School of Chemical Engineering, University of Science and Technology Liaoning, Anshan, Liaoning Province, 114051, P. R. China.
Anshan Tumor Hospital, 339 Shenhua Road, Lishan District, Anshan, Liaoning Province, P. R. China.
Chem Asian J. 2021 Nov 2;16(21):3419-3426. doi: 10.1002/asia.202100926. Epub 2021 Sep 12.
The detection of changes in the reactive oxygen species (ROS)/reactive sulfur species (RSS) couple is important for studying the cellular redox state. Herein, we developed a 1,8-naphthalimide-based fluorescence probe (NI) for the reversible detection of bisulfite (HSO ) and hydrogen peroxide (H O ) in vitro and in vivo. NI has been designed with a reactive ethylene unit which specifically reacts with HSO by a Michael addition reaction mechanism, resulting in the quenching of yellow fluorescence at 580 nm and the appearing of green fluorescence at 510 nm upon excitation at 500 nm and 430 nm, respectively. The addition product (NI-HSO ) could be specifically oxidized to form the original C=C bond of NI, recovering the fluorescence emission and color. The detection limits of NI for HSO and NI-HSO for H O were calculated to be 2.05 μM and 4.23 μM, respectively. The reversible fluorescence response of NI towards HSO /H O couple can be repeated for at least five times. NI is reliable at a broad pH range (pH 3.0-11.5) and features outstanding selectivity, which enabled its practical applications in biological and food samples. Monitoring the reversible and dynamic inter-conversion between HSO and H O in vitro and in vivo has been verified by fluorescence imaging in live HeLa cells, adult zebrafish and nude mice. Moreover, NI has been successfully applied to detect of HSO levels in food samples.
活性氧(ROS)/活性硫(RSS)偶联物变化的检测对于研究细胞氧化还原状态非常重要。在此,我们开发了一种基于 1,8-萘二甲酰亚胺的荧光探针(NI),用于体外和体内可逆检测亚硫酸氢盐(HSO )和过氧化氢(H O )。NI 设计有一个反应性乙烯单元,该单元通过迈克尔加成反应机制特异性地与 HSO 反应,导致在 580nm 处黄色荧光猝灭,并在分别在 500nm 和 430nm 激发时在 510nm 处出现绿色荧光。加合物(NI-HSO )可以被特异性氧化以形成 NI 的原始 C=C 键,恢复荧光发射和颜色。NI 对 HSO 和 NI-HSO 对 H O 的检测限分别计算为 2.05μM 和 4.23μM。NI 对 HSO /H O 偶联物的可逆荧光响应可以至少重复五次。NI 在很宽的 pH 范围(pH 3.0-11.5)内可靠且具有出色的选择性,使其能够在生物和食品样品中实际应用。通过在活 HeLa 细胞、成年斑马鱼和裸鼠中进行荧光成像,验证了 NI 对体外和体内 HSO 和 H O 之间可逆和动态互变的监测。此外,NI 已成功应用于检测食品样品中的 HSO 水平。