Transplantation Center, Leiden University Medical Center, Leiden, the Netherlands.
Department of Surgery, University Medical Center Groningen, Groningen, the Netherlands.
Transpl Int. 2021 Aug;34(8):1397-1407. doi: 10.1111/tri.13927. Epub 2021 Jul 4.
Due to an increasing scarcity of pancreases with optimal donor characteristics, islet isolation centers utilize pancreases from extended criteria donors, such as from donation after circulatory death (DCD) donors, which are particularly susceptible to prolonged cold ischemia time (CIT). We hypothesized that hypothermic machine perfusion (HMP) can safely increase CIT. Five human DCD pancreases were subjected to 6 h of oxygenated HMP. Perfusion parameters, apoptosis, and edema were measured prior to islet isolation. Five human DBD pancreases were evaluated after static cold storage (SCS). Islet viability, and in vitro and in vivo functionality in diabetic mice were analyzed. Islets were isolated from HMP pancreases after 13.4 h [12.9-14.5] CIT and after 9.2 h [6.5-12.5] CIT from SCS pancreases. Histological analysis of the pancreatic tissue showed that HMP did not induce edema nor apoptosis. Islets maintained >90% viable during culture, and an appropriate in vitro and in vivo function in mice was demonstrated after HMP. The current study design does not permit to demonstrate that oxygenated HMP allows for cold ischemia extension; however, the successful isolation of functional islets from discarded human DCD pancreases after performing 6 h of oxygenated HMP indicates that oxygenated HMP may be a useful technology for better preservation of pancreases.
由于具有最佳供体特征的胰腺越来越稀缺,胰岛分离中心开始使用来自扩展标准供体的胰腺,例如来自心脏死亡后捐献(DCD)的供体,这些供体特别容易受到长时间冷缺血时间(CIT)的影响。我们假设低温机器灌注(HMP)可以安全地增加 CIT。5 个人体 DCD 胰腺接受了 6 小时的充氧 HMP。在胰岛分离之前测量灌注参数、细胞凋亡和水肿。5 个人体 DBD 胰腺在静态冷保存(SCS)后进行了评估。分析了胰岛的活力以及在糖尿病小鼠中的体外和体内功能。HMP 胰腺的 CIT 为 13.4 小时[12.9-14.5]后和 SCS 胰腺的 CIT 为 9.2 小时[6.5-12.5]后,可以从 HMP 胰腺中分离出胰岛。胰腺组织的组织学分析表明,HMP 不会引起水肿或细胞凋亡。胰岛在培养过程中保持>90%的活力,并且在 HMP 后在小鼠中证明了适当的体外和体内功能。目前的研究设计不允许证明充氧 HMP 允许延长冷缺血时间;然而,从进行了 6 小时充氧 HMP 的废弃人体 DCD 胰腺中成功分离出功能性胰岛表明,充氧 HMP 可能是一种有用的技术,可以更好地保存胰腺。