Key result
Inflation of an intraventricular balloon significantly reduced the incidence of ischaemia-induced ventricular fibrillation from 83% to 17% in rat isolated hearts with large ischaemic zones.
Why the study?
Does the use of an inflated intraventricular balloon alter the incidence of ventricular fibrillation during regional ischaemia in rat Langendorff hearts?
Does the use of an inflated intraventricular balloon alter the incidence of ventricular fibrillation during regional ischaemia in rat Langendorff hearts?
Absolute Event Rate: 17% vs 83%
p-value: p=<0.05
The use of an intraventricular balloon to measure contractility in isolated rat hearts confounds arrhythmia assessment by inducing localized ischaemia and reducing ventricular fibrillation incidence.
Intraventricular balloons confound VF assessment in isolated rat hearts; leaves open questions on optimal methods for arrhythmia studies.
BACKGROUND AND PURPOSE: In drug research using the rat Langendorff heart preparation, it is possible to study left ventricular (LV) contractility using an intraventricular balloon (IVB), and arrhythmogenesis during coronary ligation-induced regional ischaemia. Assessing both concurrently would halve animal requirements. We aimed to test the validity of this approach. EXPERIMENTAL APPROACH: The electrocardiogram (ECG) and LV function (IVB) were recorded during regional ischaemia of different extents in a randomized and blinded study. KEY RESULTS: IVB-induced proarrhythmia was anticipated, but in hearts with an ischaemic zone (IZ) made deliberately small, an inflated IVB reduced ischaemia-induced ventricular fibrillation (VF) incidence as a trend. Repeating studies in hearts with large IZs revealed the effect to be significant. There were no changes in QT interval or other variables that might explain the effect. Insertion of an IVB that was minimally inflated had no effect on any variable compared with 'no IVB' controls. The antiarrhythmic effect of verapamil (a positive control drug) was unaffected by IVB inflation. Removal of an inflated (but not a non-inflated) IVB caused a release of lactate commensurate with reperfusion of an endocardial/subendocardial layer of IVB-induced ischaemia. This was confirmed by intracellular (31) phosphorus ((31) P) nuclear magnetic resonance (NMR) spectroscopy. CONCLUSIONS AND IMPLICATIONS: IVB inflation does not inhibit VF suppression by a standard drug, but it has profound antiarrhythmic effects of its own, likely to be due to inflation-induced localized ischaemia. This means rhythm and contractility cannot be assessed concurrently by this approach, with implications for drug discovery and safety assessment.
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Wilder et al. (2015) studied Regional ischaemia-induced ventricular fibrillation (n=164). Intraventricular balloon (IVB) inflation vs. No IVB or minimally inflated IVB was evaluated on Incidence of ventricular fibrillation (VF) (p=<0.05). Inflation of an intraventricular balloon significantly reduced the incidence of ischaemia-induced ventricular fibrillation from 83% to 17% in rat isolated hearts with large ischaemic zones.
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