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Appropriate Donor Size for Porcine Liver Xenotransplant

机译:猪肝异种移植的合适供体大小

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Objectives: Owing to an imbalance between demand and supply, which is more prominent in pediatric transplant, every year more patients lose their lives on waiting lists. In addition to the use of deceased-donor split and living-donor organs, xenotransplant could provide a solution if associated problems, such as immunologic and physiologic ones, are solved. This study sought to analyze the surgical aspects for liver xenotransplant in a porcine model. Materials and Methods: Landrace pigs (n=22, 23 to 37 kg) underwent a laparotomy under general anesthesia. The hepatic hilum was prepared and the common bile ducts, common hepatic artery, portal vein, supra- and infrahepatic inferior vena cava were identified. The length and diameter of each vessel and bile duct and the weight of the liver were measured. Results: Pearson tests showed a clear correlation between the increase of the pigs’ weight and the livers’ weight, and the length of the vessels and the bile ducts. We did not find a clear correlation between the increase of the pigs’ liver weight and the diameters of the vessels and the bile duct. Conclusions: As the first reporting, this study on xenotransplants from the surgical point of view, we postulate that it could be possible to estimate the size of the liver and the proper length of its vessels and bile duct by weighing only the pigs. It was not feasible to match the diameter of mentioned structures by the livers’ weight. However, the weight of pig’s liver as well as vascular anatomy of pigs appeared to be suitable alternative for the human liver.
机译:目标:由于供需之间的不平衡(这在儿科移植中尤为突出),每年都有更多的患者在等待名单上丧生。除了使用已故的供体分裂和活体供体器官外,异种移植还可以解决相关的问题,例如免疫和生理问题。这项研究试图分析猪模型中肝异种移植的手术方面。材料和方法:在全麻下对大白猪(n = 22,23至37 kg)进行剖腹手术。准备肝门,并鉴定胆总管,肝总动脉,门静脉,肝上下腔静脉。测量每个血管和胆管的长度和直径以及肝脏的重量。结果:Pearson测试显示,猪的体重和肝脏的重量增加与血管长度和胆管长度之间存在明显的相关性。我们没有发现猪的肝脏重量增加与血管直径和胆管直径之间存在明显的相关性。结论:作为第一个报道,从外科手术的角度对异种移植进行的研究,我们假设仅通过称重猪就可以估计肝脏的大小及其适当的血管和胆管长度。将上述结构的直径与肝脏的重量相匹配是不可行的。但是,猪肝脏的重量以及猪的血管解剖结构似乎是替代人类肝脏的合适方法。

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