Yadav Vikas, Saini Saakshi, Roy Partha, Layek Samar, Goswami Tapas, Kumar Sushil
Department of Chemistry, School of Engineering, University of Petroleum & Energy Studies (UPES), 248007, Dehradun, Uttarakhand, India.
Nanoscopic Imaging and Sensing Lab, Indian Institute of Technology Delhi, Hauz Khas, 110016, New Delhi, India.
Chempluschem. 2024 Apr;89(4):e202300721. doi: 10.1002/cplu.202300721. Epub 2024 Mar 8.
An easily synthesizable indole-derived chromofluorogenic probe InNS has been demonstrated for recognition of trivalent metal ions (i. e., Al, Ga, In and Fe). Both UV-Vis and emission spectral studies have been employed to assess the cation sensing ability of InNS in semi-aqueous medium. This probe exhibited a chromogenic response for these metal ions, and the related change was accompanied with the appearance of a new absorption near 376 nm. An obvious color change from pale yellow to dark yellow could also be noticed upon addition of the aforementioned metal ions to the probe's solution. Distinctively from the UV-Vis analysis, the fluorescence behavior of InNS was completely different; it displayed a 'turn-on' fluorescence response for only Al among all the studied cations. The detection limit and the association constant (K) for Al were determined to be 12.5 nM and 6.85×10 M, respectively. A potential 1 : 1 binding mode of Al-InNS has been established based on Job's plot, H NMR and DFT analyses. The reversibility experiment was conducted using strongly chelating EDTA ion, and a corresponding logic gate has been devised. In terms of practical applications, the InNS has been utilized to detect Al in human breast carcinoma (MCF-7) cell lines displaying promising 'turn-on' bioimaging experiments.
一种易于合成的吲哚衍生的发色荧光探针InNS已被证明可用于识别三价金属离子(即Al、Ga、In和Fe)。紫外-可见光谱和发射光谱研究均已用于评估InNS在半水介质中的阳离子传感能力。该探针对这些金属离子表现出显色响应,相关变化伴随着在376 nm附近出现新的吸收峰。向探针溶液中加入上述金属离子后,还可观察到明显的颜色变化,从浅黄色变为深黄色。与紫外-可见光谱分析不同的是,InNS的荧光行为完全不同;在所有研究的阳离子中,它仅对Al表现出“开启”荧光响应。Al的检测限和缔合常数(K)分别测定为12.5 nM和6.85×10 M。基于Job曲线、1H NMR和DFT分析,确定了Al-InNS潜在的1:1结合模式。使用强螯合的EDTA离子进行了可逆性实验,并设计了相应的逻辑门。在实际应用方面,InNS已被用于检测人乳腺癌(MCF-7)细胞系中的Al,显示出有前景的“开启”生物成像实验。