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A comparison of LKB1/AMPK/mTOR metabolic axis response to global ischaemia in brain, heart, liver and kidney in a rat model of cardiac arrest.

Shohreh MajdJohn H T PowerTimothy K ChatawayHugh J M Grantham
Published in: BMC cell biology (2018)
Together our results suggest that early AMPK dephosphorylation followed by late hyperphosphorylation is the strategy of brain and kidney in response to ischaemia. While the liver seemed to get benefit of its AMPK system in early ischameia, possibly to stabilize ATP, the level of LKB1/AMPK activity in heart remained unchanged in short ischaemic episodes up to 8 min. Further researches must be conducted to elucidate the molecular mechanism underlying LKB1/AMPK response to oxygen supply.
Keyphrases
  • skeletal muscle
  • cardiac arrest
  • protein kinase
  • heart failure
  • white matter
  • resting state
  • cardiopulmonary resuscitation
  • cell proliferation
  • functional connectivity
  • cerebral ischemia