酯酶激活型生物发光甲醛供体构建及高信噪比生物成像
首发时间:2023-05-10
摘要:高灵敏与高信噪比监测细胞内甲醛递送对于研究甲醛的生理和病理功能具有重要意义。然而,传统的甲醛供体采用荧光信号监测其释放,存在复杂体系自发荧光干扰等挑战。在此,我们提出了一种基于生物发光的酯酶激活型生物发光甲醛供体B-FAD用于活细胞中酯酶激活的甲醛释放与高信噪比生物发光成像。通过将D-荧光素的羟基用乙酰氧甲基醚基团保护,B-FAD不能被荧光素酶催化发光。在酯酶的存在下,B-FAD酯键断裂,生成甲醛和D-荧光素。B-FAD实现了对酯酶高选择性、高灵敏响应的甲醛释放,同时伴随34倍的生物发光增强。此外,B-FAD成功应用于活细胞酯酶激活的甲醛释放与成像,其信噪比比荧光成像高约2倍。因此,B-FAD有望成为研究细胞内甲醛的功能的有效工具。
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A Bioluminescent Enzyme-Triggered Formaldehyde Donor with High Contrast Bioimaging
Abstract:High signal-to-noise ratio (SNR) and sensitivity monitoring of formaldehyde delivery in living systems is of great significance for the precise study of the physiological and pathological functions of formaldehyde. However, traditional formaldehyde donors mainly use fluorescent signals to monitor formaldehyde release, which hampers the high-performance bioimaging due to the undesirable background autofluorescence, leading to poor SNR and compromised imaging sensitivity. Herein, we present a bioluminescent formaldehyde donor, B-FAD, for esterase-activated formaldehyde release and high SNR bioluminescence imaging. By protecting the hydroxyl group of D-luciferin with acetoxymethyl ether group, B-FAD cannot be catalyzed by luciferase to emit light. In the presence of esterase, the ester bond of B-FAD breaks, producing formaldehyde and D-luciferin. B-FAD realizes formaldehyde release with high selectivity and high sensitivity to esterase, accompanied by 34 times enhanced bioluminescence. In addition, B-FAD has been successfully applied to formaldehyde release and imaging in living cells, with a SNR about twice higher than fluorescence imaging. Therefore, B-FAD is expected to become an effective tool for studying the function of intracellular formaldehyde.
Keywords: Formaldehyde donor bioluminescence autofluorescence bioimaging
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