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◆ Neurobiology of disease2026-09-17

Escalating demand for learning during adolescence impairs social interaction by hyperactivating midbrain dopamine neurons in young adulthood male mice.

Hao Wang, Fuhong Liu, Linyuan Li, Chunling Wei, Qiaohua Zheng, Yanning Qiao, Yihui Liu, Zongpeng Sun, Wei Ren, Zhiqiang Liu, Jing Han

原始摘要(英文原文)· Original abstract
Chronic stress during adolescence is a major risk factor for adult psychiatric disorders, yet the long-term impact of learning-related aversive stress remains poorly understood. This study established an mice model of learning demand stress by escalating the fixed ratio (FR) number of escape responses to foot shocks in a negative reinforcement learning paradigm. Remarkably, mice that performed proficiently (high-susceptible, H-Su) during this aversive learning task in adolescent developed late-onset impairments in social interaction and novel object recognition in young adulthood, whereas poorly performing mice (low-susceptible, L-Su) exhibited normal behaviors. Furthermore, in vivo electrophysiology revealed a significant increase in spontaneous tonic firing of substantia nigra pars compacta (SNc) dopamine neurons selectively in H-Su mice. Whole-cell patch-clamp recordings showed increased intrinsic excitability (enhanced Ih currents and L-type calcium channel currents), reduced miniature excitatory postsynaptic current (mEPSC), and increased paired-pulse ratio in H-Su mice. Chemogenetic inhibition of SNc dopamine neurons in H-Su mice rescued social interaction deficits. In summary, our findings suggest that adolescent aversive learning stress can program late-onset SNc dopamine neuron hyperexcitability and behavioral dysfunctions in young adulthood.
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Escalating demand for learning during adolescence impairs social interaction by hyperactivating midbrain dopamine neurons in young adulthood male mice. — 科研速览 Science Skim