Information from the abstract
Serotonin (5-HT) depletion is a critical driver of migraine pathophysiology, yet its precise impact on trigeminal ganglion (TG) neurons remains unclear. This study investigates how 5-HT depletion shapes the “ intrinsic neuronal susceptibility” of the first-order TG neurons by analyzing the electrophysiological properties of small-to-medium (SM) and large (L)-sized TG neurons in a rat model using patch-clamp recordings. Our findings reveal that 5-HT depletion significantly heightens the intrinsic susceptibility of TG neurons, with the electrophysiological disparities between SM and L-sized neurons acting as aggravating factors that intensify peripheral sensitization. Although this study focuses on intrinsic neuronal properties, our findings raise the possibility that 5-HT depletion may indirectly influence the functional balance between pro- and anti-nociceptive 5-HT receptor subtypes within the trigeminovascular system, a hypothesis that warrants further investigation. Functionally, this increased neuronal excitability may predispose TG neurons to heightened responsiveness, potentially contributing to hyperalgesia and altered somatosensory processing. By elucidating the role of serotonin in maintaining sensory homeostasis, this study provides critical insights into migraine pathogenesis and highlights the potential for targeted serotonergic therapies to mitigate excessive trigeminovascular activation.
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Related topics: Migraine and Headache Studies · Vestibular and auditory disorders · Nicotinic Acetylcholine Receptors Study
Thai researcher and institutional participation
Sirikorn Vongseenin · Sekh Thanprasertsuk · Naeemah Ha-ji-a-sa · Saknan Bongsebandhu‐phubhakdi · Chulalongkorn University · Thai Red Cross Society · King Chulalongkorn Memorial Hospital
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