Rogers Michael P, Fishberger Gregory, Martini Nick, Baldwin Margaret, Wang Lei, Chen Wei, Liu Ruisheng, Lozonschi Lucian
Division of Cardiothoracic Surgery, Department of Surgery, University of South Florida Morsani College of Medicine, Tampa, FL, USA.
Department of Comparative Medicine, University of South Florida, Tampa, FL, USA.
World J Cardiovasc Surg. 2022 Sep;12(9):200-206. doi: 10.4236/wjcs.2022.129017.
The porcine heart bears the best resemblance to the human heart and remains the preferred preclinical model for anatomical, physiological, and medical device studies. In an effort to study phenomena related strictly to ischemia reperfusion and donor preservation protocols, it is essential to avoid the immune responses related to allotransplantation. Orthotopic auto-transplantation is a unique strategy to the field of cardiac transplantation for experimentation. Nevertheless, auto-transplantation carries its own technical challenges related to insufficient length of the great vessels that are to be transected and re-anastomosed.
A novel method for orthotopic cardiac auto-transplantation in the porcine model was developed and was described herein. Porcine models were used for experimentation of a novel device to study ischemia reperfusion injury.
A total of five porcine models were used for experimentation of a novel device to mitigate ischemia reperfusion injury and determine effects of donor preservation. Modifications to routine cardiac transplantation protocols to allow for successful auto-transplantation are described.
Orthotopic cardiac auto-transplantation in the porcine model is a plausible and technically feasible method for reliable study of ischemia reperfusion injury and donor preservation protocols. Here, we describe methods for both direct orthotopic porcine cardiac auto-transplantations as well as a simplified protocol that can be substituted for full surgical auto-transplantation for the studies of preservation of donor hearts.
猪心脏与人类心脏最为相似,仍是解剖学、生理学及医疗器械研究的首选临床前模型。为了严格研究与缺血再灌注及供体保存方案相关的现象,避免同种异体移植相关的免疫反应至关重要。原位自体移植是心脏移植领域用于实验的独特策略。然而,自体移植本身存在技术挑战,即要横断并重新吻合的大血管长度不足。
开发了一种猪模型原位心脏自体移植的新方法,并在此进行描述。猪模型用于一种研究缺血再灌注损伤的新型装置的实验。
总共使用了五个猪模型来实验一种减轻缺血再灌注损伤并确定供体保存效果的新型装置。描述了对常规心脏移植方案的修改,以实现成功的自体移植。
猪模型原位心脏自体移植是可靠研究缺血再灌注损伤和供体保存方案的合理且技术可行的方法。在此,我们描述了直接原位猪心脏自体移植的方法以及一种简化方案,该方案可替代全手术自体移植用于供体心脏保存的研究。