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生物材料在胰岛封装与移植中的应用

Biomaterial Applications in Islet Encapsulation and Transplantation.

作者信息

Caserto Julia S, Bowers Daniel T, Shariati Kaavian, Ma Minglin

机构信息

Department of Biological and Environmental Engineering, Cornell University, Ithaca, New York 14853, United States.

出版信息

ACS Appl Bio Mater. 2020 Dec 21;3(12):8127-8135. doi: 10.1021/acsabm.0c01235. Epub 2020 Nov 20.

Abstract

The worldwide prevalence of type 1 diabetes motivates the development of different treatment options for the disease. Current clinical treatments typically require patient involvement, often resulting in stress or inconvenience to the patient due to frequent blood glucose measurements and insulin injections or infusions. Islet transplantation, a potentially curative treatment, is limited by donor availability and the need for long-term administration of immunosuppressants. Cell encapsulation may prevent graft rejection without immunosuppression, however, foreign body responses, mass transfer limitations, scalability, and safety are all significant challenges. This Spotlight paper summarizes our recent efforts to address these challenges including developing biomaterials to mitigate foreign body responses and fibrosis, engineering scalable and retrievable encapsulation devices, as well as designing oxygen supplementation and vascularization strategies.

摘要

1型糖尿病在全球的患病率推动了针对该疾病的不同治疗方案的开发。目前的临床治疗通常需要患者参与,由于频繁的血糖测量以及胰岛素注射或输注,常常给患者带来压力或不便。胰岛移植作为一种潜在的治愈性治疗方法,受到供体可用性以及长期服用免疫抑制剂需求的限制。细胞封装可以在不进行免疫抑制的情况下防止移植物排斥,然而,异物反应、传质限制、可扩展性和安全性都是重大挑战。这篇聚焦论文总结了我们最近为应对这些挑战所做的努力,包括开发生物材料以减轻异物反应和纤维化、设计可扩展且可回收的封装装置,以及设计氧气补充和血管化策略。

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