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胰岛素和胰高血糖素在反刍动物酮病发生发展中的作用——综述

Roles for insulin and glucagon in the development of ruminant ketosis -- a review.

作者信息

Brockman R P

出版信息

Can Vet J. 1979 May;20(5):121-6.

Abstract

Ketonemia can be a physiological response to a reduction in dietary intake. It also may occur when energy demands exceed the energy intake. Normally, alimentary ketogenesis is the major source of ketone bodies in ruminants. During ketonemia there is increased hepatic ketone body production. During physiological ketosis, the mobilization of free fatty acids is inadequate to support a high rate of hepatic ketogenesis. However, during clinical ketosis, the hormonal status (low insulin, high glucagon/insulin ratio) in combination with hypoglycemia promotes excessive lipid mobilization and a greater hepatic removal of fatty acids and switches the liver to a higher rate of ketogenesis. The low insulin, furthermore, can impair maximal ketone body utilization, thus exacerbating the hyperketonemia.

摘要

酮血症可能是对饮食摄入量减少的一种生理反应。当能量需求超过能量摄入时也可能发生。正常情况下,反刍动物的肠道生酮作用是酮体的主要来源。在酮血症期间,肝脏酮体生成增加。在生理性酮症期间,游离脂肪酸的动员不足以支持高速度的肝脏酮体生成。然而,在临床酮症期间,激素状态(胰岛素水平低、胰高血糖素/胰岛素比值高)与低血糖相结合,促进了过多的脂质动员以及肝脏对脂肪酸的更大清除,并使肝脏转变为更高速度的酮体生成。此外,低胰岛素水平会损害酮体的最大利用,从而加剧高酮血症。

相似文献

4
Ruminant ketosis.反刍动物酮病
Biochem Soc Trans. 1981 Aug;9(4):348-9. doi: 10.1042/bst0090348.
5
Hyperketonemia-ketogenesis and ketone body metabolism.高酮血症——酮体生成与酮体代谢
J Dairy Sci. 1971 Jun;54(6):936-48. doi: 10.3168/jds.S0022-0302(71)85950-7.
7
[Biochemistry and therapy of ketosis].[酮症的生物化学与治疗]
Schweiz Arch Tierheilkd. 1977 Oct;119(10):389-94.

本文引用的文献

1
Glucose biokinetics in normal and ketitic cows.正常和酮病奶牛的葡萄糖生物动力学
J Appl Physiol. 1959 Nov;14:1026-8. doi: 10.1152/jappl.1959.14.6.1026.
2
GROWTH HORMONE-INDUCED KETOSIS IN THE COW.生长激素诱导的奶牛酮病
J Dairy Sci. 1965 Mar;48:342-6. doi: 10.3168/jds.s0022-0302(65)88225-x.
8
Regulation of fat metabolism of the liver.肝脏脂肪代谢的调节
Nature. 1967 Aug 12;215(5102):716-8. doi: 10.1038/215716a0.

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