A Switch-On NIR Probe for Specific Detection of Hg2+ Ion in Aqueous Medium and in Mitochondria

化学 分子内力 光化学 紧身衣 荧光 发光 分子 半色移 试剂 量子产额 离子 立体化学 物理化学 有机化学 量子力学 光电子学 物理
作者
Hridesh Agarwalla,Pankaj S. Mahajan,Debashis Sahu,Nandaraj Taye,Bishwajit Ganguly,Santosh B. Mhaske,Samit Chattopadhyay,Amitava Das
出处
期刊:Inorganic Chemistry [American Chemical Society]
卷期号:55 (22): 12052-12060 被引量:71
标识
DOI:10.1021/acs.inorgchem.6b02233
摘要

A new 4,4-difluoro-4-bora-3a,4a-diaza-s-indacene (BODIPY)-based probe molecule ( L ) is synthesized for specific binding to Hg 2+ ion in physiological condition with an associated luminescence ON response in the near-IR region of the spectrum. Appropriate functionalization in the 5-position of each of two pyrrole moieties with styryl functionality in a BODIPY core helped us in achieving the extended conjugation and a facile intramolecular charge transfer transition with a narrow energy gap for frontier orbitals. This accounted for a poor emission quantum yield for the probe molecule L . Binding to Hg 2+ helped in interrupting the facile intramolecular charge transfer (ICT) process that was initially operational for L . This resulted in a hypsochromic shift of absorption band and a turn-on luminescence response with λ Max Ems of 650 nm on specific binding to Hg 2+ . Observed spectral changes are rationalized based on quantum chemical calculations. Interestingly, this reagent is found to be localized preferentially in the mitochondria of the live human colon cancer (Hct116) cells. Mitochondria is one of the major targets for localization of Hg 2+, which actually decreases the mitochondrial membrane potential and modifies various proteins having sulfudryl functionality(ies) to cause cell apoptosis. Considering these, ability of the present reagent to specifically recognize Hg 2+ in the mitochondrial region of the live Hct116 cells has significance.
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