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The carbon monoxide prodrug oCOm-21 increases Ca2+ sensitivity of the cardiac myofilament
Journal article   Open access   Peer reviewed

The carbon monoxide prodrug oCOm-21 increases Ca2+ sensitivity of the cardiac myofilament

Fergus M. Payne, Samantha Nie, Gary M. Diffee, Gerard T. Wilkins, David S. Larsen, Joanne C. Harrison, James C. Baldi and Ivan A. Sammut
Physiological reports, Vol.12(6), e15974
16/03/2024
Handle:
https://hdl.handle.net/10523/23891

Abstract

calcium sensitivity carbon monoxide heme myofilament
Patients undergoing cardiopulmonary bypass procedures require inotropic support to improve hemodynamic function and cardiac output. Current inotropes such as dobutamine, can promote arrhythmias, prompting a demand for improved inotropes with little effect on intracellular Ca2+ flux. Low-dose carbon monoxide (CO) induces inotropic effects in perfused hearts. Using the CO-releasing pro-drug, oCOm-21, we investigated if this inotropic effect results from an increase in myofilament Ca2+ sensitivity. Male Sprague Dawley rat left ventricular cardiomyocytes were permeabilized, and myofilament force was measured as a function of -log [Ca2+] (pCa) in the range of 9.0-4.5 under five conditions: vehicle, oCOm-21, the oCOm-21 control BP-21, and levosimendan, (9 cells/group). Ca2+ sensitivity was assessed by the Ca2+ concentration at which 50% of maximal force is produced (pCa(50)). oCOm-21, but not BP-21 significantly increased pCa(50) compared to vehicle, respectively (pCa(50) 5.52 vs. 5.47 vs. 5.44; p < 0.05). No change in myofilament phosphorylation was seen after oCOm-21 treatment. Pretreatment of cardiomyocytes with the heme scavenger hemopexin, abolished the Ca2+ sensitizing effect of oCOm-21. These results support the hypothesis that oCOm-21-derived CO increases myofilament Ca2+ sensitivity through a heme-dependent mechanism but not by phosphorylation. Further analyses will confirm if this Ca2+ sensitizing effect occurs in an intact heart.
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Published (Version of record) Open Access CC BY V4.0
url
https://doi.org/10.14814/phy2.15974View
Published (Version of record) Open CC BY V4.0

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