BiologyPsychologyMedicine

Dingding Yang, Qiang Liu, Hangjun Ran, Teng Xue, Yifan Lu, Xiao Yang, Jiaming Wang, Ling Liu, Wenting Wang, Bin-bin Nie, Guohong Cai, Shengxi Wu

2026.6.4Neuroscience Bulletin

DOI: 10.1007/s12264-026-01648-9

Abstract

Olfaction is crucial for rodent social behavior, and olfactory dysfunction has been observed in multiple autism spectrum disorder (ASD) models, but its phenotype in Shank3⁻/⁻ mice (a classic ASD model) remains unclear. We systematically assessed olfactory function in Shank3⁻/⁻ mice by using a modified olfactory three-chamber test and optimized ultrasonic vocalization (USV) detection in combination with resting-state functional magnetic resonance imaging (rs-fMRI), whole-brain c-Fos mapping, and three-dimensional (3D) behavioral analysis. Our results showed abnormal odor preference and hyperconnectivity in olfaction-associated brain networks. Upon exposure to neutral, appetitive, and social pheromone odors, Shank3⁻/⁻ mice displayed atypical whole-brain c-Fos activation patterns, which were coupled with synchronized locomotor suppression and stereotyped behaviors. This study maps the neural-behavioral responses to odors in Shank3-/- mice, linking olfactory deficits to autism-like behaviors, and highlights the olfactory system as a targetable pathway for sensory-based autism therapies.

Citation format

YANG, Dingding, et al. Olfactory valence-processing deficits and aberrant brain network connectivity underlie social dysfunction in shank3-/- ASD model mice. Neuroscience Bulletin, 2026.