Acute rapamycin rescues the hyperexcitable phenotype of accumbal medium spiny neurons in the valproic acid rat model of autism spectrum disorder

中棘神经元 丙戊酸 神经科学 PI3K/AKT/mTOR通路 表型 神经发育障碍 神经传递 生物 中枢神经系统 细胞生物学 基底神经节 癫痫 信号转导 基因 遗传学 受体
作者
Daniela Iezzi,Lorenzo Curti,Giuseppe Ranieri,E. Gerace,Alessia Costa,A. Ilari,A. La Rocca,Cristina Luceri,M. D’Ambrosio,L. Silvestri,M. Scardigli,Guido Mannaioni,Alessio Masi
出处
期刊:Pharmacological Research [Elsevier BV]
卷期号:183: 106401-106401 被引量:10
标识
DOI:10.1016/j.phrs.2022.106401
摘要

We previously demonstrated that prenatal exposure to valproic acid (VPA), an environmental model of autism spectrum disorder (ASD), leads to a hyperexcitable phenotype associated with downregulation of inward-rectifying potassium currents in nucleus accumbens (NAc) medium spiny neurons (MSNs) of adolescent rats. Aberrant mTOR pathway function has been associated with autistic-like phenotypes in multiple animal models, including gestational exposure to VPA. The purpose of this work was to probe the involvement of the mTOR pathway in VPA-induced alterations of striatal excitability. Adolescent male Wistar rats prenatally exposed to VPA were treated acutely with the mTOR inhibitor rapamycin and used for behavioral tests, ex vivo brain slice electrophysiology, single-neuron morphometric analysis, synaptic protein quantification and gene expression analysis in the NAc. We report that postnatal rapamycin ameliorates the social deficit and reverts the abnormal excitability, but not the inward-rectifying potassium current defect, of accumbal MSNs. Synaptic transmission and neuronal morphology were largely unaffected by prenatal VPA exposure or postnatal rapamycin treatment. Transcriptome analysis revealed extensive deregulation of genes implied in neurodevelopmental disorders and ionic mechanisms exerted by prenatal VPA, which was partially reverted by postnatal rapamycin. The results of this work support the existence of antagonistic interaction between mTOR and VPA-induced pathways on social behavior, neurophysiological phenotype and gene expression profile, thus prompting further investigation of the mTOR pathway in the quest for specific therapeutic targets in ASD. • Prenatal exposure to valproic acid leads to a hyperexcitable phenotype of nucleus accumbens medium spiny neurons. • Acute postnatal rapamycin rescues the social deficit and the hyperexcitable phenotype of accumbal MSNs. • Treatments have minor effects on strength of synaptic transmission, neuronal morphology and expression of synaptic proteins. • Many individual transcripts and gene pathways are disregulated by prenatal exposure to valproic acid and restored by postnatal rapamycin.
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