Zhang Wei, Wang Ruixia, Liu Wei, Wang Xin, Li Ping, Zhang Wen, Wang Hui, Tang Bo
College of Chemistry , Chemical Engineering and Materials Science , Collaborative Innovation Center of Functionalized Probes for Chemical Imaging in Universities of Shandong , Key Laboratory of Molecular and Nano Probes , Ministry of Education , Institute of Biomedical Sciences , Shandong Normal University , Jinan 250014 , P. R. China . Email:
Chem Sci. 2017 Nov 8;9(3):721-727. doi: 10.1039/c7sc03878j. eCollection 2018 Jan 21.
Acute strenuous exercise and emotional changes are closely related to important aspects of human health. The superoxide anion (O˙), as one of the primary reactive oxygen species (ROS), is intimately associated with major diseases. However, there is no relevant research for directly indicating the link between O˙ level and acute physical exercise or emotional changes. Hence, we constructed three fluorescent probes for the detection of O˙, including a Te-containing molecular probe and Se- and Te-containing CDs, and evaluated their properties such as selectivity, sensitivity, instantaneity and dynamic response to O˙. Through performance comparisons, we found that the Te-containing CDs exhibited reversibility, instantaneity and the highest sensitivity (LOD ∼ 8.0 pM), under guarantees of specific recognition of O˙, which ensure they are suitable for tracing native level changes in O˙ within living systems. The probe was applied for monitoring the levels of O˙ in mice under the state of intense exercise, irritability and mild depression, which led to the levels of O˙ significantly increasing compared to the normal condition. Furthermore, we used the Te-containing CDs for real-time and dynamic imaging of O˙ fluxes in the brain of mild depression mice and witnessed a positive correlation between O˙ levels and depression. This work provides a new strategy for studying the relationship between acute exercise or emotional changes and diseases at the level of ROS.
急性剧烈运动和情绪变化与人类健康的重要方面密切相关。超氧阴离子(O˙)作为主要的活性氧物种(ROS)之一,与重大疾病密切相关。然而,尚无直接表明O˙水平与急性体育锻炼或情绪变化之间联系的相关研究。因此,我们构建了三种用于检测O˙的荧光探针,包括一种含碲分子探针以及含硒和碲的碳点,并评估了它们对O˙的选择性、灵敏度、即时性和动态响应等特性。通过性能比较,我们发现含碲碳点在对O˙进行特异性识别的前提下,表现出可逆性、即时性和最高灵敏度(检测限 ∼ 8.0 pM),这确保它们适用于追踪生物系统中O˙的天然水平变化。该探针被用于监测小鼠在剧烈运动、易怒和轻度抑郁状态下的O˙水平,结果显示与正常状态相比,这些状态下的O˙水平显著升高。此外,我们使用含碲碳点对轻度抑郁小鼠大脑中的O˙通量进行实时动态成像,并观察到O˙水平与抑郁之间存在正相关。这项工作为在活性氧水平上研究急性运动或情绪变化与疾病之间的关系提供了一种新策略。