Technology Department, Beta-O2 Technologies, Rosh HaAyin, Israel.
PLoS One. 2013 Aug 1;8(8):e70150. doi: 10.1371/journal.pone.0070150. Print 2013.
Developing a device that protects xenogeneic islets to allow treatment and potentially cure of diabetes in large mammals has been a major challenge in the past decade. Using xenogeneic islets for transplantation is required in light of donor shortage and the large number of diabetic patients that qualify for islet transplantation. Until now, however, host immunoreactivity against the xenogeneic graft has been a major drawback for the use of porcine islets. Our study demonstrates the applicability of a novel immunoprotective membrane that allows successful xenotransplantation of rat islets in diabetic minipigs without immunosuppressive therapy. Rat pancreatic islets were encapsulated in highly purified alginate and integrated into a plastic macrochamber covered by a poly-membrane for subcutaneous transplantation. Diabetic Sinclair pigs were transplanted and followed for up to 90 days. We demonstrated a persistent graft function and restoration of normoglycemia without the need for immunosuppressive therapy. This concept could potentially offer an attractive strategy for a more widespread islet replacement therapy that would restore endogenous insulin secretion in diabetic patients without the need for immunosuppressive drugs and may even open up an avenue for safe utilization of xenogeneic islet donors.
在过去的十年中,开发一种能够保护异种胰岛的设备,以允许在大型哺乳动物中进行治疗和潜在治愈糖尿病,一直是一个主要挑战。鉴于供体短缺和大量符合胰岛移植条件的糖尿病患者,使用异种胰岛进行移植是必要的。然而,到目前为止,宿主对异种移植物的免疫反应一直是使用猪胰岛的主要障碍。我们的研究证明了一种新型免疫保护膜的适用性,该膜允许在没有免疫抑制治疗的情况下,成功地将大鼠胰岛异种移植到糖尿病小型猪中。大鼠胰岛被包裹在高度纯化的藻酸盐中,并整合到一个塑料大室中,该大室由一层多膜覆盖,用于皮下移植。糖尿病 Sinclair 猪接受了移植,并进行了长达 90 天的随访。我们证明了持续的移植物功能和血糖正常化的恢复,而无需免疫抑制治疗。这一概念可能为更广泛的胰岛替代治疗提供一种有吸引力的策略,该治疗无需免疫抑制药物即可恢复糖尿病患者的内源性胰岛素分泌,甚至可能为安全利用异种胰岛供体开辟一条途径。