Șerban Alexandru, Năstase Gabriel, Beșchea George-Andrei, Câmpean Ștefan-Ioan, Fetecău Cătălin, Popescu Irinel, Botea Florin, Neacșu Ion
Politechnica University of Bucharest, Bucharest, Romania.
Department of Building Services, Transilvania University of Brasov, Brasov, Romania.
Front Bioeng Biotechnol. 2024 Mar 7;12:1335638. doi: 10.3389/fbioe.2024.1335638. eCollection 2024.
This paper presents the design and prototype of a constant volume (isochoric) vessel that can be used for the preservation of large organs in a supercooled state. This prototype is a preliminary version of a more advanced design. The device consists of a cooling bath operated by a mechanical vapor compression refrigeration unit and an isochoric chamber made of stainless steel. The preservation of organs using supercooling technology in an isochoric chamber requires a continuous temperature and pressure monitoring. While the device was initially designed for pig liver experiments, its innovative design and preservation capabilities suggest potential applications for preserving other organs as well. The isochoric reactor may be used to accommodate a variety of organ types, opening the door for further research into its multi-organ preservation capabilities. All the design details are presented in this study with the purpose of encouraging researchers in the field to build their own devices, and by this to improve the design. We chose to design the device for isochoric supercooling as the method of preservation to avoid the ice formation.
本文介绍了一种恒容(等容)容器的设计及原型,该容器可用于在过冷状态下保存大型器官。此原型是更先进设计的初步版本。该装置由一个由机械蒸汽压缩制冷单元操作的冷却浴和一个由不锈钢制成的等容腔组成。在等容腔内使用过冷技术保存器官需要持续监测温度和压力。虽然该装置最初是为猪肝实验设计的,但其创新的设计和保存能力表明它也有保存其他器官的潜在应用。等容反应器可用于容纳多种器官类型,为进一步研究其多器官保存能力打开了大门。本研究展示了所有设计细节,目的是鼓励该领域的研究人员制造自己的装置,从而改进设计。我们选择设计用于等容过冷的装置作为保存方法,以避免结冰。