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首页> 外文期刊>Cell transplantation >Pancreatic Islet basement membrane loss and remodeling after mouse islet isolation and transplantation: Impact for allograft rejection
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Pancreatic Islet basement membrane loss and remodeling after mouse islet isolation and transplantation: Impact for allograft rejection

机译:胰岛分离和移植后胰岛基底膜丢失和重塑:同种异体移植排斥的影响

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The isolation of islets by collagenase digestion can cause damage and impact the efficiency of islet engraftment and function. In this study, we assessed the basement membranes (BMs) of mouse pancreatic islets as a molecular biomarker for islet integrity, damage after isolation, and islet repair in vitro as well as in the absence or presence of an immune response after transplantation. Immunofluorescence staining of BM matrix proteins and the endothelial cell marker platelet endothelial cell adhesion molecule-1 (PECAM-1) was performed on pancreatic islets in situ, isolated islets, islets cultured for 4 days, and islet grafts at 3-10 days posttransplantation. Flow cytometry was used to investigate the expression of BM matrix proteins in isolated islet β-cells. The islet BM, consisting of collagen type IV and components of Engelbreth-Holm-Swarm (EHS) tumor laminin 111, laminin α2, nidogen-2, and perlecan in pancreatic islets in situ, was completely lost during islet isolation. It was not reestablished during culture for 4 days. Peri- and intraislet BM restoration was identified after islet isotransplantation and coincided with the migration pattern of PECAM-1+vascular endothelial cells (VECs). After islet allotransplantation, the restoration of VEC-derived peri-islet BMs was initiated but did not lead to the formation of the intraislet vasculature. Instead, an abnormally enlarged peri-islet vasculature developed, coinciding with islet allograft rejection. The islet BM is a sensitive biomarker of islet damage resulting from enzymatic isolation and of islet repair after transplantation. After transplantation, remodeling of both peri- and intraislet BMs restores β-cell-matrix attachment, a recognized requirement for β-cell survival, for isografts but not for allografts. Preventing isolation-induced islet BM damage would be expected to preserve the intrinsic barrier function of islet BMs, thereby influencing both the effector mechanisms required for allograft rejection and the antirejection strategies needed for allograft survival.
机译:通过胶原酶消化分离胰岛会引起损害并影响胰岛移植的效率和功能。在这项研究中,我们评估了小鼠胰岛的基底膜(BMs),作为胰岛完整性,分离后的损伤和体外胰岛修复以及移植后不存在或存在免疫反应的分子生物标志物。对胰岛原位,分离的胰岛,胰岛培养4天和胰岛移植在移植后3-10天进行BM基质蛋白和内皮细胞标记物血小板内皮细胞粘附分子1(PECAM-1)的免疫荧光染色。流式细胞仪用于研究BM基质蛋白在分离的胰岛β细胞中的表达。胰岛BM在分离胰岛过程中完全消失,该胰岛BM由IV型胶原和Engelbreth-Holm-Swarm(EHS)肿瘤层粘连蛋白111,层粘连蛋白α2,ndogen-2和perlecan的成分组成。培养4天未重建。胰岛异种移植后,确定了胰岛周围和胰岛内的BM恢复,并且与PECAM-1 +血管内皮细胞(VEC)的迁移模式相吻合。胰岛同种异体移植后,开始恢复源自VEC的胰岛周膜BM,但未导致胰岛内脉管系统的形成。取而代之的是,胰岛周围血管异常扩大,与同种异体移植排斥反应相吻合。胰岛BM是酶分离和移植后胰岛修复引起的胰岛损伤的敏感生物标志物。移植后,胰岛周围和岛内BM的重塑均可恢复同种异体移植而非异体移植的β细胞基质附着,这是β细胞存活的公认要求。防止隔离引起的胰岛BM损伤有望保留胰岛BM的固有屏障功能,从而影响同种异体移植排斥所需的效应子机制和同种异体移植存活所需的抗排斥策略。

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