A versatile near-infrared asymmetric tricarbocyanine for zinc ion sensing in water

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Abstract

We have synthesized a near-infrared emissive asymmetric tricarbocyanine conveniently functionalized to improve bioconjugation. The leading structure contains a versatile derivatization point at the meso position for facile radical-nucleophilic aromatic substitution. We have evaluated a DPEN (N,N-di(2-picolyl)ethylendiamine) derivative of this dye as a highly selective sensor for zinc (II) in aqueous medium, which performs in an appropriate sensitivity range for biological studies. The probe was successfully conjugated to a protein-ligand model with high affinity and specificity (biotin-streptavidin technology) rendering an excellent performance of sensing. In a general strategy to obtain sensitive probes combining fluorescent nanoparticles and molecular fluorophores, a preliminary design of a supramolecular assembly derived from the conjugation of the molecular sensor to quantum dots (QDs) was also investigated. The advantages and problems of FRET-based sensors are also discussed. © 2013 The American Society of Photobiology.

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Menéndez, G. O., Lõpez, C. S., Jares-Erijman, E. A., & Spagnuolo, C. C. (2013). A versatile near-infrared asymmetric tricarbocyanine for zinc ion sensing in water. Photochemistry and Photobiology, 89(6), 1354–1361. https://doi.org/10.1111/php.12160

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