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Microwell scaffolds for the extrahepatic transplantation of islets of langerhans

机译:Microwell支架用于兰格汉斯胰岛的肝外移植

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摘要

Allogeneic islet transplantation into the liver has the potential to restore normoglycemia in patients with type 1 diabetes. However, the suboptimal microenvironment for islets in the liver is likely to be involved in the progressive islet dysfunction that is often observed post-transplantation. This study validates a novel microwell scaffold platform to be used for the extrahepatic transplantation of islet of Langerhans. Scaffolds were fabricated from either a thin polymer film or an electrospun mesh of poly(ethylene oxide terephthalate)-poly(butylene terephthalate) (PEOT/PBT) block copolymer (composition: 4000PEOT30PBT70) and were imprinted with microwells, approximately 400 microm in diameter and approximately 350 microm in depth. The water contact angle and water uptake were 39+/-2 degrees and 52.1+/-4.0 wt%, respectively. The glucose flux through electrospun scaffolds was three times higher than for thin film scaffolds, indicating enhanced nutrient diffusion. Human islets cultured in microwell scaffolds for seven days showed insulin release and insulin content comparable to those of free-floating control islets. Islet morphology and insulin and glucagon expression were maintained during culture in the microwell scaffolds. Our results indicate that the microwell scaffold platform prevents islet aggregation by confinement of individual islets in separate microwells, preserves the islet's native rounded morphology, and provides a protective environment without impairing islet functionality, making it a promising platform for use in extrahepatic islet transplantation.
机译:同种异体胰岛移植入肝脏有可能恢复1型糖尿病患者的正常血糖。但是,肝脏中胰岛的最佳环境可能与移植后通常观察到的进行性胰岛功能障碍有关。这项研究验证了一种新型的微孔支架平台可用于朗格汉斯胰岛的肝外移植。支架是由聚合物薄膜或聚(对苯二甲酸乙二酯)-聚对苯二甲酸丁二酯(PEOT / PBT)嵌段共聚物(组成:4000PEOT30PBT70)的静电纺丝制成的,并刻有直径约400微米的微孔。深度约350微米。水接触角和吸水率分别为39 +/- 2度和52.1 +/- 4.0重量%。通过电纺丝支架的葡萄糖通量比薄膜支架的葡萄糖通量高三倍,表明营养物扩散增强。在微孔支架中培养7天的人类胰岛显示出与游离漂浮的胰岛相当的胰岛素释放和胰岛素含量。在微孔支架中培养期间,胰岛形态以及胰岛素和胰高血糖素的表达得以维持。我们的结果表明,微孔支架平台通过将单个胰岛限制在单独的微孔中来防止胰岛聚集,保留了胰岛的天然圆形形态,并在不损害胰岛功能的情况下提供了保护性环境,使其成为有希望的平台用于肝外胰岛移植。

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