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由于荧光共振能量转移(FRET)效率提高,高亲和力甘露四糖可替代葡聚糖用于基于刀豆球蛋白A的荧光亲和葡萄糖测定。

High Affinity Mannotetraose as an Alternative to Dextran in ConA Based Fluorescent Affinity Glucose Assay Due to Improved FRET Efficiency.

作者信息

Locke Andrea K, Cummins Brian M, Coté Gerard L

机构信息

Department of Biomedical Engineering, Texas A&M University, College Station, Texas 77843, United States.

Department of Biomedical Engineering, University of North Carolina at Chapel Hill and North Carolina State University, Raleigh, North Carolina 27695, United States.

出版信息

ACS Sens. 2016 May 27;1(5):584-590. doi: 10.1021/acssensors.5b00304. Epub 2016 Mar 16.

Abstract

Diabetes mellitus affects millions of people worldwide and requires that individuals tightly self-regulate their blood glucose levels to minimize the associated secondary complications. Continuous monitoring devices potentially offer patients a long-term means to tightly monitor their glucose levels. In recent years, fluorescent affinity sensors based on lectins (e.g., Concanavalin A (ConA)) have been implemented in such devices. Traditionally, these sensors pair the lectin with a multivalent ligand, like dextran, in order to develop a competitive binding assay that changes its fluorescent properties in response to the surrounding glucose concentrations. This work introduces a new type of fluorescent ligand for FRET-based assays in an attempt to improve the sensitivity of such assays. This ligand is rationally designed to present a core trimannose structure and a donor fluorophore in close proximity to one another. This design decreases the distance between the FRET donor and the FRET acceptors on ConA to maximize the FRET efficiency upon binding of the ligand to ConA. This work specifically compares the FRET efficiency and sensitivity of this new competing ligand with a traditional dextran ligand, showing that the new ligand has improved characteristics. This work also tested the long-term thermal stability of the assay based on this new competing ligand and displayed a MARD of less than 10% across the physiological range of glucose after 30 days incubation at 37 °C. Ultimately, this new type of fluorescent ligand has the potential to significantly improve the accuracy of continuous glucose monitoring devices based on the competitive binding sensing approach.

摘要

糖尿病影响着全球数百万人,患者需要严格自我调节血糖水平,以尽量减少相关的继发性并发症。连续监测设备可能为患者提供一种长期密切监测血糖水平的方法。近年来,基于凝集素(如伴刀豆球蛋白A(ConA))的荧光亲和传感器已应用于此类设备中。传统上,这些传感器将凝集素与多价配体(如葡聚糖)配对,以开发一种竞争性结合测定法,该方法会根据周围葡萄糖浓度改变其荧光特性。这项工作引入了一种用于基于荧光共振能量转移(FRET)测定的新型荧光配体,试图提高此类测定的灵敏度。该配体经过合理设计,使其核心三甘露糖结构和供体荧光团彼此紧邻。这种设计缩短了ConA上FRET供体与FRET受体之间的距离,以使配体与ConA结合时FRET效率最大化。这项工作具体比较了这种新型竞争性配体与传统葡聚糖配体的FRET效率和灵敏度,结果表明新配体具有更好的特性。这项工作还测试了基于这种新型竞争性配体的测定法的长期热稳定性,在37℃孵育30天后,在葡萄糖的生理范围内平均绝对相对误差(MARD)小于10%。最终,这种新型荧光配体有可能显著提高基于竞争性结合传感方法的连续血糖监测设备的准确性。

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