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基于核酸的荧光纳米温度计。

Nucleic acid based fluorescent nanothermometers.

机构信息

Department of Chemistry, Institute for Advanced Studies in Basic Sciences (IASBS) , Zanjan, 45137-66731, Iran.

出版信息

ACS Nano. 2014 Oct 28;8(10):10372-82. doi: 10.1021/nn5036944. Epub 2014 Oct 9.

Abstract

Accurate thermometry at micro- and nanoscales is essential in many nanobiotechnological applications. The nanothermometers introduced in this paper are composed of labeled molecular beacons (MBs) comprising gold nanoparticles (AuNPs) on which, depending on application, many MBs of one or more types are immobilized. In this design, three differently labeled MBs with different thermostabilities function as the sensing elements, and AuNPs act as carriers of the MBs and also quenchers of their fluorophores. This flexible design results in a number of nanothermometers with various temperature-sensing ranges. At the lowest temperature, the MBs are in the closed form, where they are quenched. By increasing the temperature, the MBs start to open with respect to their melting points (Tm), and as a result, the fluorescence emission will increase. The temperature resolution of the nanoprobes over a range of 15-60 °C is less than 0.50 °C, which indicates their high sensitivity. Such a good temperature resolution is a result of the specific design of the unusual less stable MBs and also presence of many MBs on AuNPs. The reproducibility and precision of the probes are also satisfactory. The multiplex MB nanoprobe is suitable for thermal imaging by fluorescence microscopy.

摘要

在许多纳米生物技术应用中,微纳米尺度的精确测温至关重要。本文介绍的纳米温度计由标记的分子信标 (MB) 组成,这些信标包含金纳米粒子 (AuNP),根据应用的不同,一个或多个类型的多个 MB 被固定在其上。在这种设计中,三个具有不同热稳定性的不同标记的 MB 作为传感元件,AuNPs 既作为 MB 的载体,也作为其荧光团的猝灭剂。这种灵活的设计导致了具有各种温度传感范围的许多纳米温度计。在最低温度下,MB 处于闭合形式,此时它们被猝灭。随着温度的升高,MB 相对于其熔点 (Tm) 开始打开,因此荧光发射会增加。纳米探针在 15-60°C 范围内的温度分辨率小于 0.50°C,表明其具有高灵敏度。如此好的温度分辨率是由于不寻常的不太稳定的 MB 的特定设计以及 AuNPs 上存在许多 MB 的结果。探针的重现性和精度也令人满意。多色 MB 纳米探针适用于荧光显微镜的热成像。

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