Changes in brain metabolic connectivity underlie autistic-like social deficits in a rat model of autism spectrum disorder
Scientific Reports 7(1)
Abstract
The neurobiological basis of social dysfunction and the high male prevalence in autism spectrum disorder (ASD) remain poorly understood. Although network alterations presumably underlie the development of autistic-like behaviors, a clear pattern of connectivity differences specific to ASD has not yet emerged. Because the heterogeneous nature of ASD hinders investigations in human subjects, we explored brain connectivity in an etiologically homogenous rat model of ASD induced by exposure to valproic acid (VPA) in utero. We performed partial correlation analysis of cross-sectional resting-state 18 F-fluorodeoxyglucose positron emission tomography scans from VPA-exposed and control rats to estimate metabolic connectivity and conducted canonical correlation analysis of metabolic activity and behavior scores. VPA-treated rats exhibited impairments in social behaviors, and this difference was more pronounced in male than female rats. Similarly, current analyses revealed sex-specific changes in network connectivity and identified distinct alterations in the distributed metabolic activity patterns associated with autistic-like social deficits. Specifically, diminished activity in the salience network and enhanced activity in a cortico-cerebellar circuit correlated with the severity of social behavioral deficits. Such metabolic connectivity features may represent neurobiological substrates of autistic-like behavior, particularly in males, and may serve as a pathognomonic sign in the VPA rat model of ASD.
Korean summary
자폐 스펙트럼 장애의 사회성 결함과 남성 편중 발병의 신경생물학적 기반을 알아보기 위해, 태아기 발프로산(VPA) 노출로 유도한 자폐 모델 쥐의 뇌연결망을 살핀 연구입니다. 휴지기 FDG 양전자방출단층촬영(PET) 영상에 부분상관 분석을 적용해 뇌 영역 간 대사 연결성을 추정하고, 대사 활동 패턴과 행동 점수의 관계를 정준상관 분석으로 조사했습니다. VPA 노출 쥐는 사회적 행동의 손상을 보였고 이는 암컷보다 수컷에서 두드러졌으며, 뇌연결망 변화도 성별에 따라 달랐습니다. 특히 현출성 연결망의 활동 저하와 대뇌-소뇌 회로의 활동 증가가 사회적 행동 결함의 심각도와 연관되었습니다. 이러한 대사 연결성 특징은 자폐형 행동, 특히 수컷에서의 행동 이상을 뒷받침하는 신경 기반이자 이 동물 모델의 특징적 지표가 될 수 있습니다.