嘌呤能受体
儿茶酚胺
去甲肾上腺素
嘌呤能信号
神经递质
神经科学
PPAD
受体
内分泌学
神经传递
交感神经系统
生物
内科学
医学
药理学
兴奋剂
多巴胺
腺苷受体
血压
作者
Alexandra K. Brooke,Sarbeshwar Ojha,Daniel P. Murrow,Ashley E. Ross
标识
DOI:10.1021/acschemneuro.4c00435
摘要
Neuroimmune communication is crucial for the body's response to physiological challenges, homeostasis, and immune stress response. Adrenergic and purinergic neurotransmission in the sympathetic nervous system is vital for this communication. This study achieves the first co-detection of adenine-based purines and catecholamines in mesenteric lymph nodes via fast-scan cyclic voltammetry. Additionally, we reveal that manipulating an ATP receptor can impact catecholamine signaling in the lymph node for the first time. The G-protein-coupled receptor P2Y1, which controls intracellular Ca2+ levels, was targeted with the antagonist MRS2179. MRS2179 decreased catecholamine concentrations, increased inter-event times, and prolonged event durations. These results suggest that events became smaller, less frequent, and longer-lasting, possibly attributable to decreased intracellular Ca2+ levels. These findings indicate that ATP release in the lymph node can partially regulate norepinephrine signaling, providing mechanistic insight into sympathetic neuronal neurotransmitter control. A deeper understanding of more complicated neuroimmune mechanisms could potentially influence the development of therapeutic strategies in immunology and neurobiology.
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