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多层纳米封装:一种用于糖尿病研究和管理的纳米医学技术。

Multilayer nanoencapsulation: a nanomedicine technology for diabetes research and management.

机构信息

Diabetes Research Group, King's College London School of Medicine, Guy's Hospital, London SE1 1UL, UK.

出版信息

Diabetes Res Clin Pract. 2013 May;100(2):162-9. doi: 10.1016/j.diabres.2012.11.027. Epub 2012 Dec 28.

Abstract

Nanothickness encapsulation using a layer-by-layer technique has applications in several areas of diabetes research, including improved glucose sensors, islet cell transplantation and oral insulin delivery. We have fabricated microvesicles containing a fluorescence lifetime-based glucose sensing system, with bacterial glucose-binding protein as the glucose receptor. Such sensors are suitable for impregnation in the dermis as a 'smart tattoo' type of non-invasive glucose monitoring technology. Nanoencapsulation of islet cells is intended to alleviate the immediate blood-mediated inflammatory reaction which is responsible for early islet loss post-transplant. In an allogeneic diabetic mouse model, nanoencapsulated islets with phosporylcholine-modified polysaccharide coating, significantly extended survival of transplanted islets. In early studies aimed at formulating an effective oral insulin preparation, insulin-chitosan colloids coated with nanolayers of chitosan and heparin had enhanced acid stability and effectively lowered blood glucose in an animal model.

摘要

使用层层技术进行纳米厚度封装在糖尿病研究的多个领域有应用,包括改进的葡萄糖传感器、胰岛细胞移植和口服胰岛素输送。我们已经制备了含有基于荧光寿命的葡萄糖传感系统的微囊泡,其中细菌葡萄糖结合蛋白作为葡萄糖受体。这种传感器适合浸渍在真皮中,作为一种“智能纹身”类型的非侵入性葡萄糖监测技术。胰岛细胞的纳米封装旨在缓解导致移植后早期胰岛丧失的即时血液介导的炎症反应。在同种异体糖尿病小鼠模型中,用磷酰胆碱修饰多糖涂层纳米封装的胰岛显著延长了移植胰岛的存活时间。在旨在制备有效口服胰岛素制剂的早期研究中,用壳聚糖和肝素纳米层包被的胰岛素-壳聚糖胶体增强了酸稳定性,并在动物模型中有效降低了血糖。

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