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Size effect of engineered islets prepared using microfabricated wells on islet cell function and arrangement

机译:使用微细加工孔制备的工程化胰岛的大小对胰岛细胞功能和排列的影响

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摘要

Pancreatic islets are heterogeneous clusters mainly composed of α and β cells, and these clusters range in diameter from 50 to several hundred micrometers. Native small islets are known to have a higher insulin secretion ability in vitro and to provide better transplantation outcomes when compared with large islets. In this study, we prepared microengineered pseudo-islets from dispersed rat islet cells using precisely-fabricated agarose gel-based microwells with different diameters (100, 300, or 500 μm) to investigate the function and survival of islet cell aggregates with well-controlled sizes. We observed that dead cells were rarely present in the small pseudo-islets with an average diameter of ∼60 μm prepared using 100 μm microwells. In contrast, we observed more dead cells in the larger pseudo-islets prepared using 300 and 500 μm microwells. The relative amount of hypoxic cells was significantly low in the small pseudo-islets whereas a hypoxic condition was present in the core region of the larger pseudo-islets. In addition, we found that the small-sized pseudo-islets reconstituted the in vivo-tissue like arrangement of the α and β cells, and restored the high insulin secretory capacity in response to high glucose. These results clearly suggest that precise size control of pseudo-islets is essential for maintaining islet cell function and survival in vitro. The small-sized pseudo-islets may be advantageous for providing a better therapeutic approach for treating type 1 diabetes mellitus via islet reorganization and transplantation.
机译:胰岛是主要由α和β细胞组成的异质簇,这些簇的直径范围为50至几百微米。已知天然小胰岛在体外具有较高的胰岛素分泌能力,并且与大胰岛相比具有更好的移植效果。在这项研究中,我们使用具有精确直径的不同直径(100、300或500μm)的精制琼脂糖凝胶微孔,从分散的大鼠胰岛细胞制备了微工程化的伪胰岛,以研究胰岛细胞聚集体的功能和存活情况。大小。我们观察到,使用100μm微孔制备的平均直径约为60μm的小假胰岛中几乎没有死细胞。相比之下,我们在使用300和500μm微孔制备的较大假胰岛中观察到更多死细胞。在小的假胰岛中,低氧细胞的相对数量明显较低,而在较大的假胰岛的核心区域中存在缺氧状况。另外,我们发现小假胰岛重构了体内组织的α和β细胞排列,并响应于高葡萄糖而恢复了高胰岛素分泌能力。这些结果清楚地表明,对伪胰岛的精确大小控制对于维持胰岛细胞功能和体外存活至关重要。小型假胰岛可能有利于通过胰岛重组和移植提供更好的治疗方法来治疗1型糖尿病。

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