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Bioluminescence-Based Energy Transfer Using Semiconductor Quantum Dots as Acceptors

机译:使用半导体量子点作为受体的基于生物发光的能量转移

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摘要

Bioluminescence resonance energy transfer (BRET) is the non-radiative transfer of energy from a bioluminescent protein donor to a fluorophore acceptor. It shares all the formalism of Förster resonance energy transfer (FRET) but differs in one key aspect: that the excited donor here is produced by biochemical means and not by an external illumination. Often the choice of BRET source is the bioluminescent protein luciferase, which catalyzes the oxidation of a substrate, typically coelenterazine, producing an oxidized product in its electronic excited state that, in turn, couples with a proximal fluorophore resulting in a fluorescence emission from the acceptor. The acceptors pertinent to this discussion are semiconductor quantum dots (QDs), which offer some unrivalled photophysical properties. Amongst other advantages, the QD’s large Stokes shift is particularly advantageous as it allows easy and accurate deconstruction of acceptor signal, which is difficult to attain using organic dyes or fluorescent proteins. QD-BRET systems are gaining popularity in non-invasive bioimaging and as probes for biosensing as they don’t require external optical illumination, which dramatically improves the signal-to-noise ratio by avoiding background auto-fluorescence. Despite the additional advantages such systems offer, there are challenges lying ahead that need to be addressed before they are utilized for translational types of research.
机译:生物发光共振能量转移(BRET)是能量从生物发光蛋白供体到荧光团受体的非辐射转移。它具有Förster共振能量转移(FRET)的所有形式,但在一个关键方面有所不同:这里的激发供体是通过生化手段而不是外部照明产生的。通常选择BRET来源是生物发光蛋白荧光素酶,它可催化底物(通常是腔肠素)的氧化,产生处于电子激发态的氧化产物,进而与近端荧光团偶联,从而导致受体发出荧光。与该讨论有关的受体是半导体量子点(QD),它提供了无与伦比的光物理特性。除其他优点外,QD的大斯托克斯位移特别有利,因为它可以轻松,准确地解构受体信号,而使用有机染料或荧光蛋白很难做到这一点。由于QD-BRET系统不需要外部光学照明,因此在非侵入性生物成像和生物传感探针中正变得越来越流行,因为它们可以避免背景自发荧光,从而极大地提高了信噪比。尽管此类系统具有其他优势,但在将其用于翻译类型的研究之前,仍需要解决一些挑战。

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