Pharmacological Approaches To Management Of Hypothermia-Induced Cardiac Dysfunction
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https://hdl.handle.net/10037/12217View/ Open
Thesis (PDF)
Paper I: Dietrichs, E. S., Schanche, T., Kondratiev, T., Gaustad, S. E., Sager, G. & Tveita, T. (2015). Negative inotropic effect of epinephrine in the presence of increased β-receptor. Also available in Cryobiology. 70(1):9-16. (PDF)
Paper II: Dietrichs, E. S., Kondratiev, T. & Tveita, T. (2014). Milrinone ameliorates cardiac mechanical dysfunction after hypothermia in an intact rat model. Also available in Cryobiology 2014, 69: 361–366. (PDF)
Paper III: Dietrichs, E. S., Håheim, B., Kondratiev, T., Sieck, G. & Tveita, T. (2014) Cardiovascular effects of levosimendan during rewarming from hypothermia in rat. Also available in Cryobiology 2014, 69:402–410. (PDF)
Date
2015-03-20Type
Doctoral thesisDoktorgradsavhandling
Author
Dietrichs, Erik SvebergAbstract
We performed randomized, controlled experimental studies in an intact rat model and in isolated rat cardiomyocytes with the following aims:
Paper I:
To investigate the effects of epinephrine during hypothermia and after rewarming and determine hypothermia-induced effects on in vivo and in vitro cardiac β-receptor sensitivity.
Paper II:
To describe hemodynamic responses to the phosphodiesterase 3 (PDE3) inhibitor milrinone when compared to saline infusion during rewarming from deep, stable hypothermia (15°C).
Paper III:
To describe hemodynamic response and phosphorylation of cardiac troponin I (cTnI) during rewarming from deep, stable hypothermia with use of the calcium sensitizer and PDE3 inhibitor levosimendan, compared to animals given placebo.
Main results and conclusions:
β-receptor sensitivity is increased in hypothermia (15°C) compared to normothermia (37°C) (paper I), but administering epinephrine at 15°C had adverse effects, expressed with increased afterload and negative inotropy. Cardiac dysfunction during rewarming from stable hypothermia is however ameliorated by PDE3 inhibition alone (paper I) and combined with calcium sensitizing (paper III). PDE3 inhibition through levosimendan possesses the ability to increase cTnI phosphorylation after rewarming from stable hypothermia (paper III). Treatment of hypothermia-induced cardiac dysfunction is therefore better achieved through intracellular strategies like PDE3 inhibition and calcium sensitizing than β-receptor stimulation.
Publisher
UiT The Arctic University of NorwayUiT Norges arktiske universitet
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