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In vitro long-term performance study of a near-infrared fluorescence affinity sensor for glucose monitoring

机译:用于葡萄糖监测的近红外荧光亲和传感器的体外长期性能研究

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The Iona-term in vitro performance of a fluorescence affinity sensor for transdermal blood glucose monitoring was investigated. Affinity binding of fluorescently labeled concanavalin A (ConA) was used in this application, as previously described by Ballerstadt and Schultz [Anal. Chem. 17 (2000) 4185-4192]. In this paper, the fluorescence emission of the sensor was extended to the near infrared (670 nm) using Alexa647(TM) as the fluorochrome conjugated to concanavalin A. Sensors were alternately exposed to glucose solutions having concentrations of 2.5 and 20 mM with a dwell time of 3 h. The optical output of the sensors was monitored over a 4-month period. The sensors showed an initial increase in fluorescence over the first 3-4 weeks before gradually decreasing, with an approximately linear drop of 25% per month. In order to understand the reasons for the decrease in fluorescence output, further experiments were conducted, including time-dependent membrane leakage tests. solubility tests of ConA, temperature-dependent activity tests of ConA, and fluorescence photo-bleaching tests. From these results. it became evident that the decrease in fluorescence was not due to denaturation of the ConA. The most likely cause was leakage of the fluorescently labeled ConA through the interface between the outer sealant and the membrane. This problem is considered to be solvable and future publications will address this issue. Extrapolation of the experimental data suggests that a leak-proof sensor would be remarkably stable with a fluorescence decrease of only 15% over a 1-year period. (C) 2003 Elsevier B.V. All rights reserved. [References: 28]
机译:研究了荧光亲和力传感器在透皮血糖监测中的离子术语体外性能。荧光标记的伴刀豆球蛋白A(ConA)的亲和力结合已用于Ballerstadt和Schultz [Anal.Biol。化学17(2000)4185-4192]。在本文中,使用Alexa647™作为缀合伴刀豆球蛋白A的荧光染料,将传感器的荧光发射扩展到了近红外(670 nm)。将传感器交替停留在浓度为2.5和20 mM的葡萄糖溶液中3小时的时间。在四个月的时间内对传感器的光学输出进行了监控。传感器在开始的3-4周内显示出最初的荧光增强,然后逐渐降低,每月大约线性下降25%。为了理解荧光输出降低的原因,进行了进一步的实验,包括随时间变化的膜泄漏测试。 ConA的溶解度测试,ConA的温度依赖性活性测试和荧光光漂白测试。从这些结果。很明显,荧光的降低不是由于ConA的变性。最可能的原因是荧光标记的ConA通过外密封胶和膜之间的界面泄漏。该问题被认为是可以解决的,以后的出版物将解决这个问题。实验数据的推断表明,防漏传感器将非常稳定,并且在1年的时间内荧光强度仅降低15%。 (C)2003 Elsevier B.V.保留所有权利。 [参考:28]

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