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A Two‐Dimensional Coordination Compound as a Zinc Ion Selective Luminescent Probe for Biological Applications
Authors:Koushik Dhara  Santanu Karan  Jagnyeswar Ratha  Partha Roy  Goutam Chandra  Mario Manassero Dr.  Biswanath Mallik Dr.  Pradyot Banerjee Dr.
Affiliation:1. Department of Inorganic Chemistry, Indian Association for the Cultivation of Science, Jadavpur, Kolkata‐700?032, India, Fax: (+91)?33‐2473‐2805;2. Department of Spectroscopy, Indian Association for the Cultivation of Science, Jadavpur, Kolkata‐700?032, India;3. Cellular Biochemistry Division, Indian Institute of Chemical Biology, Jadavpur, Kolkata‐700?032, India;4. Division of Clinical and Experimental Neurosciences, Indian Institute of Chemical Biology, Jadavpur, Kolkata‐700?032, India;5. Dipartimento di Chimica Strutturale e Stereochimica, Inorganica dell'Università di Milano, Via G. Venezian 21, 20133 Milano, Italy
Abstract:A 2D coordination compound {[Cu2(HL)(N3)]?ClO4} ( 1 ; H3L=2,6‐bis(hydroxyethyliminoethyl)‐4‐methyl phenol) was synthesized and characterized by single‐crystal X‐ray diffraction to be a polymer in the crystalline state. Each [Cu2(HL)(N3)]+ species is connected to its adjacent unit by a bridging alkoxide oxygen atom of the ligand to form a helical propagation along the crystallographic a axis. The adjacent helical frameworks are connected by a ligand alcoholic oxygen atom along the crystallographic b axis to produce pleated 2D sheets. In solution, 1 dissociates into [Cu2(HL)2(H3L)]?2H2O ( 2 ); the monomer displays high selectivity for Zn2+ and can be used in HEPES buffer (pH 7.4) as a zinc ion selective luminescent probe for biological application. The system shows a nearly 19‐fold Zn2+‐selective chelation‐enhanced fluorescence response in the working buffer. Application of 2 to cultured living cells (B16F10 mouse melanoma and A375 human melanoma) and rat hippocampal slices was also studied by fluorescence microscopy.
Keywords:biosensors  copper  fluorescent probes  luminescence  zinc sensors
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