Diabetes Research Center, Vrije Universiteit Brussel, Brussels, Belgium.
University Hospital Brussels-Vrije Universiteit Brussel, Brussels, Belgium.
Diabetes. 2018 Dec;67(12):2640-2649. doi: 10.2337/db18-0709. Epub 2018 Oct 10.
Alginate (Alg)-encapsulated porcine islet cell grafts are developed to overcome limitations of human islet transplantation. They can generate functional implants in animals when prepared from fetal, perinatal, and adult pancreases. Implants have not yet been examined for efficacy to establish sustained, metabolically adequate functional β-cell mass (FBM) in comparison with human islet cells. This study in immune-compromised mice demonstrates that subcutaneous implants of Alg-encapsulated porcine prenatal islet cells with 4 × 10 β-cells form, over 10 weeks, a FBM that results in glucose-induced plasma C-peptide >2 ng/mL and metabolic control over the following 10 weeks, with higher efficiency than nonencapsulated, while failing in peritoneum. This intracapsular FBM formation involves β-cell replication, increasing number fourfold, and maturation toward human adult β-cells. Subcutaneous Alg-encapsulated human islet cells with similar β-cell number establish implants with plasma C-peptide >2 ng/mL for the first 10 weeks, with nonencapsulated cells failing; their β-cells do not replicate but progressively die (>70%), explaining C-peptide decline and insufficient metabolic control. An Alg matrix thus helps establish β-cell functions in subcutis. It allows formation of sustained metabolically adequate FBM by immature porcine β-cells with proliferative activity but not by human adult islet cells. These findings define conditions for evaluating its immune-protecting properties.
藻酸盐(Alg)包裹的猪胰岛细胞移植物的开发是为了克服人胰岛移植的局限性。当从胎儿、围产期和成人胰腺中制备时,它们可以在动物中产生功能性植入物。尚未检查这些植入物在建立与人类胰岛细胞相比持续、代谢充分的功能性β细胞质量(FBM)方面的功效。这项在免疫功能低下的小鼠中的研究表明,皮下植入具有 4×10β细胞的藻酸盐包裹的猪产前胰岛细胞,在 10 周内形成 FBM,导致葡萄糖诱导的血浆 C 肽>2ng/mL,并在接下来的 10 周内代谢控制,其效率高于非包裹组,而在腹膜内则不然。这种囊内 FBM 的形成涉及β细胞复制,数量增加了四倍,并向人类成年β细胞成熟。具有类似β细胞数量的皮下藻酸盐包裹的人类胰岛细胞在前 10 周内建立了血浆 C 肽>2ng/mL 的植入物,而非包裹的细胞则失败;它们的β细胞不会复制,而是逐渐死亡(>70%),解释了 C 肽下降和代谢控制不足。因此,藻酸盐基质有助于在皮下组织中建立β细胞功能。它允许具有增殖活性的不成熟猪β细胞形成持续的代谢充分的 FBM,但不允许人类成年胰岛细胞形成。这些发现定义了评估其免疫保护特性的条件。