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Published on: July 27, 2022
Cardiac arrhythmias after renal I/R depend on IL-1β
Maria Micaela Lopez Alarcon1, Mayra Trentin-Sonoda1, Karine Panico1
1Center of Natural and Human Sciences (CCNH), Universidade Federal do ABC, Santo André, SP, Brazil.
Aims:
Cardiac arrhythmias are one of the most important remote complications after kidney injury. Renal ischemia reperfusion (I/R) is a major cause of acute renal injury predisposing to several remote dysfunctions, including cardiac electrical disturbance. Since IL-1β production dependent on NLRP3 represents a link between tissue malfunctioning and cardiac arrhythmias, here we tested the hypothesis that longer ventricular repolarization and arrhythmias after renal I/R depend on this innate immunity sensor.
Methods And Results:
Nlrp3-/- and Casp1-/- mice reacted to renal I/R with no increase in plasma IL-1β, different from WT (wild-type) I/R. A prolonged QJ interval and an increased susceptibility to ventricular arrhythmias were found after I/R compared to Sham controls in wild-type mice at 15 days post-perfusion, but not in Nlrp3-/- or CASP1-/- I/R, indicating that the absence of NLRP3 or CASP1 totally prevented longer QJ interval after renal I/R. In contrast with WT mice, we found no renal atrophy and no renal dysfunction in Nlrp3-/- and Casp1-/- mice after renal I/R. Depletion of macrophages in vivo after I/R and a day before IL-1β peak (at 7 days post-perfusion) totally prevented prolongation of QJ interval, suggesting that macrophages might participate as sensors of tissue injury. Moreover, treatment of I/R-WT mice with IL-1r antagonist (IL-1ra) from 8 to 15 days post perfusion did not interfere with renal function, but reversed QJ prolongation, prevented the increase in susceptibility to ventricular arrhythmias and rescued a close to normal duration and amplitude of calcium transient.
Conclusion:
Taken together, these results corroborate the hypothesis that IL-1β is produced after sensing renal injury through NRLP3-CASP1, and IL-1β on its turn triggers longer ventricular repolarization and increase susceptibility to cardiac arrhythmias. Still, they offer a therapeutic approach to treat cardiac arrhythmias that arise after renal I/R.
Insights
Kidney injury triggers cardiac arrhythmias via the NLRP3-inflammasome pathway, leading to increased IL-1β. Blocking this pathway prevents heart rhythm disturbances and ventricular arrhythmias after renal ischemia reperfusion.
Area of Science:
- Cardiology
- Immunology
- Nephrology
Background:
- Kidney injury, particularly renal ischemia reperfusion (I/R), is a significant cause of remote complications, including cardiac electrical disturbances.
- Interleukin-1 beta (IL-1β) production, regulated by the NLRP3 inflammasome, is implicated as a link between tissue injury and cardiac arrhythmias.
Purpose of the Study:
- To investigate the role of the NLRP3 inflammasome in mediating cardiac electrical abnormalities following renal I/R.
- To test the hypothesis that prolonged ventricular repolarization and arrhythmias after renal I/R are dependent on the NLRP3 innate immunity sensor.
Main Methods:
- Utilized wild-type (WT), Nlrp3-/-, and Casp1-/- mice subjected to renal I/R or sham procedures.
- Assessed plasma IL-1β levels, QJ interval duration, susceptibility to ventricular arrhythmias, renal function, and macrophage involvement post-I/R.
- Administered IL-1 receptor antagonist (IL-1ra) to I/R-WT mice to evaluate its therapeutic potential.
Main Results:
- Renal I/R in WT mice led to increased plasma IL-1β, prolonged QJ interval, and heightened ventricular arrhythmia susceptibility, unlike in Nlrp3-/- or Casp1-/- mice.
- Absence of NLRP3 or CASP1 prevented cardiac electrical changes and renal dysfunction/atrophy post-I/R.
- Macrophage depletion and IL-1ra treatment reversed QJ prolongation and reduced arrhythmia susceptibility, indicating a role for macrophages and IL-1β signaling.
Conclusions:
- The NLRP3-CASP1 inflammasome activation in response to renal injury drives IL-1β production.
- IL-1β signaling mediates prolonged ventricular repolarization and increased susceptibility to cardiac arrhythmias after renal I/R.
- Targeting the NLRP3-inflammasome pathway and IL-1β offers a potential therapeutic strategy for post-renal I/R cardiac arrhythmias.
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