Goga Ledia, Perez-Abadia Gustavo, Pushpakumar Sathnur B, Cramer Daniel, Yan Jun, Todnem Nathan, Anderson Gary, Soni Chirag, Barker John, Maldonado Claudio
Department of Physiology and Biophysics.
Open Cardiovasc Med J. 2010 Jul 20;4:157-65. doi: 10.2174/1874192401004010157.
Ischemia and reperfusion of organs is an unavoidable consequence of transplantation. Inflammatory events associated with reperfusion injury are in part attributed to excessive complement activation. Systemic administration of complement inhibitors reduces reperfusion injury but leaves patients vulnerable to infection. Here, we report a novel therapeutic strategy that decorates cells with an anti-complement peptide. An analog of the C3 convertase inhibitor Compstatin (C) was synthesized with a hexahistidine (His(6)) tag to create C-His(6). To decorate cell membranes with C-His(6), fusogenic lipid vesicles (FLVs) were used to incorporate lipids with nickel (Ni(2+)) tethers into cell membranes, and these could then couple with C-His(6). Ni(2+) tether levels to display C-His(6) were modulated by changing FLV formulation, FLV incubation time and FLV levels. SKOV-3 cells decorated with C-His(6) effectively reduced complement deposition in a classical complement activation assay. We conclude that our therapeutic approach appears promising for local ex vivo treatment of transplanted organs to reduce complement-mediated reperfusion injury.
器官的缺血再灌注是移植不可避免的后果。与再灌注损伤相关的炎症事件部分归因于补体的过度激活。全身给予补体抑制剂可减轻再灌注损伤,但会使患者易受感染。在此,我们报告一种新的治疗策略,即用抗补体肽修饰细胞。用六组氨酸(His(6))标签合成C3转化酶抑制剂Compstatin(C)的类似物,以创建C-His(6)。为了用C-His(6)修饰细胞膜,使用融合脂质囊泡(FLV)将带有镍(Ni(2+))连接体的脂质整合到细胞膜中,然后这些脂质可以与C-His(6)结合。通过改变FLV配方、FLV孵育时间和FLV水平来调节展示C-His(6)的Ni(2+)连接体水平。在经典补体激活试验中,用C-His(6)修饰的SKOV-3细胞有效减少了补体沉积。我们得出结论,我们的治疗方法对于局部离体处理移植器官以减少补体介导的再灌注损伤似乎很有前景。