Department of Surgery - Organ Donation and Transplantation, University Medical Center Groningen, University of Groningen, Groningen, The Netherlands.
Department of Radiology, University Medical Center Groningen, University of Groningen, Groningen, The Netherlands.
Artif Organs. 2023 Jan;47(1):105-116. doi: 10.1111/aor.14391. Epub 2022 Sep 7.
The shortage of donor organs for transplantation remains a worldwide problem. The utilization of suboptimal deceased donors enlarges the pool of potential organs, yet consequently, clinicians face the difficult decision of whether these sub-optimal organs are of sufficient quality for transplantation. Novel technologies could play a pivotal role in making pre-transplant organ assessment more objective and reliable.
Ex vivo normothermic machine perfusion (NMP) at temperatures around 35-37°C allows organ quality assessment in a near-physiological environment. Advanced magnetic resonance imaging (MRI) techniques convey unique information about an organ's structural and functional integrity. The concept of applying magnetic resonance imaging during renal normothermic machine perfusion is novel in both renal and radiological research and we have developed the first MRI-compatible NMP setup for human-sized kidneys.
We were able to obtain a detailed and real-time view of ongoing processes inside renal grafts during ex vivo perfusion. This new technique can visualize structural abnormalities, quantify regional flow distribution, renal metabolism, and local oxygen availability, and track the distribution of ex vivo administered cellular therapy.
This platform allows for advanced pre-transplant organ assessment, provides a new realistic tool for studies into renal physiology and metabolism, and may facilitate therapeutic tracing of pharmacological and cellular interventions to an isolated kidney.
供移植的器官短缺仍然是一个全球性问题。利用不太理想的已故捐献者扩大了潜在器官的来源,但这也导致临床医生面临一个艰难的决策,即这些不太理想的器官是否具有足够的质量进行移植。新技术可以在使移植前器官评估更加客观和可靠方面发挥关键作用。
在接近 35-37°C 的体温下进行体外常温机器灌注 (NMP) 可以在接近生理的环境中评估器官质量。先进的磁共振成像 (MRI) 技术提供了关于器官结构和功能完整性的独特信息。在肾脏常温机器灌注期间应用磁共振成像的概念在肾脏和放射学研究中都是新颖的,我们已经开发出了第一个用于人体大小肾脏的 MRI 兼容 NMP 设备。
我们能够在体外灌注过程中获得对肾移植物内部进行过程的详细和实时观察。这项新技术可以可视化结构异常、量化局部血流分布、肾脏代谢和局部氧可用性,并跟踪体外给予的细胞治疗的分布。
该平台允许进行先进的移植前器官评估,为肾脏生理学和代谢的研究提供了新的现实工具,并可能有助于对孤立肾脏的药理学和细胞干预进行治疗追踪。