Efficient Polymer Pendant Approach toward High Stable Organic Fluorophore for Sensing Ultratrace Hg with Improved Biological Compatibility and Cell Permeability.

Anal Chem

State Key Laboratory for Modification of Chemical Fibers, College of Chemistry, Chemical Engineering and Biotechnology , Donghua University, Shanghai 201620 , China.

Published: February 2020

A convenient and efficient method to eliminate the aggregation effect of organic photoelectric sensing materials and to improve biological compatibility and cell permeability as well was developed by hanging organic fluorophores on a polymer chain, for example, fluorescein fluorophores had been controllably hung on polyacrylamide main chains with a 1:2 stoichiometric ratio by a simple copolymerization strategy. The results showed that introduction of water-soluble bioactive polyacrylamide main chains into fluorescein fluorophores via covalent bonds could effectively improve their optical stability by deteriorating π-π stack and charge-transfer interactions among different fluorophores. More importantly, the resultant materials possessed low toxicity and excellent cell permeability ten times larger than their precursor fluorescein fluorophore, which made it express an especially turn-on fluorescent response to ultratrace Hg both in aqueous and living cells by forming stable 5-member-ring complexes with Hg with a correlation coefficient of 0.997 and a low detection limit of 4.0 × 10 mol·L. This work provides promising insight into constructing some practical sensing materials for environmentally-friendly biological analyses.

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http://dx.doi.org/10.1021/acs.analchem.9b05174DOI Listing

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