Elucidation of the events underlying the cardiac response to both ischemia and reperfusion are essential in improving the treatment of myocardial infarction1 and cardiac surgical procedures that require aortic cross-clamping2. While in vivo models of ischemia reperfusion injury allow very useful endpoint analysis, they are not as effective for studying the functional effects of ischemia reperfusion injury acutely in real time. Additionally, in vivo ischemia reperfusion models generally produce significant variability in infarct size, and direct delivery of drug to the heart at the time of reperfusion is challenging. The utilization of a Langendorff isolated heart system for studying ischemia reperfusion injury allows for real-time functional assessment of pharmacological treatments, uniform area of infarcted tissue, and instantaneous delivery of drug directly to the myocardium.
First described by Oscar Langendorff in 18953, the Langendorff isolated heart is a robust model for studying ischemia reperfusion injury, having been used in ischemia reperfusion research for the last 40 years4,5. Here, some modifications are made to optimize the isolated heart for functional analysis. In situ cannulation of the aorta while the heart is beating ensures that the heart does not experience ischemic preconditioning, which would alter the results of ischemia reperfusion trials6. To facilitate this, a tracheotomy is performed, allowing ventilation and ensuring physiological stability of the rat during surgery. The heart is then attached to a glass water-jacketed spiral column through which Krebs Henseleit buffer is delivered via retrograde perfusion directly into the aorta. A saline-filled balloon is inserted into the left ventricle and attached to a pressure transducer, which allows for real time measurement of pressures from within the ventricle and calculation of multiple functional parameters. At the conclusion of the experiment, the heart is flushed with cold saline to arrest contraction and flash frozen in liquid nitrogen to enable downstream analysis of DNA, RNA and protein levels. Thus modified, the Langendorff perfused heart serves as an effective system for direct monitoring of the physiological effect of pharmacological interventions at any time acutely during the ischemia reperfusion injury.