Key result
Ex vivo Langendorff setup enables reproducible intracardiac autonomic nervous system modulation in murine hearts.
This paper describes a reproducible ex vivo Langendorff methodology for studying the impact of the intracardiac autonomic nervous system on cardiac electrophysiology and arrhythmogenesis in murine hearts.
May enable mechanistic autonomic studies in isolated murine hearts; hypothesis-generating and requires validation before clinical translation.
century, the Langendorff ex vivo heart perfusion system continues to be a relevant tool for studying a broad spectrum of physiological, biochemical, morphological, and pharmacological parameters in centrally denervated hearts. Here, we describe a setup for the modulation of the intracardiac autonomic nervous system and the assessment of its influence on basic electrophysiology, arrhythmogenesis, and cyclic adenosine monophosphate (cAMP) dynamics. The intracardiac autonomic nervous system is modulated by the mechanical dissection of atrial fat pads-in which murine ganglia are located mainly-or by the usage of global as well as targeted pharmacological interventions. An octapolar electrophysiological catheter is introduced into the right atrium and the right ventricle, and epicardial-placed multi-electrode arrays (MEA) for high-resolution mapping are used to determine cardiac electrophysiology and arrhythmogenesis. Förster resonance energy transfer (FRET) imaging is performed for the real-time monitoring of cAMP levels in different cardiac regions. Neuromorphology is studied by means of antibody-based staining of whole hearts using neuronal markers to guide the identification and modulation of specific targets of the intracardiac autonomic nervous system in the performed studies. The ex vivo Langendorff setup allows for a high number of reproducible experiments in a short time. Nevertheless, the partly open nature of the setup (e.g., during MEA measurements) makes constant temperature control difficult and should be kept to a minimum. This described method makes it possible to analyze and modulate the intracardiac autonomic nervous system in decentralized hearts.
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Jungen et al. (2018) studied Cardiac electrophysiology and arrhythmogenesis (experimental model). Ex vivo Langendorff perfusion system with autonomic modulation was evaluated. The described ex vivo Langendorff setup enables the reproducible analysis and modulation of the intracardiac autonomic nervous system in decentralized murine hearts.
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