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使用便携式荧光共振能量转移分析仪进行高灵敏度快速荧光检测。

Highly Sensitive and Rapid Fluorescence Detection with a Portable FRET Analyzer.

作者信息

Kim Haseong, Han Gui Hwan, Fu Yaoyao, Gam Jongsik, Lee Seung Goo

机构信息

Synthetic Biology & Bioengineering Research Center, Korea Research Institute of Bioscience and Biotechnology.

College of Interdisciplinary & Creative Studies, Konyang University.

出版信息

J Vis Exp. 2016 Oct 1(116):54144. doi: 10.3791/54144.

Abstract

Recent improvements in Förster resonance energy transfer (FRET) sensors have enabled their use to detect various small molecules including ions and amino acids. However, the innate weak signal intensity of FRET sensors is a major challenge that prevents their application in various fields and makes the use of expensive, high-end fluorometers necessary. Previously, we built a cost-effective, high-performance FRET analyzer that can specifically measure the ratio of two emission wavelength bands (530 and 480 nm) to achieve high detection sensitivity. More recently, it was discovered that FRET sensors with bacterial periplasmic binding proteins detect ligands with maximum sensitivity in the critical temperature range of 50 - 55 °C. This report describes a protocol for assessing sugar content in commercially-available beverage samples using our portable FRET analyzer with a temperature-specific FRET sensor. Our results showed that the additional preheating process of the FRET sensor significantly increases the FRET ratio signal, to enable more accurate measurement of sugar content. The custom-made FRET analyzer and sensor were successfully applied to quantify the sugar content in three types of commercial beverages. We anticipate that further size reduction and performance enhancement of the equipment will facilitate the use of hand-held analyzers in environments where high-end equipment is not available.

摘要

最近,福斯特共振能量转移(FRET)传感器的改进使其能够用于检测包括离子和氨基酸在内的各种小分子。然而,FRET传感器固有的弱信号强度是一个重大挑战,这阻碍了它们在各个领域的应用,并使得必须使用昂贵的高端荧光计。此前,我们构建了一种经济高效的高性能FRET分析仪,它可以专门测量两个发射波长带(530和480纳米)的比率,以实现高检测灵敏度。最近,人们发现带有细菌周质结合蛋白的FRET传感器在50 - 55°C的临界温度范围内检测配体时具有最高灵敏度。本报告描述了一种使用我们的便携式FRET分析仪和特定温度FRET传感器评估市售饮料样品中糖含量的方案。我们的结果表明,FRET传感器的额外预热过程显著增加了FRET比率信号,从而能够更准确地测量糖含量。定制的FRET分析仪和传感器成功应用于三种商业饮料中糖含量的定量分析。我们预计,进一步减小设备尺寸并提高其性能将有助于在无法使用高端设备的环境中使用手持式分析仪。

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