjési, Zoltán Karádi, Kristóf László, Laura Czifra et al.
Brain Behavior & Immunity - Health
Gut microbiota and health
article

The impact of probiotic treatment on sex-specific behavioral differences in valproic acid-induced autism animal model

Renáta Cserjési, Zoltán Karádi, Kristóf László, Laura Czifra, Zoltán Vizvári, Béla Kocsis, Edina Hormay, Kitti Mintál, Győző Kulcsár, Dávid Vörös, Zoltán Petykó, Attila Tóth, Csenge Julia Rook, László Lénárd
article en

Abstract

Autism spectrum disorder (ASD) is defined by social impairments and disturbances of repetitive, stereotypical behaviors. However, its presentation shows sex-specific traits that may have shaped underlying mechanisms and treatment outcomes. The purpose of this study was to investigate the effects of a specific probiotic on behavioral outcomes and serotonin levels in adult rats prenatally exposed to valproic acid (VPA), an established experimental model of ASD. Wistar rats received either 500 mg/kg VPA or physiological saline on gestational day 12.5. Offspring of both sexes were assigned to 8 groups, with designated groups receiving a specific probiotic mixture. Animals were tested at postnatal day 111 in social, anxiety-related and locomotor tasks and platelet serotonin levels were measured after sacrifice. Our results suggest that VPA exposure and probiotic administration elicit distinct sex-specific behavioral responses and differences in platelet serotonin levels. ASD-related social symptoms persist only in male animals, while females generally exhibit higher activity levels and lower anxiety. The probiotic mixture appeared to alleviate social deficits in male VPA-exposed rats. However, the mixture showed no measurable effects on other ASD-related behavioral parameters and caused no adverse outcomes in either sex. Notably, female animals displayed distinct behavioral patterns and did not exhibit VPA-induced alterations, suggesting potential sex-specific protective mechanisms that may modulate both VPA effects and microbiota-related interventions. These findings highlight the importance of sex-specific analysis and timing in evaluating therapies. Therefore, sex differences should be carefully considered, given their impact on both the understanding and treatment of ASD.

Brain Behavior & Immunity - HealthVol. 57
Obuda University (HU), Eötvös Loránd University (HU), University College London (GB), University of Pecs (HU)
Gender equality
Openalex Percentile: Top 20%
Gut microbiota and health
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