Back to Search Start Over

Hypothalamic Orexin Prevents Hepatic Insulin Resistance via Daily Bidirectional Regulation of Autonomic Nervous System in Mice.

Authors :
Hiroshi Tsuneki
Emi Tokai
Yuya Nakamura
Keisuke Takahashi
Mikio Fujita
Takehiro Asaoka
Kanta Kon
Yuuki Anzawa
Tsutomu Wada
Ichiro Takasaki
Kumi Kimura
Hiroshi Inoue
Masashi Yanagisawa
Takeshi Sakurai
Toshiyasu Sasaoka
Source :
Diabetes; Feb2015, Vol. 64 Issue 2, p459-470, 12p, 2 Charts, 4 Graphs
Publication Year :
2015

Abstract

Circadian rhythm is crucial for preventing hepatic insulin resistance, although the mechanism remains uncovered. Here we report that the wake-active hypothalamic orexin system plays a key role in this regulation. Wild-type mice showed that a daily rhythm in blood glucose levels peaked at the awake period; however, the glucose rhythm disappeared in orexin knockout mice de- spite normal feeding rhythm. Central administration of orexin A during nighttime awake period acutely elevated blood glucose levels but subsequently lowered daytime glucose levels in normal and diabetic db/db mice. The glucose-elevating and -lowering effects of orexin A were suppressed by adrenergic antagonists and hepatic parasympathectomy, respectively. Moreover, the expression levels of hepatic gluconeogenic genes, including, Pepck were increased and decreased by orexin A at nanomolar and femtomolar doses, respectively. These results indicate that orexin can bidirectionally regulate hepatic gluconeogenesis via control of autonomic balance, leading to generation of the daily blood glucose oscillation. Furthermore, during aging, orexin deficiency enhanced en doplasmic reticulum (ER) stress in the liver and caused impairment of hepatic insulin signaling and abnormal gluconeogenic activity in pyruvate tolerance test. Collectively, the daily glucose rhythm under control of orexin appears to be important for maintaining ER homeostasis, thereby preventing insulin resistance in the liver. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00121797
Volume :
64
Issue :
2
Database :
Complementary Index
Journal :
Diabetes
Publication Type :
Academic Journal
Accession number :
100607185
Full Text :
https://doi.org/10.2337/db14-0695