烟碱信号刺激小鼠和人类胰腺α细胞分泌胰高血糖素。

Diabetes Pub Date : 2025-01-01 DOI:10.2337/db23-0809
Alexander Hamilton, Quan Zhang, Rui Gao, Thomas G Hill, Albert Salehi, Jakob G Knudsen, Matthew B Draper, Paul R V Johnson, Patrik Rorsman, Andrei I Tarasov
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摘要

吸烟被广泛认为是 2 型糖尿病的危险因素,因为尼古丁会使肌肉、肝脏或脂肪中的胰岛素受体脱敏,从而导致胰岛素抵抗。然而,人们对尼古丁这种离子胆碱能受体激动剂对胰岛激素输出的直接调节却知之甚少。我们使用共聚焦显微镜对小鼠和人类胰岛的细胞膜 Ca2+ 动态进行了成像,并测量了离体小鼠胰岛在生物碱作用下的胰高血糖素分泌。尼古丁能急性刺激分泌胰高血糖素的 α 细胞的细胞膜 Ca2+,但不能刺激分泌胰岛素的 β 细胞。2.8±0.5 倍(p70% 的 α 细胞)的升高与 2.5±0.3 倍的胰高血糖素分泌刺激密切相关。尼古丁诱导的细胞膜 Ca2+ 升高依赖于细胞外的流入,而不是细胞内的阳离子释放。根据细胞内二酰甘油水平监测的代谢胆碱能信号传导仅限于 69% 的 α 细胞和 94% 的 β 细胞。我们的结论是,副交感神经对胰岛激素释放的调节利用了β细胞(代谢性)和α细胞(代谢性和离子性)中不同的信号通路,从而对ACh诱导的胰高血糖素外泌进行了微调。因此,持续的烟碱刺激可能会通过增加胰高血糖素的释放来降低胰岛素敏感性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nicotinic Signaling Stimulates Glucagon Secretion in Mouse and Human Pancreatic α-Cells.

Smoking is widely regarded as a risk factor for type 2 diabetes because nicotine contributes to insulin resistance by desensitizing the insulin receptors in muscle, liver, or fat. Little is known, however, about the immediate regulation of islet hormonal output by nicotine, an agonist of ionotropic cholinergic receptors. We investigated this by imaging cytosolic Ca2+ dynamics in mouse and human islets using confocal microscopy and measuring glucagon secretion in response to the alkaloid from isolated mouse islets. Nicotine acutely stimulated cytosolic Ca2+ in glucagon-secreting α-cells but not in insulin-secreting β-cells. The 2.8- ± 0.5-fold (P < 0.05) increase in Ca2+, observed in >70% of α-cells, correlated well with a 2.5- ± 0.3-fold stimulation of glucagon secretion. Nicotine-induced elevation of cytosolic Ca2+ relied on influx from the extracellular compartment rather than release of the cation from intracellular depots. Metabotropic cholinergic signaling, monitored at the level of intracellular diacylglycerol, was limited to 69% of α-cells versus 94% of β-cells. We conclude that parasympathetic regulation of pancreatic islet hormone release uses different signaling pathways in β-cells (metabotropic) and α-cells (metabotropic and ionotropic), resulting in the fine-tuning of acetylcholine-induced glucagon exocytosis. Sustained nicotinic stimulation is, therefore, likely to attenuate insulin sensitivity by increasing glucagon release.

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