荧光素酶
生物发光
荧光素
化学
生物发光成像
体内
生物物理学
光发射
临床前影像学
光蛋白
生物化学
生物
转染
材料科学
基因
生物技术
光电子学
作者
Yajian Hong,Yan-yun Yang,Chenchen Wang,Yifan Huang,Weicheng Shen,Zhiqiang Shen,Zhao‐Rong Lun,Jia Zhang,Congxiao Wang,Yue Yuan
标识
DOI:10.1021/acs.analchem.4c02289
摘要
Bioluminescence imaging (BLI) is an important noninvasive optical imaging technique that has been widely used to monitor many biological processes due to its high sensitivity, resolution, and signal-to-noise ratio. However, the BLI technique based on the firefly luciferin-luciferase system is limited by the expression of exogenous luciferase and the short half-life of firefly luciferin, which pose challenges for long-term tracking in vivo. To solve the problems, here we rationally designed an intelligent strategy for persistent BLI in tumors by combining luciferase-loaded calcium phosphate nanoparticles (Luc@CaP NPs) to provide luciferase and the probe Cys(SEt)-Lys-CBT (CKCBT) to slowly produce the luciferase substrate amino luciferin (Am-luciferin). Luc@CaP NPs constructed with CaP as a carrier could enable luciferase activity to be maintained in vivo for at least 12 h. And compared to the conventional substrate luciferin, CKCBT apparently prolonged the BL time by up to 2 h through GSH-induced intracellular self-assembly and subsequent protease degradation-induced release of Am-luciferin. We anticipate that this strategy could be applied for clinical translation in more disease diagnosis and treatment in the near future.
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