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Brain-body circuit by which midbrain dopamine neuronal activity modulates splenic immunity

Gopinath, A.; Apicella, A.; Smith, A. R.; Bertero, A.; Freedman, E.; Hornstein, L.; Wood, L.; Ciupe, H.; Booth, D.; Campos, S.; Soundara, N.; Purich, D. L.; Trevizan-Bau, P.; Reznikov, L.; Urs, N. M.; Guryanova, O.; Wesson, D. W.; Khoshbouei, H.

2024-12-10 neuroscience
10.1101/2024.12.05.625471 bioRxiv
Show abstract

Midbrain dopamine neurons are well-known to shape central nervous system function, yet there is growing evidence for their influence on the peripheral immune system. Here we demonstrate that midbrain dopamine neurons form a circuit to the spleen via a multi-synaptic pathway from the dorsal vagal complex (DVC) through the celiac ganglion. Midbrain dopamine neurons modulate the activity of D1- and D2-like dopamine receptor-expressing DVC neurons. In vivo activation of midbrain dopamine neurons induced dopamine release in the DVC and increased immediate early gene expression in both the DVC and celiac ganglion. Activation of this midbrain-to-spleen circuit reduced spleen weight and decreased naive CD4+ T-cell populations without affecting total T-cell numbers. These findings unveil a functional midbrain- DVC-celiac ganglion-spleen pathway, through which midbrain dopamine neurons modulate splenic immunity. These novel insights into the neural regulation of the immune system have important implications for diseases involving altered dopamine neurotransmission and highlight potential targets for immunotherapeutic interventions.

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