AI Article Synopsis

  • Ventricular fibrillation (VF) is a major cause of sudden cardiac death, especially in older individuals, but the underlying mechanisms remain unclear, hindering targeted treatments.
  • Research shows that stress kinases p38γ and p38δ are activated in both aging mice and those with conditions that lead to arrhythmias, increasing vulnerability to VF during stress.
  • These kinases disrupt crucial calcium channels, leading to impaired calcium handling in heart cells, which results in premature heartbeats and greater risk of VF; blocking this pathway shows promise for preventing VF and reducing its duration in aged subjects.

Article Abstract

Ventricular fibrillation (VF) is a leading immediate cause of sudden cardiac death. There is a strong association between aging and VF, although the mechanisms are unclear, limiting the availability of targeted therapeutic interventions. Here we found that the stress kinases p38γ and p38δ are activated in the ventricles of old mice and mice with genetic or drug-induced arrhythmogenic conditions. We discovered that, upon activation, p38γ and p38δ cooperatively increase the susceptibility to stress-induced VF. Mechanistically, our data indicate that activated p38γ and p38δ phosphorylate ryanodine receptor 2 (RyR2) disrupt Kv4.3 channel localization, promoting sarcoplasmic reticulum calcium leak, I current reduction and action potential duration prolongation. In turn, this led to aberrant intracellular calcium handling, premature ventricular complexes and enhanced susceptibility to VF. Blocking this pathway protected genetically modified animals from VF development and reduced the VF duration in aged animals. These results indicate that p38γ and p38δ are a potential therapeutic target for sustained VF prevention.

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Source
http://dx.doi.org/10.1038/s44161-023-00368-xDOI Listing

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