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2型糖尿病早期的高胰高血糖素血症和胰高血糖素分泌过多是由胰腺小鼠α细胞的多方面失调引起的。

Hyperglucagonemia and glucagon hypersecretion in early type 2 diabetes result from multifaceted dysregulation of pancreatic mouse α-cells.

作者信息

Ruiz-Pino Antonia, Goncalves-Ramírez Arianna, Jiménez-Palomares Margarita, Merino Beatriz, Castellano-Muñoz Manuel, Vettorazzi Jean F, Rafacho Alex, Marroquí Laura, Nadal Ángel, Alonso-Magdalena Paloma, Perdomo Germán, Cózar-Castellano Irene, Quesada Ivan

机构信息

Instituto de Investigación, Desarrollo E Innovación en Biotecnología Sanitaria de Elche (IDiBE), Universidad Miguel Hernández de Elche, Avenida de La Universidad S/N, 03202, Elche, Spain.

Instituto de Neurociencias, Consejo Superior de Investigaciones Científicas - Universidad Miguel Hernández de Elche, San Juan de Alicante, Alicante, Spain.

出版信息

Pflugers Arch. 2025 Feb;477(2):207-221. doi: 10.1007/s00424-024-03045-5. Epub 2024 Nov 27.

DOI:10.1007/s00424-024-03045-5
PMID:39601887
Abstract

Hyperglucagonemia has been implicated in the pathogenesis of type 2 diabetes (T2D). In contrast to β-cells, studies on the function of the pancreatic α-cell in T2D are scarce. Consequently, the processes underlying hyperglucagonemia and α-cell dysfunction are largely unknown, limiting the appropriate design of specific pharmacological and therapeutic strategies. In the current study, we aimed to analyze the alterations of the pancreatic α-cell and its glucagon responses in diabetic db/db mice at early stages of the disease. In this context of glucose intolerance, hyperinsulinemia, and β-cell dysfunction, hyperglucagonemia was only present at fed conditions and was associated with insulin resistance. Yet, we found that the glucagon-to-insulin ratio in db/db mice did not change with fed or fasted states, further supporting that the metabolic regulation of glucagon release was impaired. Pancreatic β-cell dysfunction in db/db mice was manifested by increased basal secretion from isolated islets along with reduced insulin content. In contrast, α-cells from diabetic animals presented upregulated secretion and islet content of glucagon compared with controls. Electrophysiological analysis of dispersed α-cells revealed that altered secretion was not the result of impaired exocytosis. Instead, we found defective regulation of Ca signaling by glucose. Besides these functional alterations, we also observed augmented α-cell mass in diabetic mice, which was accompanied by disrupted islet cytoarchitecture as well as increased α-cell size and number, without pieces of evidence of upregulated proliferation. Overall, these findings indicate that hyperglucagonemia in early T2D results from multifaceted α-cell deregulation in mice.

摘要

高胰高血糖素血症与2型糖尿病(T2D)的发病机制有关。与β细胞不同,关于胰腺α细胞在T2D中功能的研究很少。因此,高胰高血糖素血症和α细胞功能障碍的潜在机制在很大程度上尚不清楚,这限制了特定药理和治疗策略的合理设计。在本研究中,我们旨在分析糖尿病db/db小鼠在疾病早期胰腺α细胞的变化及其胰高血糖素反应。在这种糖耐量异常、高胰岛素血症和β细胞功能障碍的情况下,高胰高血糖素血症仅在进食状态下出现,并与胰岛素抵抗有关。然而,我们发现db/db小鼠的胰高血糖素与胰岛素比值在进食或禁食状态下没有变化,进一步支持胰高血糖素释放的代谢调节受损。db/db小鼠的胰腺β细胞功能障碍表现为分离胰岛的基础分泌增加以及胰岛素含量降低。相比之下,与对照组相比,糖尿病动物的α细胞胰高血糖素分泌和胰岛含量上调。对分散的α细胞进行电生理分析发现,分泌改变不是胞吐作用受损的结果。相反,我们发现葡萄糖对钙信号的调节存在缺陷。除了这些功能改变外,我们还观察到糖尿病小鼠的α细胞质量增加,同时伴有胰岛细胞结构破坏以及α细胞大小和数量增加,且没有增殖上调的证据。总体而言,这些发现表明,早期T2D中的高胰高血糖素血症是小鼠α细胞多方面失调的结果。

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本文引用的文献

1
Single-Cell Transcriptome Profiling of Pancreatic Islets From Early Diabetic Mice Identifies Anxa10 for Ca2+ Allostasis Toward β-Cell Failure.单细胞转录组分析鉴定早期糖尿病小鼠胰岛中的 Anxa10 对β细胞衰竭的 Ca2+ 动态平衡作用。
Diabetes. 2024 Jan 1;73(1):75-92. doi: 10.2337/db23-0212.
2
Delineating mouse β-cell identity during lifetime and in diabetes with a single cell atlas.利用单细胞图谱描绘小鼠β细胞在一生中的身份特征和在糖尿病中的变化。
Nat Metab. 2023 Sep;5(9):1615-1637. doi: 10.1038/s42255-023-00876-x. Epub 2023 Sep 11.
3
Hyperglucagonaemia in diabetes: altered amino acid metabolism triggers mTORC1 activation, which drives glucagon production.
糖尿病中的高胰高血糖素血症:氨基酸代谢改变触发 mTORC1 激活,进而驱动胰高血糖素的产生。
Diabetologia. 2023 Oct;66(10):1925-1942. doi: 10.1007/s00125-023-05967-8. Epub 2023 Jul 22.
4
Incretin hormones and type 2 diabetes.肠促胰岛素激素与 2 型糖尿病。
Diabetologia. 2023 Oct;66(10):1780-1795. doi: 10.1007/s00125-023-05956-x. Epub 2023 Jul 11.
5
100 years of glucagon and 100 more.百年胰高血糖素,未来更多彩。
Diabetologia. 2023 Aug;66(8):1378-1394. doi: 10.1007/s00125-023-05947-y. Epub 2023 Jun 27.
6
α-cell electrophysiology and the regulation of glucagon secretion.α 细胞电生理学与胰高血糖素分泌的调节。
J Endocrinol. 2023 Jun 26;258(2). doi: 10.1530/JOE-22-0295. Print 2023 Aug 1.
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Targeting negative energy balance with calorie restriction and mitochondrial uncoupling in db/db mice.以 db/db 小鼠的热量限制和线粒体解偶联来靶向负能量平衡。
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