Li Yu, Chen Li, Zhu Yan, Chen Liming, Yu Xianglin, Li Junbo, Chen Dugang
Hubei Provincial Academy of Eco-Environmental Sciences Wuhan 430072 China
Key Laboratory for Green Chemical Process of Ministry of Education, School of Chemical Engineering and Pharmacy, Wuhan Institute of Technology Wuhan 430205 China
RSC Adv. 2021 Jun 15;11(34):21116-21126. doi: 10.1039/d1ra03221f. eCollection 2021 Jun 9.
The detection of small molecular biothiols (cysteine, homocysteine and glutathione) is of great importance, as they involve in a series of physiological and pathological processes and are associated with many diseases. To realize the real-time monitoring of a specific biothiol, a rapid and reversible probe is required. Therefore, three probes, namely, -MNPy, -MNPy and -MNPy, with pyridine substituted α, β-unsaturated ketone as the recognition site, were reported here, and the reactivity of the recognition site was finely tuned by the connection mode of the pyridine unit. To single out the optimal one, the response performances of three probes toward each biothiol were systemically studied, taking the differences of the intracellular contents of three biothiols into account during the evaluation. Biothiols reacted with the probes through Michael addition, and results showed that the slight structural variations could affect the performances of the probes obviously. -MNPy with the pyridine unit connected to the recognition site through the -position of the nitrogen atom, revealed the best sensing ability among the three probes. It demonstrated rapid response, good selectivity and sensitivity, excellent pH adaptability to Cys and GSH, and displayed reversible detection toward GSH. Finally, -MNPy was successfully applied to track the GSH fluctuations under the oxidative stress stimulated by HO in living cells.
小分子生物硫醇(半胱氨酸、同型半胱氨酸和谷胱甘肽)的检测至关重要,因为它们参与一系列生理和病理过程,并与许多疾病相关。为了实现对特定生物硫醇的实时监测,需要一种快速且可逆的探针。因此,本文报道了三种以吡啶取代的α,β-不饱和酮为识别位点的探针,即-MNPy、-MNPy和-MNPy,并且通过吡啶单元的连接方式对识别位点的反应活性进行了精细调节。为了选出最佳探针,在评估过程中考虑了三种生物硫醇细胞内含量的差异,系统地研究了三种探针对每种生物硫醇的响应性能。生物硫醇通过迈克尔加成与探针反应,结果表明微小的结构变化会明显影响探针的性能。吡啶单元通过氮原子的-位连接到识别位点的-MNPy在三种探针中表现出最佳的传感能力。它表现出快速响应、良好的选择性和灵敏度、对Cys和GSH具有优异的pH适应性,并且对GSH显示出可逆检测。最后,-MNPy成功应用于跟踪活细胞中由HO刺激的氧化应激下GSH的波动。