Action potential of cardiac muscle

 

Myocardial Action Potential & Clinical Correlations

This high-yield summary integrates the electrophysiological phases with critical clinical correlates relevant for NEET PG examinations.


1. Action Potential Phases & Drug Targets

Phase Primary Ion Flux Clinical/Pharmacological Significance
Phase 0 Na+ Influx Target of Class I antiarrhythmics (e.g., Lidocaine, Flecainide).
Phase 2 Ca2+ Influx Target of CCBs (e.g., Verapamil); triggers contraction.
Phase 3 K+ Efflux Target of Class III antiarrhythmics (e.g., Amiodarone).
Phase 4 K+ Conductance Funny current ($I_f$) in nodes determines heart rate.

2. High-Yield Clinical Corrections & Pearls

  • Long QT Syndrome (LQTS):
    • Often caused by mutations in K+ channels (delaying Phase 3 repolarization).
    • Correction: Avoid medications that block K+ channels (e.g., macrolides, fluoroquinolones, Class III antiarrhythmics) to prevent Torsades de Pointes.
  • Hyperkalemia:
    • Increases resting membrane potential (Phase 4 becomes less negative), moving it closer to threshold.
    • Clinical effect: Initially increases excitability, but eventually inactivates Na+ channels, slowing conduction (peaked T waves, wide QRS).
  • Excitation-Contraction (E-C) Coupling:
    • In myocytes, Ca2+ entry is essential.
    • Clinical correction: Beta-blockers reduce cAMP, decreasing Ca2+ entry through L-type channels, thus reducing contractility (negative inotropy).

NEET PG Hint: Remember: The Effective Refractory Period (ERP) in cardiac muscle is prolonged by the plateau phase, which prevents tetanic contraction and allows for cardiac filling. Drugs that block K+ channels (Class III) specifically prolong the ERP, making them effective for rhythm control. For more high-yield cardiovascular protocols and free medical questions, visit mymedschool.org.