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Donor islet endothelial cells participate in formation of functional vessels within pancreatic islet grafts.

机译:供体胰岛内皮细胞参与胰岛移植物中功能性血管的形成。

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Pancreatic islet transplantation has emerged as a therapy for type 1 diabetes and is today performed using both freshly isolated and cultured islets. Islet blood vessels are disrupted during islet isolation; therefore, proper revascularization of the transplanted islets is of great importance for islet graft function and survival. We have studied intraislet endothelial cells after islet isolation, during islet culture, and following islet transplantation. By isolating islets from the transgenic Tie2-GFP (green fluorescent protein) mouse, characterized by an endothelial cell-specific expression of GFP, living endothelial cells could be studied in intact islets utilizing two-photon laser-scanning microscopy (TPLSM). Intraislet endothelial cells were found to survive islet transplantation but to rapidly disappear during islet culture. By transplanting freshly isolated Tie2-GFP islets and applying a novel ex vivo model for simultaneous perfusion and TPLSM imaging of the graft-bearing kidneys, GFP fluorescent endothelial cells were found to extensively contribute to vessels within the islet graft vasculature. Real-time imaging of the flow through the islet graft vasculature confirmed that the donor-derived vessels were functionally integrated. Hence, intraislet endothelial cells have the capability of participating in revascularization of pancreatic islets subsequent to transplantation. Therefore, preservation of intraislet endothelial cell mass may improve long-term graft function.
机译:胰岛移植已成为一种治疗1型糖尿病的疗法,如今已使用新鲜分离的胰岛和培养的胰岛进行胰岛移植。胰岛分离过程中胰岛血管破裂;因此,对移植的胰岛进行适当的血运重建对于胰岛移植物的功能和存活至关重要。我们研究了胰岛分离后,胰岛培养过程中以及胰岛移植后的胰岛内内皮细胞。通过从以GFP内皮细胞特异性表达为特征的转基因Tie2-GFP(绿色荧光蛋白)小鼠中分离出胰岛,可以利用两光子激光扫描显微镜(TPLSM)在完整的胰岛中研究活的内皮细胞。发现胰岛内内皮细胞可以在胰岛移植中幸存下来,但是在胰岛培养过程中迅速消失。通过移植新鲜分离的Tie2-GFP胰岛,并应用新型离体模型同时对带有移植物的肾脏进行灌注和TPLSM成像,发现GFP荧光内皮细胞广泛参与了胰岛移植血管的血管。流经胰岛移植血管的实时成像证实,供体来源的血管功能整合。因此,胰岛内内皮细胞具有在移植后参与胰岛血运重建的能力。因此,保留胰岛内内皮细胞团可改善长期移植功能。

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