State Key Laboratory of Theoretical and Computational Chemistry, Institute of Theoretical Chemistry, Jilin University, Changchun 130023, People's Republic of China.
Inorg Chem. 2013 May 20;52(10):5702-13. doi: 10.1021/ic3022062. Epub 2013 May 8.
A two-photon fluorescent probe has become a critical tool in biology and medicine owing to its capability of imaging intact tissue for a long period of time, such as in two-photon fluorescence microscopy (TPM). In this context, a series of Salen-based zinc-ion bioimaging reagents that were designed based on an intramolecular charge-transfer mechanism were studied through the quantum-chemical method. The increase of one-photon absorption and fluorescence emission wavelength and the reduction of the oscillator strength upon coordination with a zinc ion reveal that they are fluorescent bioimaging reagents used for ratiometric detection. When the Salen ligand is incorporated with Zn(2+), the value of the two-photon absorption (TPA) cross-section (δmax) will decrease, and most of the ligands and complexes exhibit a TPA peak in the near-infrared spectral region. That is, a substituent at the end of the ligand can influence the luminescence property, besides increasing solubility. In addition, the effect of an end-substituted position on the TPA property was considered, such as ortho and meta substitution. The detailed investigations will provide a theoretical basis to synthesize zinc-ion-responsive two-photon fluorescent bioimaging reagents as powerful tools for TPM and biological detection in vivo.
由于双光子荧光探针能够长时间对完整组织进行成像,例如在双光子荧光显微镜(TPM)中,它已成为生物学和医学领域的重要工具。在这种情况下,通过量子化学方法研究了一系列基于 Salen 的锌离子生物成像试剂,这些试剂是基于分子内电荷转移机制设计的。与锌离子配位后,单光子吸收和荧光发射波长的增加以及振子强度的降低表明它们是用于比率检测的荧光生物成像试剂。当 Salen 配体与 Zn(2+) 结合时,双光子吸收(TPA)截面(δmax)的值将会降低,并且大多数配体和配合物在近红外光谱区域显示出 TPA 峰。也就是说,配体末端的取代基除了增加溶解度外,还可以影响发光性质。此外,还考虑了末端取代位置对 TPA 性质的影响,例如邻位和间位取代。详细的研究将为合成锌离子响应的双光子荧光生物成像试剂提供理论依据,这些试剂可作为 TPM 和体内生物检测的有力工具。