College of Chemistry, Chemical Engineering and Materials Science, Collaborative Innovation Center of Functional-ized Probes for Chemical Imaging in Universities of Shandong, Key Laboratory of Molecular and Nano Probes, Ministry of Education, Shandong Provincial Key Laboratory of Clean Production of Fine Chemicals, Shandong Normal University , Jinan 250014, P. R. China.
J Am Chem Soc. 2016 Mar 9;138(9):2893-6. doi: 10.1021/jacs.5b11784. Epub 2016 Mar 1.
Despite significant developments in optical imaging of superoxide anion (O2(•-)) as the preliminary reactive oxygen species, novel visualizing strategies that offer ultrahigh sensitivity are still imperative. This is mainly because intrinsic concentrations of O2(•-) are extremely low in living systems. Herein, we present the rational design and construction of a new polymer nanoprobe PCLA-O2(•-) for detecting O2(•-) based on chemiluminescence (CL) resonance energy transfer without an external excitation source. Structurally, PCLA-O2(•-) contains two moieties linked covalently, namely imidazopyrazinone that is capable of CL triggered by O2(•-) as the energy donor and conjugated polymers with light-amplifying property as the energy acceptor. Experiment results demonstrate that PCLA-O2(•-) exhibits ultrahigh sensitivity at the picomole level, dramatically prolonged luminescence time, specificity, and excellent biocompatibility. Without exogenous stimulation, this probe for the first time in situ visualizes O2(•-) level differences between normal and tumor tissues of mice. These exceptional features ensure that PCLA-O2(•-) as a self-luminescing probe is an alternative in vivo imaging approach for ultralow level O2(•-).
尽管超氧阴离子 (O2(•-)) 的光学成像技术在作为初步活性氧物种方面取得了重大进展,但仍需要开发具有超高灵敏度的新型可视化策略。这主要是因为活系统中 O2(•-) 的本征浓度极低。在此,我们提出了一种新的聚合物纳米探针 PCLA-O2(•-) 的合理设计和构建,用于基于化学发光 (CL) 共振能量转移的 O2(•-) 检测,而无需外部激发源。结构上,PCLA-O2(•-) 包含两个共价连接的部分,即作为能量供体的能够被 O2(•-) 触发 CL 的咪唑并吡嗪酮和具有光放大性能的共轭聚合物作为能量受体。实验结果表明,PCLA-O2(•-) 在皮摩尔水平上具有超高的灵敏度,显著延长了发光时间、特异性和出色的生物相容性。无需外源刺激,该探针首次在体原位可视化了小鼠正常组织和肿瘤组织之间的 O2(•-) 水平差异。这些独特的特性确保了 PCLA-O2(•-) 作为自发光探针是超低声级 O2(•-) 的体内成像替代方法。