Treatment of Children Suffering from an Inborn Error of Mitochondrial Fatty Acid p-Oxidation with Cardiac Glycosides and Antiarrhythmics During Acute Metabolic Decompensation
Birutė Skerlienė, Odeta Kinčinienė, Willy Lehnert
Summary
Frequently primary or secondary mitochondrial fatty acid ß-oxidation (FAO) defects are causing acute metabolic decompensation. Inborn errors of fatty acid metabolism are also important causes of reversible cardiomyopathy in infancy. Insufficient mitochondrial ß-oxydation of the main substrates suppress the function of myocardium. Long-chain acyl- carnitines and other pathol ogic metabolites cause damage of mitochondrial membranes, disturb action of the ATP-de- pendent ion pumps and the corresponding ionic equilibrium, inducing thereby cardiac arrhythmia and destruction of cardiomyocytes. Etiopathogenesis of heart failure and arrhythmias in infants with inborn FAO defects, the pharmacodynamic characteristics of cardiac glycosides (CG) and some antiarrhythmics (AA) as well as cor- reiafion of their side effects with injured mitochondrial FAO is discussed, presenting a clinical cases as an example. The cardiomyopathy in infant was demonstrated to be reversible as a result of the suspition of the inborn FAO deiect and the homeostasis correction in due time. The unreversible myocardium damage possibly aggravated by CG and amiodarone was demonstrated in infant with the ho meo sta sis al ter ations not corrected in prompt way. Metabolic distur bances in cardiomyocytes can be worsened by CG and AA during acute decompensation. In some cases uncommon side effects of CG and AA can be caused by an undiagnosed FAO defect.
Keywords: cardiomyopathies, myocarditis, heart failure, arrhythmia, cari diac glycosides, amiodarone, mitochondria, ion channels, fatty acid oxidation, inborn defects.

