Department of Oncology, Radiology and Clinical Immunology, Uppsala University Hospital, Uppsala, Sweden.
Transplantation. 2010 Jan 27;89(2):155-60. doi: 10.1097/TP.0b013e3181c9266c.
Pancreas oxygenation during cold storage has been established in islet isolation and transplantation to prevent ischemic tissue damage using perfluorodecalin (PFD) as hyperoxygen carrier. However, studies in humans and pigs provided conflicting results about the efficiency of PFD for pancreas oxygenation. The aim of this study was to compare PFD with a newly developed oxygen carrier composed of perfluorohexyloctane and polydimethylsiloxane 5 (F6H8S5) for long-term storage of human pancreata.
After 24-hr storage in preoxygenated PFD or F6H8S5, pancreata were processed using Liberase HI for pancreas dissociation and a Ficoll gradient for islet purification. Islet quality assessment was performed measuring glucose-stimulated insulin release, viability, islet ATP content, and posttransplant function in diabetic nude mice.
Compared with PFD, F6H8S5 significantly increased the intrapancreatic partial oxygen pressure and islet ATP content. This corresponded to an increase of islet yield, recovery after culture, glucose stimulation index, viability, and improved graft function in diabetic nude mice.
The present findings indicate clearly that F6H8S5 improves isolation outcome after prolonged ischemia compared with PFD. This observation seems to be related to the significant lipophilicity and almost pancreas-specific density of F6H8S5. Moreover, these characteristics facilitate pancreas shipment without using custom-made transport vessels as required for PFD.
在胰岛分离和移植中,使用全氟癸烷(PFD)作为过氧载体来为胰腺供氧,已被证实可在冷储存期间防止组织缺血性损伤。然而,在人体和猪的研究中,关于 PFD 为胰腺供氧的效率的研究结果相互矛盾。本研究旨在比较 PFD 与一种新开发的由全氟己基辛烷和聚二甲基硅氧烷 5(F6H8S5)组成的氧载体,用于长期储存人类胰腺。
在预氧合的 PFD 或 F6H8S5 中储存 24 小时后,使用 Liberase HI 进行胰腺分离,并使用 Ficoll 梯度进行胰岛纯化。通过测量葡萄糖刺激的胰岛素释放、活力、胰岛 ATP 含量以及在糖尿病裸鼠中的移植后功能来评估胰岛质量。
与 PFD 相比,F6H8S5 显著增加了胰腺内部分氧压和胰岛 ATP 含量。这对应于胰岛产量的增加、培养后的恢复、葡萄糖刺激指数、活力的增加以及糖尿病裸鼠中移植物功能的改善。
本研究结果清楚地表明,与 PFD 相比,F6H8S5 可改善长时间缺血后的胰岛分离效果。这种观察似乎与 F6H8S5 的显著亲脂性和几乎胰腺特异性密度有关。此外,这些特性还便于胰腺运输,而无需像 PFD 那样使用定制的运输容器。