生物发光
超氧化物
能量转移
化学
离子
光化学
生物化学
化学物理
有机化学
酶
作者
Wenyi Liao,Yueyuan Pan,Jiaxin Fu,Xiang Sun,Xi Zhou,Miao Wang,Lihuang Li,Lei Ren
标识
DOI:10.1021/acsabm.4c01558
摘要
Superoxide anion (O2•–) is a highly reactive oxygen species (ROS) within tumor cells, and its abnormal concentrations can lead to various diseases such as cancer, inflammation, and premature aging disorders. Here, we obtained a series of bioluminescence resonance energy transfer (BRET) systems that can be used for sensitive and specific detection of O2•– by varying the type and reaction time of quantum dots (QDs) and combining them with different concentrations of recombinant aequorin. Among them, the recombinant aequorin-conjugated CdTe/CdSe QDs had the highest conjugation efficiency as the Aeq-QD BRET sensor, which has a remarkable energy transfer efficiency of 35.6% and an extremely low limit of 4 nM for detecting O2•–, which exceeds traditional chemiluminescence detection relying on coelenterazine. The applicability of this sensor for assessing tumor oxidative stress levels was also validated in diverse cell types and cancer mice. This study effectively contributes to the field of cancer research and tumor oxidative stress biology based on O2•– sensing.
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