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二氧杂环丁烷-荧光团缀合物显著增强化学发光信号:用于传感和成像的具有颜色调制的开-关化学发光探针。

Remarkable Enhancement of Chemiluminescent Signal by Dioxetane-Fluorophore Conjugates: Turn-ON Chemiluminescence Probes with Color Modulation for Sensing and Imaging.

机构信息

Bioimaging Center, University of Geneva , CH-1211 Geneva, Switzerland.

出版信息

J Am Chem Soc. 2016 Oct 12;138(40):13438-13446. doi: 10.1021/jacs.6b09173. Epub 2016 Sep 29.

DOI:10.1021/jacs.6b09173
PMID:27652602
Abstract

Chemiluminescence is among the most sensitive methods for achieving a high signal-to-noise ratio in various chemical and biological applications. We have developed a modular practical synthetic route for preparation of turn-ON fluorophore-tethered dioxetane chemiluminescent probes. The chemiluminescent emission of the probes was significantly amplified through an energy-transfer mechanism under physiological conditions. Two probes were composed with green and near-infrared (NIR) fluorescent dyes tethered to Schaap's dioxetane. While both probes were able to provide chemiluminescence in vivo images following subcutaneous injection, only the NIR probe could provide a chemiluminescence image following intraperitoneal injection. These are the first in vivo images produced by Schaap's dioxetane chemiluminescence probes with no need of an enhancer. Previously, chemiluminescence cell images could only be obtained with a luciferin-based probe. Our NIR probe was able to image cells transfected with β-galactosidase gene by chemiluminescence microscopy. We also report, for the first time, the instability of dioxetane-fluorophore conjugates to ambient light. Our synthetic route effectively overcomes this limitation through a late-stage functionalization of the dioxetane intermediate. We anticipate that our practical synthetic methodology will be useful for preparation of various chemiluminescent probes for numerous applications.

摘要

化学发光是在各种化学和生物应用中实现高信噪比的最灵敏方法之一。我们已经开发了一种用于制备开-关荧光团键合二氧杂环丁烷化学发光探针的模块化实用合成路线。在生理条件下,通过能量转移机制,探针的化学发光发射得到了显著放大。两种探针由绿色和近红外(NIR)荧光染料与 Schaap 的二氧杂环丁烷键合而成。虽然两种探针都能够在皮下注射后提供体内化学发光图像,但只有近红外探针能够在腹腔注射后提供化学发光图像。这些是第一个无需增强剂即可产生的 Schaap 二氧杂环丁烷化学发光探针的体内图像。此前,只有基于荧光素的探针才能获得化学发光细胞图像。我们的近红外探针能够通过化学发光显微镜对转染 β-半乳糖苷酶基因的细胞进行成像。我们还首次报道了二氧杂环丁烷-荧光团缀合物对环境光的不稳定性。我们的合成路线通过二氧杂环丁烷中间体的后期功能化有效地克服了这一限制。我们预计我们的实用合成方法将有助于制备各种用于众多应用的化学发光探针。

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