DOI: 10.3390/ijms27167262 ISSN: 1422-0067

Dopaminergic Dysregulation in Migraine: From Hypothalamic A11 Dysfunction to a Systemic Biobehavioral Phenotype

Jakub Przegrałek, Filip Targosiński, Karol Marschollek, Izabela Łaczmańska, Lanfranco Pellesi, Sławomir Budrewicz, Marta Nowakowska-Kotas, Marta Waliszewska-Prosół

Beyond the well-established roles of serotonin and calcitonin gene-related peptide (CGRP), the contribution of dopamine (DA) to migraine pathophysiology remains a subject of intense investigation. DA acts as a neuromodulator, functioning both as a homeostatic pain filter and a driver of premonitory and autonomic symptoms. This review provides a comprehensive synthesis of DA’s involvement in migraine, proposing an integrated model that spans from molecular signaling to a systemic phenotype. A comprehensive search of the PubMed database (1976–2026) was performed. The analysis evaluates data across receptor signaling, hypothalamic connectivity (specifically the A11 nucleus), genetic susceptibility markers and advanced neuroimaging studies. Current evidence identifies dopamine as a gatekeeper of the trigeminovascular threshold, with the hypothalamic A11 nucleus serving as a modulatory hub. Within this circuit, DA exerts concentration-dependent effects: high-affinity D2 receptor activation promotes antinociception, whereas low-affinity D1-like receptors facilitate nociceptive signaling. Clinically, this manifests as a “dopaminergic phenotype” characterized by yawning, nausea, and reward-system dysfunction. This phenotype extends beyond migraine, showing links to comorbidities such as restless legs syndrome (RLS) and attention-deficit/hyperactivity disorder (ADHD). DA’s role in migraine is state-dependent and interconnected with CGRP and serotonergic pathways. Recognizing the dopaminergic phenotype is essential for capturing the clinical heterogeneity of the disorder and may pave the way for personalized, mechanism-based therapeutic strategies.

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