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Engineering of microscale three-dimensional pancreatic islet models in vitro and their biomedical applications

机译:微型三维胰岛模型的体外工程设计及其生物医学应用

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摘要

Diabetes now is the most common chronic disease in the world inducing heavy burden for the people's health. Based on this, diabetes research such as islet function has become a hot topic in medical institutes of the world. Today, in medical institutes, the conventional experiment platform in vitro is monolayer cell culture. However, with the development of micro- and nano-technologies, several microengineering methods have been developed to fabricate three-dimensional (3D) islet models in vitro which can better mimic the islet of pancreases in vivo. These in vitro islet models have shown better cell function than monolayer cells, indicating their great potential as better experimental platforms to elucidate islet behaviors under both physiological and pathological conditions, such as the molecular mechanisms of diabetes and clinical islet transplantation. In this review, we present the state-of-the-art advances in the microengineering methods for fabricating microscale islet models in vitro. We hope this will help researchers to better understand the progress in the engineering 3D islet models and their biomedical applications such as drug screening and islet transplantation.
机译:糖尿病现在是世界上最常见的慢性疾病,给人们的健康造成沉重负担。基于此,诸如胰岛功能的糖尿病研究已成为世界医学机构的热门话题。如今,在医学机构中,体外常规实验平台是单层细胞培养。然而,随着微技术和纳米技术的发展,已经开发了几种微工程学方法以在体外制造三维(3D)胰岛模型,其可以更好地模拟体内胰岛。这些体外胰岛模型显示出比单层细胞更好的细胞功能,表明它们作为阐明在生理和病理条件(例如糖尿病的分子机制和临床胰岛移植)下胰岛行为的更好实验平台的巨大潜力。在这篇综述中,我们介绍了微工程方法在体外制备微型胰岛模型方面的最新进展。我们希望这将有助于研究人员更好地了解工程3D胰岛模型及其生物医学应用(例如药物筛选和胰岛移植)的进展。

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