Department of Respiratory Medicine, Binzhou Medical University Hospital, Binzhou 256603, China.
Analyst. 2018 Jan 15;143(2):429-439. doi: 10.1039/c7an01488k.
Formaldehyde (FA) is an endogenously produced reactive carbonyl species (RCS) through biological metabolic processes whose concentration is closely related to human health and disease. Noninvasive and real-time detection of FA concentration in organisms is very important for revealing the physiological and pathological functions of FA. Herein, we design and synthesize a reversible fluorescent probe BOD-NH for the detection of FA in living cells and in vivo. The probe is composed of two moieties: the BODIPY fluorophore and the primary amino group response unit. The probe undergoes an intracellular aldimine condensation reaction with FA and forms imine (C[double bond, length as m-dash]N) which will result in C[double bond, length as m-dash]N isomerization and rotation to turn-off the fluorescence of the probe. It is important that the probe can show a reversible response to FA. The probe BOD-NH has been successfully applied for detecting and imaging FA in the cytoplasm of living cells. BOD-NH is capable of detecting fluctuations in the levels of endogenous and exogenous FA in different types of living cells. The probe can be used to visualize the FA concentration in fresh hippocampus and the probe can further qualitatively evaluate the FA concentrations in ex vivo-dissected organs. Moreover, BOD-NH can also be used for imaging in mice. The above applications make our new probe a potential chemical tool for the study of physiological and pathological functions of FA in cells and in vivo.
甲醛(FA)是一种内源性的反应性羰基物种(RCS),通过生物代谢过程产生,其浓度与人类健康和疾病密切相关。非侵入性和实时检测生物体内 FA 的浓度对于揭示 FA 的生理和病理功能非常重要。在此,我们设计并合成了一种用于检测活细胞和体内 FA 的可逆荧光探针 BOD-NH。该探针由两个部分组成:BODIPY 荧光团和伯氨基反应单元。探针与 FA 在内质网中发生亚胺缩合反应,形成亚胺(C[双键,长度为 m-dash]N),这将导致 C[双键,长度为 m-dash]N 异构化和旋转,从而关闭探针的荧光。重要的是,该探针可以对 FA 表现出可逆的响应。探针 BOD-NH 已成功用于检测和成像活细胞细胞质中的 FA。BOD-NH 能够检测不同类型活细胞内内源性和外源性 FA 水平的波动。该探针可用于可视化新鲜海马体中的 FA 浓度,并且可以进一步定性评估离体解剖器官中的 FA 浓度。此外,BOD-NH 还可用于小鼠成像。上述应用使我们的新探针成为研究细胞内和体内 FA 的生理和病理功能的潜在化学工具。