Yan Xinhao, Kim Jin Ju, Jeong Hye Sun, Moon Yu Kyung, Cho Yoon Kyung, Ahn Soyeon, Jun Sang Beom, Kim Hakwon, You Youngmin
Department of Applied Chemistry, Kyung Hee University , Yongin, Gyeonggi-do 17104, Korea.
Inorg Chem. 2017 Apr 17;56(8):4332-4346. doi: 10.1021/acs.inorgchem.6b02786. Epub 2017 Apr 5.
The study of the zinc biology requires molecular probes with proper zinc affinity. We developed a low-affinity zinc probe (HBO-ACR) based on an azacrown ether (ACR) and an 2-(2-hydroxyphenyl)benzoxazole (HBO) fluorophore. This probe design imposed positive charge in the vicinity of a zinc coordination center, which enabled fluorescence turn-on responses to high levels of zinc without being affected by the pH and the presence of other transition-metal ions. Steady-state and transient photophysical investigations suggested that such a high tolerance benefits from orchestrated actions of proton-induced nonradiative and zinc-induced radiative control. The zinc bioimaging utility of HBO-ACR has been fully demonstrated with the use of human pancreas epidermoid carcinoma, PANC-1 cells, and rodent hippocampal neurons from cultures and acute brain slices. The results obtained through our studies established the validity of incorporating positively charged ionophores for the creation of low-affinity probes for the visualization of biometals.
锌生物学的研究需要具有适当锌亲和力的分子探针。我们基于氮杂冠醚(ACR)和2-(2-羟基苯基)苯并恶唑(HBO)荧光团开发了一种低亲和力锌探针(HBO-ACR)。这种探针设计在锌配位中心附近引入了正电荷,使得荧光能够对高水平的锌产生开启响应,而不受pH值和其他过渡金属离子存在的影响。稳态和瞬态光物理研究表明,这种高耐受性得益于质子诱导的非辐射和锌诱导的辐射控制的协同作用。通过使用人胰腺表皮样癌PANC-1细胞以及培养的和急性脑切片中的啮齿动物海马神经元,充分证明了HBO-ACR在锌生物成像中的效用。我们的研究结果证实了引入带正电荷的离子载体以创建用于生物金属可视化的低亲和力探针的有效性。