Synaptic mechanism underlying serotonin modulation of transition to cocaine addiction.

Li, Yue; Simmler, Linda D; Van Zessen, Ruud; Flakowski, Jérôme; Wan, Jin-Xia; Deng, Fei; Li, Yu-Long; Nautiyal, Katherine M et al. · Science · 2021

basic_science · Level V

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Abstract

Compulsive drug use despite adverse consequences defines addiction. While mesolimbic dopamine signaling is sufficient to drive compulsion, psychostimulants such as cocaine also boost extracellular serotonin (5-HT) by inhibiting reuptake. We used SERT Met172 knockin (SertKI) mice carrying a transporter that no longer binds cocaine to abolish 5-HT transients during drug self-administration. SertKI mice showed an enhanced transition to compulsion. Conversely, pharmacologically elevating 5-HT reversed the inherently high rate of compulsion transition with optogenetic dopamine self-stimulation. The bidirectional effect on behavior is explained by presynaptic depression of orbitofrontal cortex–to–dorsal striatum synapses induced by 5-HT via 5-HT<sub>1B</sub> receptors. Consequently, in projection-specific 5-HT<sub>1B</sub> receptor knockout mice, the fraction of individuals compulsively self-administering cocaine was elevated.

Medical subject headings