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移植的人胰岛中的细胞重排。

Cell rearrangement in transplanted human islets.

作者信息

Lavallard Vanessa, Armanet Mathieu, Parnaud Géraldine, Meyer Jérémy, Barbieux Charlotte, Montanari Elisa, Meier Raphaël, Morel Philippe, Berney Thierry, Bosco Domenico

机构信息

*Cell Isolation and Transplantation Center, Department of Surgery, Geneva University Hospitals and University of Geneva, Geneva, Switzerland; Cell Therapy Unit, Hôpital Saint Louis, Assistance Publique-Hôpitaux de Paris, and University Paris 7, Paris, France; and Institut National de la Santé et de la Recherche Médicale, Unité Mixte de Recherche Scientifique 1138, Centre de Recherches des Cordeliers, Paris, France

*Cell Isolation and Transplantation Center, Department of Surgery, Geneva University Hospitals and University of Geneva, Geneva, Switzerland; Cell Therapy Unit, Hôpital Saint Louis, Assistance Publique-Hôpitaux de Paris, and University Paris 7, Paris, France; and Institut National de la Santé et de la Recherche Médicale, Unité Mixte de Recherche Scientifique 1138, Centre de Recherches des Cordeliers, Paris, France.

出版信息

FASEB J. 2016 Feb;30(2):748-60. doi: 10.1096/fj.15-273805. Epub 2015 Nov 3.

Abstract

The major feature of the human pancreatic islet architecture is the organization of endocrine cells into clusters comprising central β cells and peripheral α cells surrounded by vasculature. To have an insight into the mechanisms that govern this unique islet architecture, islet cells were isolated, and reaggregation of α and β cells into islet-like structures (pseudoislets) after culture or transplantation into mice was studied by immunohistology. The pseudoislets formed in culture displayed an unusual cell arrangement, contrasting with the transplanted pseudoislets, which exhibited a cell arrangement similar to that observed in native pancreatic islet subunits. The pattern of revascularization and the distribution of extracellular matrix around transplanted pseudoislets were alike to those observed in native pancreatic islets. This organization of transplanted pseudoislets occurred also when revascularization was abolished by treating mice with an anti-VEGF antibody, but not when contact with extracellular matrix was prevented by encapsulation of pseudoislets within alginate hydrogel. These results indicate that the maintenance of islet cell arrangement is dependent on in vivo features such as extracellular matrix but independent of vascularization.

摘要

人类胰岛结构的主要特征是内分泌细胞组织成簇,这些簇由中央β细胞和被脉管系统包围的外周α细胞组成。为了深入了解控制这种独特胰岛结构的机制,分离了胰岛细胞,并通过免疫组织学研究了α细胞和β细胞在培养后或移植到小鼠体内后重新聚集形成类胰岛结构(假胰岛)的情况。在培养中形成的假胰岛显示出异常的细胞排列,这与移植的假胰岛形成对比,移植的假胰岛表现出与天然胰腺胰岛亚单位中观察到的细胞排列相似的情况。移植的假胰岛周围的血管再生模式和细胞外基质分布与天然胰腺胰岛中观察到的相似。当用抗VEGF抗体处理小鼠以消除血管再生时,移植的假胰岛也会出现这种组织方式,但当通过将假胰岛包裹在藻酸盐水凝胶中来阻止与细胞外基质接触时,则不会出现这种情况。这些结果表明,胰岛细胞排列的维持依赖于细胞外基质等体内特征,但与血管生成无关。

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