National Heart and Lung Institute, Imperial College, Harefield Hospital, Harefield, Middlesex UB9 6JH, UK.
Hum Immunol. 2013 Nov;74(11):1459-62. doi: 10.1016/j.humimm.2013.06.006. Epub 2013 Jun 15.
Production of anti-vimentin antibodies (AVA) after solid organ transplantation are common. Although classically thought to be expressed mainly within the cytosol, recent evidence demonstrates that extracellular or cell surface expression of vimentin is not unusual. This review examines the evidence to assess whether AVA contribute to allograft pathology. Clinical studies suggest that AVA are associated with cardiac allograft vasculopathy in heart transplant recipients. Studies in non-human primates confirm that production of AVA after renal and heart transplantation are not inhibited by Cyclosporine. Experimental studies have demonstrated that mice pre-immunised with vimentin undergo accelerated acute rejection and vascular intimal occlusion of cardiac allografts. Adoptive transfer of hyperimmune sera containing AVA into B-cell-knock-out mice caused accelerated rejection of allografted hearts, this is clear evidence that antibodies to vimentin accelerate rejection. AVA act in concert with the alloimmune response and AVA do not damage syngeneic or native heart allografts. Confocal microscopy of allografted organs in vimentin immunised mice shows extensive expression of vimentin on endothelial cells, apoptotic leukocytes and platelet/leukocyte conjugates, co-localising with C4d. One explanation for the ability of AVA to accelerate rejection would be fixation of complement within the graft and subsequent pro-inflammatory effects; there may also be interactions with platelets within the vasculature.
实体器官移植后产生抗波形蛋白抗体(AVA)是很常见的。虽然经典理论认为波形蛋白主要表达在细胞质内,但最近的证据表明,波形蛋白的细胞外或细胞表面表达并不罕见。这篇综述考察了证据,以评估 AVA 是否会导致移植物病理学。临床研究表明,AVA 与心脏移植受者的心脏同种异体血管病有关。非人类灵长类动物的研究证实,肾和心脏移植后产生的 AVA 不受环孢素抑制。实验研究表明,预先用波形蛋白免疫的小鼠会加速发生急性排斥反应和心脏同种异体移植物的血管内膜闭塞。将含有 AVA 的高免疫血清过继转移到 B 细胞敲除小鼠中,会导致同种异体心脏移植物的排斥加速,这清楚地表明抗波形蛋白抗体加速了排斥反应。AVA 与同种免疫反应协同作用,AVA 不会损伤同基因或天然的心脏移植物。在波形蛋白免疫小鼠的同种异体移植器官的共聚焦显微镜检查中,内皮细胞、凋亡的白细胞和血小板/白细胞复合物上广泛表达波形蛋白,与 C4d 共定位。AVA 加速排斥反应的能力的一种解释是补体在移植物内固定,随后产生促炎作用;也可能与血管中的血小板相互作用。