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Electron-Rich EDOT Linkers in Tetracationic bis-Triarylborane Chromophores: Influence on Water Stability, Biomacromolecule Sensing, and Photoinduced Cytotoxicity (CROSBI ID 310616)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Ferger, Matthias ; Roger, Chantal ; Köster, Eva ; Rauch, Florian ; Lorenzen, Sabine ; Krummenacher, Ivo ; Friedrich, Alexandra ; Košćak, Marta ; Nestić, Davor ; Braunschweig, Holger et al. Electron-Rich EDOT Linkers in Tetracationic bis-Triarylborane Chromophores: Influence on Water Stability, Biomacromolecule Sensing, and Photoinduced Cytotoxicity // Chemistry : a European journal, 28 (2022), 48; e202201130, 14. doi: 10.1002/chem.202201130

Podaci o odgovornosti

Ferger, Matthias ; Roger, Chantal ; Köster, Eva ; Rauch, Florian ; Lorenzen, Sabine ; Krummenacher, Ivo ; Friedrich, Alexandra ; Košćak, Marta ; Nestić, Davor ; Braunschweig, Holger ; Lambert, Christoph ; Piantanida, Ivo ; Marder, Todd B.

engleski

Electron-Rich EDOT Linkers in Tetracationic bis-Triarylborane Chromophores: Influence on Water Stability, Biomacromolecule Sensing, and Photoinduced Cytotoxicity

Three novel tetracationic bis-triarylboranes with 3, 4-ethylenedioxythiophene (EDOT) linkers, and their neutral precursors, showed significant red-shifted absorption and emission compared to their thiophene-containing analogues, with one of the EDOT-derivatives emitting in the NIR region. Only the EDOT-linked trixylylborane tetracation was stable in aqueous solution, indicating that direct attachment of a thiophene or even 3-methylthiophene to the boron atom is insufficient to provide hydrolytic stability in aqueous solution. Further comparative analysis of the EDOT-linked trixylylborane tetracation and its bis-thiophene analogue revealed efficient photo-induced singlet oxygen production, with the consequent biological implications. Thus, both analogues bind strongly to ds-DNA and BSA, very efficiently enter living human cells, accumulate in several different cytoplasmic organelles with no toxic effect but, under intense visible light irradiation, they exhibit almost instantaneous and very strong cytotoxic effects, presumably attributed to singlet oxygen production. Thus, both compounds are intriguing theranostic agents, whose intracellular and probably intra-tissue location can be monitored by strong fluorescence, allowing switching on of the strong bioactivity by well-focused visible light.

boranes ; DNA/RNA sensors ; fluorescent probes ; singlet oxygen ; theranostics

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Podaci o izdanju

28 (48)

2022.

e202201130

14

objavljeno

0947-6539

1521-3765

10.1002/chem.202201130

Povezanost rada

Biologija, Kemija

Poveznice
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