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Integration of Nanomaterials and Bioluminescence Resonance Energy Transfer Techniques for Sensing Biomolecules

机译:纳米材料与生物发光共振能量转移技术的集成用于传感生物分子

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摘要

Bioluminescence resonance energy transfer (BRET) techniques offer a high degree of sensitivity, reliability and ease of use for their application to sensing biomolecules. BRET is a distance dependent, non-radiative energy transfer, which uses a bioluminescent protein to excite an acceptor through the resonance energy transfer. A BRET sensor can quickly detect the change of a target biomolecule quantitatively without an external electromagnetic field, e.g., UV light, which normally can damage tissue. Having been developed quite recently, this technique has evolved rapidly. Here, different bioluminescent proteins have been reviewed. In addition to a multitude of bioluminescent proteins, this manuscript focuses on the recent development of BRET sensors by utilizing quantum dots. The special size-dependent properties of quantum dots have made the BRET sensing technique attractive for the real-time monitoring of the changes of target molecules and bioimaging in vivo. This review offers a look into the basis of the technique, donor/acceptor pairs, experimental applications and prospects.
机译:生物发光共振能量转移(BRET)技术具有很高的灵敏度,可靠性和易用性,可用于传感生物分子。 BRET是一种与距离相关的非辐射能量转移,它使用生物发光蛋白通过共振能量转移来激发受体。 BRET传感器可以快速定量地检测目标生物分子的变化,而无需外部电磁场,例如通常会损坏组织的紫外线。在最近发展起来的这项技术已经迅速发展。在此,已经综述了不同的生物发光蛋白。除了大量的生物发光蛋白外,该手稿还重点介绍了利用量子点开发的BRET传感器。量子点的特殊尺寸依赖性使BRET传感技术吸引了对靶分子和体内生物成像变化的实时监控。这篇综述提供了对技术基础,供体/受体对,实验应用和前景的了解。

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