Synthesis and characterization of new fluorescent boro-β-carboline dyes

The first representatives of the new fluorescent boro-β-carboline family were synthesized by the insertion of the difluoroboranyl group into the oxaza or diaza core. The resulting compounds showed good photophysical properties with fine Stokes-shifts in the range of 38-85 nm with blue and green emis...

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Veröffentlicht in:RSC advances 2021-04, Vol.11 (21), p.1282-1287
Hauptverfasser: Szepesi Kovács, Dénes, Hajdu, Imre, Mészáros, Gergely, Wittner, Lucia, Meszéna, Domokos, Tóth, Estilla Zsófia, Heged s, Zita, Ran elovi, Ivan, Tóvári, József, Szabó, Tímea, Szilágyi, Bence, Milen, Mátyás, Keser, György Miklós, Ábrányi-Balogh, Péter
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Sprache:eng
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Zusammenfassung:The first representatives of the new fluorescent boro-β-carboline family were synthesized by the insertion of the difluoroboranyl group into the oxaza or diaza core. The resulting compounds showed good photophysical properties with fine Stokes-shifts in the range of 38-85 nm with blue and green emission. The energetics of the excitation states and molecular orbitals of two members were investigated by quantum chemical computations suggesting effects for the improved properties of diazaborinino-carbolines over oxazaborolo-carbolines. These properties nominated this chemotype as a new fluorophore for the development of fluorescent probes. As an example, diazaborinino-carbolines were used for the specific labeling of anti-Her2 antibody trastuzumab. The fluorescent conjugate showed a high fluorophore-antibody ratio and was confirmed as a useful tool for labeling and confocal microscopy imaging of tumour cells in vitro together with the ex vivo two-photon microscopy imaging of tumour slices. The first representatives of fluorescent boro-β-carbolines were applied for labeling trastuzumab. The antibody fluorophore conjugate was confirmed as a useful tool for labeling and imaging tumour cells in confocal and two-photon microscopy.
ISSN:2046-2069
2046-2069
DOI:10.1039/d1ra02132j