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Design of Bioartificial Pancreas with Functional Micro/Nano-Based Encapsulation of Islets

机译:功能化的基于微/纳米的胰岛包埋的生物人工胰腺的设计

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Type Ⅰ diabetes mellitus (TIDM), a devastating health issue in all over the world, has been treated by successful transplantation of insulin secreting pancreatic islets. However, serious limitations such as the requirement of immunosup-pressive drugs for recipient patients, side effects as a result of long-term use of drugs, and reduced functionality of islets at the transplantation site remain. Bioartificial pancreas that includes islets encapsulated within semi-permeable membrane has been considered as a promising approach to address these requirements. Many studies have focused on micro or nano-based islet immunoisolation systems and tested the efficacy of encapsulated islets using in vitro and in vivo platforms. In this review, we address current progress and obstacles for the development of a bioartificial pancreas using microano-based systems for encapsulation of islets.
机译:Ⅰ型糖尿病(TIDM)是全世界毁灭性的健康问题,已经通过成功移植分泌胰岛素的胰岛来治疗。但是,仍然存在严重的局限性,例如接受者需要免疫抑制药物,长期使用药物会导致副作用以及移植部位胰岛功能降低。包括包裹在半透膜内的胰岛的生物人工胰腺被认为是解决这些需求的一种有前途的方法。许多研究集中在基于微米或纳米的胰岛免疫隔离系统上,并使用体外和体内平台测试了包囊化胰岛的功效。在这篇综述中,我们解决了使用基于微/纳米的胰岛包囊系统开发生物人工胰腺的当前进展和障碍。

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