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Vagotomy Ameliorates Islet Morphofunction And Body Metabolic Homeostasis In Msg-obese Rats.

机译:迷走神经切断术改善了肥胖大鼠的胰岛形态和体内代谢稳态。

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摘要

The parasympathetic nervous system is important for β-cell secretion and mass regulation. Here, we characterized involvement of the vagus nerve in pancreatic β-cell morphofunctional regulation and body nutrient homeostasis in 90-day-old monosodium glutamate (MSG)-obese rats. Male newborn Wistar rats received MSG (4 g/kg body weight) or saline [control (CTL) group] during the first 5 days of life. At 30 days of age, both groups of rats were submitted to sham-surgery (CTL and MSG groups) or subdiaphragmatic vagotomy (Cvag and Mvag groups). The 90-day-old MSG rats presented obesity, hyperinsulinemia, insulin resistance, and hypertriglyceridemia. Their pancreatic islets hypersecreted insulin in response to glucose but did not increase insulin release upon carbachol (Cch) stimulus, despite a higher intracellular Ca2+ mobilization. Furthermore, while the pancreas weight was 34% lower in MSG rats, no alteration in islet and β-cell mass was observed. However, in the MSG pancreas, increases of 51% and 55% were observed in the total islet and β-cell area/pancreas section, respectively. Also, the β-cell number per β-cell area was 19% higher in MSG rat pancreas than in CTL pancreas. Vagotomy prevented obesity, reducing 25% of body fat stores and ameliorated glucose homeostasis in Mvag rats. Mvag islets demonstrated partially reduced insulin secretion in response to 11.1 mM glucose and presented normalization of Cch-induced Ca2+ mobilization and insulin release. All morphometric parameters were similar among Mvag and CTL rat pancreases. Therefore, the higher insulin release in MSG rats was associated with greater β-cell/islet numbers and not due to hypertrophy. Vagotomy improved whole body nutrient homeostasis and endocrine pancreatic morphofunction in Mvag rats.
机译:副交感神经系统对于β细胞分泌和质量调节很重要。在这里,我们表征了迷走神经参与90天大的味精(MSG)肥胖大鼠的胰腺β细胞形态功能调节和身体营养稳态。雄性新生Wistar大鼠在生命的前5天接受了味精(4 g / kg体重)或生理盐水[对照组(CTL)组]。在30日龄时,两组大鼠均接受假手术(CTL和MSG组)或dia下迷走神经切断术(Cvag和Mvag组)。 90天大的味精大鼠表现出肥胖,高胰岛素血症,胰岛素抵抗和高甘油三酯血症。尽管细胞内Ca2 +的迁移量更高,但他们的胰岛对葡萄糖的反应使胰岛素分泌过多,但在卡巴胆碱(Cch)刺激下并未增加胰岛素的释放。此外,虽然MSG大鼠的胰腺重量降低了34%,但未观察到胰岛和β细胞质量的改变。然而,在味精胰腺中,总胰岛和β细胞面积/胰腺切片分别增加了51%和55%。同样,MSG大鼠胰腺中每β细胞面积的β细胞数量比CTL胰腺高19%。迷走神经切断术可以预防肥胖症,减少Mvag大鼠的体内25%的脂肪存储并改善葡萄糖稳态。 Mvag胰岛表现出对11.1 mM葡萄糖的响应而部分降低了胰岛素分泌,并呈现Cch诱导的Ca2 +动员和胰岛素释放的正常化。在Mvag和CTL大鼠胰腺中,所有形态参数均相似。因此,MSG大鼠中较高的胰岛素释放与更大的β细胞/胰岛数目有关,而不是由于肥大。迷走神经切断术改善了Mvag大鼠的全身营养稳态和内分泌胰腺形态功能。

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