To synthesize perylenbisimides (PBI) fluorescent probes that will improve the water-soluble ability and the cytocompatibility, the synthesis and properties of fluorescent water-soluble probes based on dendritic ammonium cation polyethylene glycol (PEG) substituted perylenebisimides(GPDIs) are presented. As we expected, with increased ammonium cation PEG, the aggregation of the PBI in an aqueous solution is completely suppressed by the hydrophilic ammonium cation PEG groups. And the fluorescence quantum yield increases from 25% for GPDI-1 to 62% for GPDI-2. When incubated with Hela cells for 48 h, the viabilities are 71% (for GPDI-1) and 76% (for GPDI-2). Live cell imaging shows that these probes are efficiently internalized by HeLa cells. The study of the photophysical properties indicated increasing the ammonium cation PEG generation can increase the fluorescence quantum yield. Live cell imaging shows that with the ammonium cation PEG chains of perylenebisimides has high biocompatibility. The exceptionally low cytotoxicity is ascribed to the ammonium cation PEG chains, which protect the dyes from nonspecifically interacting with the extracellular proteins. Live cell imaging shows that ammonium cations PEG chains can promote the internalization of these probes.
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UNIV PIERRE & MARIE CURIE,ECOLE SUPER PHYS & CHIM IND,PHYSIOCHIM MACROMOLEC LAB 278,F-75231 PARIS 05,FRANCEUNIV PIERRE & MARIE CURIE,ECOLE SUPER PHYS & CHIM IND,PHYSIOCHIM MACROMOLEC LAB 278,F-75231 PARIS 05,FRANCE
MABIRE, F
AUDEBERT, R
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UNIV PIERRE & MARIE CURIE,ECOLE SUPER PHYS & CHIM IND,PHYSIOCHIM MACROMOLEC LAB 278,F-75231 PARIS 05,FRANCEUNIV PIERRE & MARIE CURIE,ECOLE SUPER PHYS & CHIM IND,PHYSIOCHIM MACROMOLEC LAB 278,F-75231 PARIS 05,FRANCE
AUDEBERT, R
QUIVORON, C
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UNIV PIERRE & MARIE CURIE,ECOLE SUPER PHYS & CHIM IND,PHYSIOCHIM MACROMOLEC LAB 278,F-75231 PARIS 05,FRANCEUNIV PIERRE & MARIE CURIE,ECOLE SUPER PHYS & CHIM IND,PHYSIOCHIM MACROMOLEC LAB 278,F-75231 PARIS 05,FRANCE