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通过聚乙二醇的保形涂层实现血管化部位的鼠胰岛同种异体移植的免疫隔离。

Immunoisolation of murine islet allografts in vascularized sites through conformal coating with polyethylene glycol.

机构信息

Diabetes Research Institute, University of Miami Miller School of Medicine, Miami, FL, USA.

Department of Electronics, Information and Bioengineering, Politecnico di Milano, Milano, Italy.

出版信息

Am J Transplant. 2018 Mar;18(3):590-603. doi: 10.1111/ajt.14547. Epub 2017 Dec 2.

Abstract

Islet encapsulation may allow transplantation without immunosuppression, but thus far islets in large microcapsules transplanted in the peritoneal cavity have failed to reverse diabetes in humans. We showed that islet transplantation in confined well-vascularized sites like the epididymal fat pad (EFP) improved graft outcomes, but only conformal coated (CC) islets can be implanted in these sites in curative doses. Here, we showed that CC using polyethylene glycol (PEG) and alginate (ALG) was not immunoisolating because of its high permselectivity and strong allogeneic T cell responses. We refined the CC composition and explored PEG and islet-like extracellular matrix (Matrigel; MG) islet encapsulation (PEG MG) to improve capsule immunoisolation by decreasing its permselectivity and immunogenicity while allowing physiological islet function. Although the efficiency of diabetes reversal of allogeneic but not syngeneic CC islets was lower than that of naked islets, we showed that CC (PEG MG) islets from fully MHC-mismatched Balb/c mice supported long-term (>100 days) survival after transplantation into diabetic C57BL/6 recipients in the EFP site (750-1000 islet equivalents/mouse) in the absence of immunosuppression. Lack of immune cell penetration and T cell allogeneic priming was observed. These studies support the use of CC (PEG MG) for islet encapsulation and transplantation in clinically relevant sites without chronic immunosuppression.

摘要

胰岛包裹可能允许在没有免疫抑制的情况下进行移植,但迄今为止,在腹腔内移植的大型微囊化胰岛未能逆转人类的糖尿病。我们表明,将胰岛移植到像附睾脂肪垫 (EFP) 这样的有限且血管丰富的部位,可以改善移植物的结果,但只有经过共形涂层 (CC) 的胰岛才能以治疗剂量植入这些部位。在这里,我们表明,由于其高渗透性和强烈的同种异体 T 细胞反应,使用聚乙二醇 (PEG) 和藻酸盐 (ALG) 的 CC 不是免疫隔离的。我们改进了 CC 组成,并探索了 PEG 和胰岛样细胞外基质 (Matrigel; MG) 胰岛包封 (PEG MG),通过降低其渗透性和免疫原性,同时允许生理胰岛功能,来改善胶囊免疫隔离。尽管同种异体而非同基因 CC 胰岛的逆转糖尿病效率低于裸胰岛,但我们表明,来自完全 MHC 错配的 Balb/c 小鼠的 CC (PEG MG) 胰岛在 EFP 部位(每只小鼠 750-1000 个胰岛当量)中在没有免疫抑制的情况下,在糖尿病 C57BL/6 受体中支持长期 (>100 天) 存活。观察到缺乏免疫细胞渗透和 T 细胞同种异体启动。这些研究支持在没有慢性免疫抑制的情况下,使用 CC (PEG MG) 进行胰岛包裹和临床相关部位的移植。

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