Suppr超能文献

胰高血糖素刺激大鼠脑切片对酮体的利用。

Glucagon stimulates ketone utilization by rat brain slices.

作者信息

Kirsch J R, D'Alecy L G

出版信息

Stroke. 1984 Mar-Apr;15(2):324-8. doi: 10.1161/01.str.15.2.324.

Abstract

Glucagon has been shown previously to increase further the enhanced tolerance for hypoxia observed in mice with elevated blood ketones. Glucagon is also known to increase blood glucose and to alter directly the metabolism of some (liver) cells. Both the increase in blood glucose and altered cellular metabolism could contribute to the increase in tolerance for hypoxia observed in mice given glucagon in combination with the ketone, beta-hydroxybutyrate. To evaluate the systemic component of this hypothesis, blood glucose, beta-hydroxybutyrate, and glucagon were elevated alone or simultaneously and hypoxic tolerance of mice was measured. To identify possible cellular effects of glucagon on glucose or ketone metabolism, we measured the incorporation of radiolabeled glucose or beta-hydroxybutyrate into CO2 or total lipid in isolated rat brain slices. Both glucagon and glucose increased hypoxic tolerance of ketotic mice but our data do not support the hypothesis that glucagon's action was only through an elevation of blood glucose. In brain slices glucagon stimulated the incorporation of beta-hydroxybutyrate into CO2 both in the presence or absence of additional glucose. These results demonstrate that glucagon has a direct effect on brain metabolism which may contribute to the increased tolerance for hypoxia. They, however, do not exclude the possibility that glucagon is working in addition to increase hypoxic survival in ketotic mice by increasing the availability of glucose to the brain.

摘要

先前的研究表明,胰高血糖素能进一步提高血液酮体升高的小鼠对缺氧的耐受性。已知胰高血糖素还能升高血糖,并直接改变某些(肝脏)细胞的代谢。血糖升高和细胞代谢改变都可能导致在给予胰高血糖素与酮体β-羟基丁酸酯的小鼠中观察到的缺氧耐受性增加。为了评估这一假设的全身因素,单独或同时升高血糖、β-羟基丁酸酯和胰高血糖素,并测量小鼠的缺氧耐受性。为了确定胰高血糖素对葡萄糖或酮体代谢可能的细胞效应,我们测量了放射性标记的葡萄糖或β-羟基丁酸酯在分离的大鼠脑片中转化为二氧化碳或总脂质的情况。胰高血糖素和葡萄糖都增加了酮症小鼠的缺氧耐受性,但我们的数据不支持胰高血糖素的作用仅通过升高血糖这一假设。在脑片中,无论是否存在额外的葡萄糖,胰高血糖素都能刺激β-羟基丁酸酯转化为二氧化碳。这些结果表明,胰高血糖素对脑代谢有直接影响,这可能有助于提高对缺氧的耐受性。然而,它们并不排除胰高血糖素除了通过增加大脑的葡萄糖供应来提高酮症小鼠的缺氧存活率之外还起作用的可能性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验