Sinha Sougata, Gaur Pankaj, Dev Sagarika, Mukherjee Trinetra, Mathew Jomon, Mukhopadhyay Subhrakanti, Ghosh Subrata
School of Basic Sciences, Indian Institute of Technology Mandi, Mandi-175001, H.P., India.
Dalton Trans. 2015 May 28;44(20):9506-15. doi: 10.1039/c5dt00713e.
Novel molecular probes for imaging zinc in biological systems are gaining interest as they help in understanding the role of zinc in regulating various bio-events. In this regard, a new C2-symmetric molecular system has been developed and successfully applied as light-up material for signaling divalent zinc with green emission. The fluorescence enhancement was highly zinc specific and this newly developed probe bears a submicromolar detection capability. While probe and the ensemble -Zn(2+) exhibited remarkably high photostability, light-triggered fluorescence enhancement was observed in the case of -Zn(2+). The nature of the -Zn(2+) complex and the associated spectral shift are further supported by theoretical calculations. As the present probe absorbs in the visible region and emits in the green, it was preferred as a potential material for imaging zinc in biological systems including animal and plant cells such as pollen grains and fish egg cells. Such fluorescence imaging of zinc revealed the efficacy of the probe in detection and localization of zinc in various biological systems.
用于生物系统中锌成像的新型分子探针正受到越来越多的关注,因为它们有助于理解锌在调节各种生物事件中的作用。在这方面,一种新的C2对称分子体系已被开发出来,并成功地用作点亮材料,用于发出绿色荧光信号检测二价锌。荧光增强具有高度的锌特异性,这种新开发的探针具有亚微摩尔检测能力。虽然探针和 -Zn(2+) 整体表现出非常高的光稳定性,但在 -Zn(2+) 的情况下观察到光触发的荧光增强。理论计算进一步支持了 -Zn(2+) 配合物的性质和相关的光谱位移。由于目前的探针在可见光区域吸收并发出绿色荧光,因此它被优选作为在包括动物和植物细胞(如花粉粒和鱼卵细胞)在内的生物系统中对锌进行成像的潜在材料。这种锌的荧光成像揭示了该探针在各种生物系统中检测和定位锌的功效。