褐藻糖胶
氧化应激
自愈水凝胶
活性氧
炎症
抗氧化剂
分泌物
免疫系统
小岛
胰岛素
生物
细胞生物学
生物化学
材料科学
内分泌学
多糖
免疫学
高分子化学
作者
L. L. Reys,Vijayaganapathy Vaithilingam,Mireille M.J.P.E. Sthijns,Eduardo V. Soares,Timo Rademakers,Rick de Vries,Sami G. Mohammed,Denise de Bont,Marlon J. Jetten,Carolin Hermanns,O.P. da Sliva,Adam L. Stell,Nizar I. Mourad,Pierre Gianello,Vanessa L. S. LaPointe,S.S. Silva,Rui L. Reis,T.H. Silva,Aart van Apeldoorn
标识
DOI:10.1002/adfm.202011205
摘要
Abstract Microencapsulating pancreatic islets in immunoprotective alginate hydrogels is a promising strategy for treatment of type 1 diabetes. However, this strategy is limited by inflammation and hypoxia mediated oxidative stress, due to encapsulation and the hydrogel itself, leading to impaired insulin secretion and limited short and long term cell survival. Herein, the antioxidant effect of fucoidan, an algae derived polysaccharide, on beta cells, and its positive effects on encapsulated beta cell viability and function is presented. Fucoidan from Fucus vesiculosus (FF) exhibits a high total antioxidant capacity, and free radical scavenging activity, and is able to significantly alleviate intracellular oxidative stress in rat insolinoma beta cells (INS1E). In addition, FF significantly increases insulin secretion in a dose‐ and time‐dependent manner. When FF is incorporated in ultrapure alginate used for microencapsulation of primary rat islets, both viability and glucose responsiveness of rat islets in these socalled Fucogel microcapsules (Fucocaps) are found to be significantly higher compared to islets encapsulated in alginate alone. Similar results are obtained with INS1E pseudoislets and neonatal pig islets. Fucocaps can provide a redox‐modulatory niche and an immune barrier for islets and beta cells in the same time leading to significantly improved survival and endocrine function by mitigating oxidative stress.
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