Seiji Miyazawa, Yasutake Shimizu, Takahiko Shiina, Haruko Hirayama, Hironobu Morita, Tadashi Takewaki
Index: Am. J. Physiol. Regul. Integr. Comp. Physiol. 295(3) , R991-6, (2008)
Full Text: HTML
Body temperature drops dramatically during hibernation, but the heart retains the ability to contract and is resistant to induction of arrhythmia. Although adaptive changes in the heart prior to hibernation may be involved in the cold-resistant property, it remains unclear whether these changes are sufficient for maintaining cardiac pulsatility under an extreme hypothermic condition. We forcibly induced hypothermia in Syrian hamsters by pentobarbital anesthesia combined with cooling of the animals. This allows reproduction of a hypothermic condition in the absence of possible hibernation-specific reactions. Unlike hypothermia in natural hibernation, the forced induction of hypothermia caused atrioventricular block. Furthermore, J-waves, which are typically observed during hypothermia in nonhibernators, were recorded on an ECG. The origin of the J-wave seemed to be related to irreversible injury of the myocardium, because J-waves remained after recovery of body temperature. An abnormal ECG was also found when hypothermia was induced in hamsters that were well adapted to a cold and darkened environment or hamsters that had already experienced hibernation. These results suggest that acclimatization prior to hibernation does not have a crucial effect at least on acquisition of cardiac resistance to low temperature. In contrast, an abnormal ECG was not observed in the case of hypothermia induced by central administration of an adenosine A1-receptor agonist and subsequent cooling, confirming the importance of the adenosine system for inducing hibernation. Our results suggest that some specific mechanisms, which may be driven by a central adenosine system, operate for maintaining the proper cardiac pulsatility under extreme hypothermia.
| Structure | Name/CAS No. | Molecular Formula | Articles |
|---|---|---|---|
![]() |
N6-Cyclohexyladenosine
CAS:36396-99-3 |
C16H23N5O4 |
|
An adenosine kinase inhibitor, ABT-702, inhibits spinal noci...
2015-10-01 [Neuropharmacology 97 , 160-70, (2015)] |
|
IL-6, A1 and A2aR: a crosstalk that modulates BDNF and induc...
2014-07-11 [Biochem. Biophys. Res. Commun. 449(4) , 477-82, (2014)] |
|
The interaction of adenosine and morphine on pentylenetetraz...
2013-09-01 [Neuropharmacology 72 , 1-8, (2013)] |
|
The role of adenosine A1 and A2A receptors of entorhinal cor...
2007-08-01 [Pharmacol. Res. 56(2) , 110-7, (2007)] |
|
Activation of adenosine(1) (A(1)) receptors suppresses head ...
2009-06-01 [Neuropharmacology 56(8) , 1082-7, (2009)] |
Home | MSDS/SDS Database Search | Journals | Product Classification | Biologically Active Compounds | Selling Leads | About Us | Disclaimer
Copyright © 2024 ChemSrc All Rights Reserved
