Key result
Cardiac sympathetic modulation shows promise for life-threatening ventricular arrhythmias but variations limit clinical translation.
Why the study?
Autonomic cardiac control remains poorly understood despite long study, and a gold-standard approach for cardiac sympathetic modulation against ventricular arrhythmias has not been established.
Cardiac sympathetic modulation represents a promising therapeutic strategy for life-threatening ventricular arrhythmias, though further refinement is needed to overcome interspecies and individual autonomic variations.
Cardiac sympathetic modulation is not ready for clinical use in ventricular arrhythmias; leaves open optimization to overcome individual and interspecies variations.
The nuance of autonomic cardiac control has been studied for more than 400 years, yet little is understood. This review aimed to provide a comprehensive overview of the current understanding, clinical implications, and ongoing studies of cardiac sympathetic modulation and its anti-ventricular arrhythmias' therapeutic potential. Molecular-level studies and clinical studies were reviewed to elucidate the gaps in knowledge and the possible future directions for these strategies to be translated into the clinical setting. Imbalanced sympathoexcitation and parasympathetic withdrawal destabilize cardiac electrophysiology and confer the development of ventricular arrhythmias. Therefore, the current strategy for rebalancing the autonomic system includes attenuating sympathoexcitation and increasing vagal tone. Multilevel targets of the cardiac neuraxis exist, and some have emerged as promising antiarrhythmic strategies. These interventions include pharmacological blockade, permanent cardiac sympathetic denervation, temporal cardiac sympathetic denervation, etc. The gold standard approach, however, has not been known. Although neuromodulatory strategies have been shown to be highly effective in several acute animal studies with very promising results, the individual and interspecies variation between human autonomic systems limits the progress in this young field. There is, however, still much room to refine the current neuromodulation therapy to meet the unmet need for life-threatening ventricular arrhythmias.
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Chung et al. (2023) conducted a review in Ventricular arrhythmias. Cardiac sympathetic modulation was evaluated. Cardiac sympathetic modulation strategies show promise for treating life-threatening ventricular arrhythmias, though individual and interspecies variations currently limit clinical translation.
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