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Published on: November 11, 2022
Impact of Administration Time and Kv7 Subchannels on the Cardioprotective Efficacy of Kv7 Channel Inhibition
Jan Hansen1,2, Jacob Johnsen1,2, Jan Møller Nielsen1,2
1Department of Cardiology, Aarhus University Hospital, Aarhus, Denmark.
Purpose:
The mechanism of cardioprotection by Kv7.1-5 (KCNQ1-5) channels inhibition by XE991 is unclear. We examined the impact of administration time on the cardioprotective efficacy of XE991, the involvement of key pro-survival kinases, and the importance of the Kv7 subchannels.
Methods:
Isolated perfused rat hearts were divided into five groups: 1) vehicle, 2) pre-, 3) post- or 4) pre- and post-ischemic administration of XE991 or 5) chromanol 293B (Kv7.1 inhibitor) followed by infarct size quantification. HL-1 cells undergoing simulated ischemia/reperfusion were exposed to either a) vehicle, b) pre-, c) per-, d) post-ischemic administration of XE991 or pre-, per- and post-ischemic administration of e) XE991, f) Chromanol 293B or g) HMR1556 (Kv7.1 inhibitor). HL-1 cell injury was evaluated by propidium iodide/Hoechst staining. Pro-survival kinase activation of Akt, Erk and STAT3 in XE991-mediated HL-1 cell protection was evaluated using phosphokinase inhibitors. Kv7 subtype expression was examined by RT-PCR and qPCR.
Results:
XE991, but not Chromanol 293B, reduced infarct size and improved hemodynamic recovery in all isolated heart groups. XE991 protected HL-1 cells when administered during simulated ischemia. Minor activation of the survival kinases was observed in cells exposed to XE991 but pharmacological inhibition of kinase activation did not reduce XE991-mediated protection. Kv7 subchannels 1-5 were all present in rat hearts but predominately Kv7.1 and Kv7.4 were present in HL-1 cells and selective Kv7.1 did not reduce ischemia/reperfusion injury.
Conclusion:
The cardioprotective efficacy of XE991 seems to depend on its presence during ischemia and early reperfusion and do not rely on RISK (p-Akt and p-Erk) and SAFE (p-STAT3) pathway activation. The protective effect of XE991 seems mainly mediated through the Kv7.4 subchannel.
Insights
The Kv7 channel inhibitor XE991 protects heart cells when administered during ischemia and early reperfusion. This cardioprotection is primarily mediated by the Kv7.4 subchannel, not pro-survival kinases.
Area of Science:
- Cardiovascular Pharmacology
- Ion Channel Physiology
Background:
- Kv7.1-5 (KCNQ1-5) channels play a role in cardiac function.
- The mechanism of cardioprotection by the Kv7 inhibitor XE991 is not fully understood.
- Investigating the timing of XE991 administration is crucial for understanding its therapeutic potential.
Purpose of the Study:
- To determine the optimal administration time for XE991 to achieve cardioprotection.
- To elucidate the role of pro-survival kinases (Akt, Erk, STAT3) in XE991-mediated cardioprotection.
- To identify the specific Kv7 subchannels involved in XE991's protective effects.
Main Methods:
- Isolated perfused rat hearts and HL-1 cells subjected to simulated ischemia/reperfusion.
- Administration of XE991 and Kv7.1 inhibitors (Chromanol 293B, HMR1556) at different time points.
- Assessment of infarct size, cell injury, pro-survival kinase activation, and Kv7 subchannel expression.
Main Results:
- XE991 significantly reduced infarct size and improved cardiac function in isolated hearts, irrespective of administration timing.
- XE991 demonstrated cardioprotective effects in HL-1 cells when present during simulated ischemia.
- Pro-survival kinase activation was minimally affected by XE991, and their inhibition did not alter protection; Kv7.4 was identified as the primary mediating subchannel in HL-1 cells.
Conclusions:
- Cardioprotection by XE991 is dependent on its presence during ischemia and early reperfusion.
- XE991-mediated cardioprotection does not rely on RISK (p-Akt, p-Erk) or SAFE (p-STAT3) pathways.
- The Kv7.4 subchannel is the principal mediator of XE991's protective effects against ischemia/reperfusion injury.
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