Hørsdal Oskar Kjærgaard, Frederiksen Peter Hartmund, Helgestad Ole Kristian Lerche, Ravn Hanne Berg, Møller Jacob Eifer, Wiggers Henrik, Nielsen Roni Ranghøj, Gopalasingam Nigopan, Berg-Hansen Kristoffer
Department of Clinical Medicine, Aarhus University, Aarhus, Denmark.
Department of Cardiology, Aarhus University Hospital, Palle Juul Jensens Boulevard 99, 8200, Aarhus N, Denmark.
J Cardiovasc Transl Res. 2025 Jun 24. doi: 10.1007/s12265-025-10647-6.
The acute pathophysiological changes after myocardial ischemia complicated by cardiogenic shock (CS) remain poorly defined, especially regarding compensatory mechanisms and myocardial mitochondrial function. We investigated immediate cardiovascular and mitochondrial effects in a porcine model of ischemic CS. CS was induced in 32 Danish Landrace pigs (60 kg) via repeated microembolization of the left coronary artery until a 30% reduction in cardiac output (CO) or mixed venous saturation. Monitoring included pulmonary artery and left ventricular pressure-volume catheters, with analysis of endomyocardial biopsies and arterial, mixed venous, and coronary sinus blood samples. CO deteriorated promptly due to decreased stroke volume. Contractility declined, and afterload increased, causing rapid ventriculo-arterial decoupling. Forward flow parameters were compromised prior to pressure-parameters. Diastolic function was impaired and mitochondrial damage was observed. CS rapidly impairs LV hemodynamic and mitochondrial function, highlighting the importance of monitoring forward flow and targeting mitochondrial function in treatment.
心肌缺血合并心源性休克(CS)后的急性病理生理变化仍未明确,尤其是在代偿机制和心肌线粒体功能方面。我们在缺血性CS猪模型中研究了即刻的心血管和线粒体效应。通过反复微栓塞左冠状动脉,在32头丹麦长白猪(60千克)中诱导CS,直至心输出量(CO)或混合静脉饱和度降低30%。监测包括肺动脉和左心室压力-容积导管,同时分析心内膜活检以及动脉、混合静脉和冠状窦血样。由于每搏量减少,CO迅速恶化。收缩力下降,后负荷增加,导致心室-动脉迅速解耦。在压力参数出现异常之前,前向血流参数就已受损。舒张功能受损,并观察到线粒体损伤。CS迅速损害左心室血流动力学和线粒体功能,突出了在治疗中监测前向血流和针对线粒体功能的重要性。