School of Chemical and Environmental Engineering, Shanghai Institute of Technology, Shanghai, China.
School of Pharmacy, Fudan University, 826 Zhangheng Road, Shanghai, China.
Luminescence. 2020 Dec;35(8):1384-1390. doi: 10.1002/bio.3902. Epub 2020 Jun 30.
Nitroxyl (HNO), a one-electron reduction product of nitric oxide, demonstrates distinct biological and pharmacological activities. Here we designed a bioluminescent turn-on probe, HNO-8, that could be used to visualize HNO without the need for excitation light. HNO-8 was prepared by caging 2-hydroxyethyl luciferin with a triphenylphosphine unit, in which 2-hydroxyethyl luciferin as a novel substrate of firefly luciferase was characterized by stronger and more sustained bioluminescent signals than the most popular substrates of d-luciferin and 6'-aminoluciferin. In vitro experiments showed that HNO-8 could selectively respond to HNO generated from Angeli's salt(AS) in the range 1-50 μM, with a limit of detection of 0.196 μM. The probe was successfully applied for visualizing HNO in luciferase-transfected Huh7 cancer cells. We envision that HNO-8 could be used as a powerful bioluminescent sensor for researching HNO biological roles.
硝酰自由基(HNO)是一氧化氮的单电子还原产物,具有独特的生物学和药理学活性。在这里,我们设计了一种生物发光型 HNO 探针 HNO-8,它可以在不需要激发光的情况下用于可视化 HNO。HNO-8 通过用三苯基膦单元对 2-羟乙基荧光素进行笼蔽来制备,其中 2-羟乙基荧光素作为萤火虫荧光素的新型底物,其生物发光信号比最流行的 d-荧光素和 6'-氨基荧光素的底物更强且更持久。体外实验表明,HNO-8 可以选择性地响应 1-50 μM 范围内的 Angeli's salt(AS)生成的 HNO,检测限为 0.196 μM。该探针成功地应用于转染 luciferase 的 Huh7 癌细胞中 HNO 的可视化。我们设想 HNO-8 可以用作研究 HNO 生物学作用的强大生物发光传感器。