Induction of a Torpor-Like State by 5'-AMP Does Not Depend on H2S Production.

Therapeutic hypothermia is used to reduce ischemia/reperfusion injury (IRI) during organ transplantation and major surgery, but does not fully prevent organ injury. Interestingly, hibernating animals undergo repetitive periods of low body temperature called 'torpor' without signs of organ...

Full description

Bibliographic Details
Main Authors: George J Dugbartey, Hjalmar R Bouma, Arjen M Strijkstra, Ate S Boerema, Robert H Henning
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4546583?pdf=render
id doaj-99242379d7e74b7db64faf26f5f802a0
record_format Article
spelling doaj-99242379d7e74b7db64faf26f5f802a02020-11-25T01:21:26ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-01108e013611310.1371/journal.pone.0136113Induction of a Torpor-Like State by 5'-AMP Does Not Depend on H2S Production.George J DugbarteyHjalmar R BoumaArjen M StrijkstraAte S BoeremaRobert H HenningTherapeutic hypothermia is used to reduce ischemia/reperfusion injury (IRI) during organ transplantation and major surgery, but does not fully prevent organ injury. Interestingly, hibernating animals undergo repetitive periods of low body temperature called 'torpor' without signs of organ injury. Recently, we identified an essential role of hydrogen sulfide (H2S) in entrance into torpor and preservation of kidney integrity during hibernation. A torpor-like state can be induced pharmacologically by injecting 5'-Adenosine monophosphate (5'-AMP). The mechanism by which 5'-AMP leads to the induction of a torpor-like state, and the role of H2S herein, remains to be unraveled. Therefore, we investigated whether induction of a torpor-like state by 5-AMP depends on H2S production.To study the role of H2S on the induction of torpor, amino-oxyacetic acid (AOAA), a non-specific inhibitor of H2S, was administered before injection with 5'-AMP to block endogenous H2S production in Syrian hamster. To assess the role of H2S on maintenance of torpor induced by 5'-AMP, additional animals were injected with AOAA during torpor.During the torpor-like state induced by 5'-AMP, the expression of H2S- synthesizing enzymes in the kidneys and plasma levels of H2S were increased. Blockade of these enzymes inhibited the rise in the plasma level of H2S, but neither precluded torpor nor induced arousal. Remarkably, blockade of endogenous H2S production was associated with increased renal injury.Induction of a torpor-like state by 5'-AMP does not depend on H2S, although production of H2S seems to attenuate renal injury. Unraveling the mechanisms by which 5'-AMP reduces the metabolism without organ injury may allow optimization of current strategies to limit (hypothermic) IRI and improve outcome following organ transplantation, major cardiac and brain surgery.http://europepmc.org/articles/PMC4546583?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author George J Dugbartey
Hjalmar R Bouma
Arjen M Strijkstra
Ate S Boerema
Robert H Henning
spellingShingle George J Dugbartey
Hjalmar R Bouma
Arjen M Strijkstra
Ate S Boerema
Robert H Henning
Induction of a Torpor-Like State by 5'-AMP Does Not Depend on H2S Production.
PLoS ONE
author_facet George J Dugbartey
Hjalmar R Bouma
Arjen M Strijkstra
Ate S Boerema
Robert H Henning
author_sort George J Dugbartey
title Induction of a Torpor-Like State by 5'-AMP Does Not Depend on H2S Production.
title_short Induction of a Torpor-Like State by 5'-AMP Does Not Depend on H2S Production.
title_full Induction of a Torpor-Like State by 5'-AMP Does Not Depend on H2S Production.
title_fullStr Induction of a Torpor-Like State by 5'-AMP Does Not Depend on H2S Production.
title_full_unstemmed Induction of a Torpor-Like State by 5'-AMP Does Not Depend on H2S Production.
title_sort induction of a torpor-like state by 5'-amp does not depend on h2s production.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2015-01-01
description Therapeutic hypothermia is used to reduce ischemia/reperfusion injury (IRI) during organ transplantation and major surgery, but does not fully prevent organ injury. Interestingly, hibernating animals undergo repetitive periods of low body temperature called 'torpor' without signs of organ injury. Recently, we identified an essential role of hydrogen sulfide (H2S) in entrance into torpor and preservation of kidney integrity during hibernation. A torpor-like state can be induced pharmacologically by injecting 5'-Adenosine monophosphate (5'-AMP). The mechanism by which 5'-AMP leads to the induction of a torpor-like state, and the role of H2S herein, remains to be unraveled. Therefore, we investigated whether induction of a torpor-like state by 5-AMP depends on H2S production.To study the role of H2S on the induction of torpor, amino-oxyacetic acid (AOAA), a non-specific inhibitor of H2S, was administered before injection with 5'-AMP to block endogenous H2S production in Syrian hamster. To assess the role of H2S on maintenance of torpor induced by 5'-AMP, additional animals were injected with AOAA during torpor.During the torpor-like state induced by 5'-AMP, the expression of H2S- synthesizing enzymes in the kidneys and plasma levels of H2S were increased. Blockade of these enzymes inhibited the rise in the plasma level of H2S, but neither precluded torpor nor induced arousal. Remarkably, blockade of endogenous H2S production was associated with increased renal injury.Induction of a torpor-like state by 5'-AMP does not depend on H2S, although production of H2S seems to attenuate renal injury. Unraveling the mechanisms by which 5'-AMP reduces the metabolism without organ injury may allow optimization of current strategies to limit (hypothermic) IRI and improve outcome following organ transplantation, major cardiac and brain surgery.
url http://europepmc.org/articles/PMC4546583?pdf=render
work_keys_str_mv AT georgejdugbartey inductionofatorporlikestateby5ampdoesnotdependonh2sproduction
AT hjalmarrbouma inductionofatorporlikestateby5ampdoesnotdependonh2sproduction
AT arjenmstrijkstra inductionofatorporlikestateby5ampdoesnotdependonh2sproduction
AT atesboerema inductionofatorporlikestateby5ampdoesnotdependonh2sproduction
AT roberthhenning inductionofatorporlikestateby5ampdoesnotdependonh2sproduction
_version_ 1725130208168640512