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Meseguer-Beltran, M.

Publications and source records attributed to Meseguer-Beltran, M..

2 recordsLinked to original sources

Abscisic Acid rescues behavior in adult female mice in Attention Deficit Disorder with Hyperactivity model of dopamine depletion by regulating microglia and vesicular GABA transporter

BackgroundAttention deficit/hyperactivity disorder (ADHD) is a neurodevelopmental syndrome influenced by both genetic and environmental factors. While genetic studies have highlighted catecholamine dysfunction, emerging epidemiological evidence suggest neuroinflammation as a significant trigger. However, understanding the relative contributions of these alterations to ADHD symptomatology remains elusive. MethodThis study employed 93 female Swiss mice of the ADHD dopamine deficit model. Dopaminergic lesions were induced via 6-hydroxidopamine (6-OHDA) injection on postnatal day 5. The impact of these lesions during development was examined by comparing young and adult mice (at postnatal day 21 and 90, respectively). We sought to mitigate adult symptoms through abscisic acid (ABA) administration during two-months. Postmortem analyses encompassed the evaluation of neuroinflammation (microglia morphology, NLRP3 inflammasome activation, cytokine expression) and excitatory/inhibitory (E/I) ratio in specific brain regions. ResultsNeonatal dopaminergic lesions elicited hyperactivity, impulsivity, hypersensitivity increased social interaction in both one-month and three-month females and induced impaired memory in three-month mice. ABA exposure significantly ameliorated hyperactivity, impulsivity, anxiety, hypersensitivity, and social interaction alterations, but not cognitive impairment. In the anterior cingulate cortex (ACC) of one-month mice dopamine-deficit elevated IL-1{beta} and TNF expression and reduced Arg1 mRNA levels, along with E/I imbalance. ABA intervention restored microglia morphology, IL-1{beta}, Arg1 expression and enhanced vGAT levels. ConclusionsThis study strongly suggest that dopamine deficit induced alteration of microglia and E/I ratio underling distinct ADHD symptoms. Reinstating healthy microglia by anti-inflammatory agents in specific areas emerges as a promising strategy for managing ADHD.

neuroscience↗

Targeting neuroinflammation with Abscisic Acid reducespain sensitivity in females and hyperactivity in males of an ADHD mice model

AimsAttention deficit/hyperactivity disorder (ADHD) is a neurodevelopmental syndrome characterized by dopaminergic dysfunction. In this study, we aimed to demonstrate the link between dopaminergic deficit and neuroinflammation underlying ADHD symptoms. Subjects and TreatmentWe used a validated ADHD mice model, that involves perinatal 6-OHDA lesion. Animals were treated with 20mg/L (drinking water) of Abscisic acid (ABA) for one month. We tested behaviour (learning and memory, anxiety, social interactions, and pain) in both females and male mice, in all eight groups (control and lesioned, with/without ABA). Postmortem, we analyzed microglia morphology and Ape1 expression in specific brain areas related to the descending pain inhibitory pathway. ResultsIn females, dopaminergic deficit increased pain sensitivity, but not hyperactivity, in contrast to males. This behaviour was associated with inflammatory microglia and lower Ape1 levels in the anterior cingulate cortex (ACC) and posterior insula cortex (IC). ABA treatment reduced inflammation and alleviated pain. In males, ABA reduced hyperactivity, but had no significant effect on inflammation. ConclusionsThis is the first study proving a sex-dependent association between dopamine dysfunction and inflammation in specific brain areas, leading to different behavior outcomes in a mouse model of ADHD. These findings provide new clues for potential treatments.

neuroscience↗