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用于改善生物人工胰腺封装装置功能的内皮细胞和β细胞复合聚集体。

Endothelial and beta cell composite aggregates for improved function of a bioartificial pancreas encapsulation device.

作者信息

Skrzypek Katarzyna, Barrera Yazmin Brito, Groth Thomas, Stamatialis Dimitrios

机构信息

1 Bioartificial Organs, Biomaterials Science and Technology, MIRA Institute for Biomedical Technology and Technical Medicine, University of Twente, Enschede, The Netherlands.

2 Biomedical Materials Group and Institute of Pharmacy, Martin Luther University of Halle-Wittenberg, Halle, Germany.

出版信息

Int J Artif Organs. 2018 Mar;41(3):152-159. doi: 10.1177/0391398817752295. Epub 2018 Feb 20.

Abstract

INTRODUCTION

Encapsulation of pancreatic islets or beta cells is a promising strategy for treatment of type 1 diabetes by providing an immune isolated environment and allowing for transplantation in a different location than the liver. However, islets used for encapsulation often show lower functionality due to the damaging of islet endothelial cells during the isolation procedure. Factors produced by endothelial cells have great impact on beta cell insulin secretion. Therefore, mutual signaling between endothelial cells and beta cells should be considered for the development of encapsulation systems to achieve high insulin secretion and maintain beta cell viability. Here, we investigate whether co-culture of beta cells with endothelial cells could improve beta cell function within encapsulation devices.

MATERIALS AND METHODS

Mouse insulinoma MIN6 cells and human umbilical vein endothelial cells were used for creating composite aggregates on agarose microwell platform. The composite aggregates were encapsulated within flat poly(ether sulfone)/polyvinylpyrrolidone device. Their functionality was assessed by glucose-induced insulin secretion test and compared to non-encapsulated free-floating aggregates.

RESULTS

We created composite aggregates of 80-100 µm in diameter, closely mimicking pancreatic islets. Upon glucose stimulation, their insulin secretion is improved in comparison to aggregates consisting of only MIN6 cells. Moreover, the composite aggregates encapsulated within a device secrete more insulin than aggregates consisting of only MIN6 cells.

CONCLUSION

Composite aggregates of MIN6 cells with human umbilical vein endothelial cells have improved insulin secretion in comparison to MIN6 aggregates showing that the interaction of beta cell and endothelial cell is crucial for a functional encapsulation system.

摘要

引言

胰岛或β细胞的封装是治疗1型糖尿病的一种有前景的策略,它能提供免疫隔离环境,并允许在肝脏以外的其他部位进行移植。然而,用于封装的胰岛在分离过程中由于胰岛内皮细胞受损,其功能往往较低。内皮细胞产生的因子对β细胞胰岛素分泌有很大影响。因此,在开发封装系统以实现高胰岛素分泌并维持β细胞活力时,应考虑内皮细胞与β细胞之间的相互信号传导。在此,我们研究β细胞与内皮细胞共培养是否能改善封装装置内β细胞的功能。

材料与方法

使用小鼠胰岛素瘤MIN6细胞和人脐静脉内皮细胞在琼脂糖微孔平台上创建复合聚集体。将复合聚集体封装在扁平的聚(醚砜)/聚乙烯吡咯烷酮装置中。通过葡萄糖诱导的胰岛素分泌试验评估其功能,并与未封装的游离聚集体进行比较。

结果

我们创建了直径为80 - 100 µm的复合聚集体,与胰岛非常相似。在葡萄糖刺激下,与仅由MIN6细胞组成的聚集体相比,它们的胰岛素分泌有所改善。此外,封装在装置内的复合聚集体比仅由MIN6细胞组成的聚集体分泌更多胰岛素。

结论

与MIN6聚集体相比,MIN6细胞与人脐静脉内皮细胞的复合聚集体胰岛素分泌有所改善,这表明β细胞与内皮细胞的相互作用对于功能性封装系统至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a04e/6161570/303fb64bab34/10.1177_0391398817752295-fig1.jpg

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