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Halogen-containing thiazole orange analogues - new fluorogenic DNA stains.


ABSTRACT: Novel asymmetric monomeric monomethine cyanine dyes 5a-d, which are analogues of the commercial dsDNA fluorescence binder thiazole orange (TO), have been synthesized. The synthesis was achieved by using a simple, efficient and environmetally benign synthetic procedure to obtain these cationic dyes in good to excellent yields. Interactions of the new derivatives of TO with dsDNA have been investigated by absorption and fluorescence spectroscopy. The longest wavelength absorption bands in the UV-vis spectra of the target compounds are in the range of 509-519 nm and these are characterized by high molar absorptivities (63000-91480 L·mol-1·cm-1). All investigated dyes from the series are either not fluorescent or their fluorescence is quite low, but they become strongly fluorescent after binding to dsDNA. The influence of the substituents attached to the chromophores was investigated by combination of spectroscopic (UV-vis and fluorescence spectroscopy) and theoretical (DFT and TDDFT calculations) methods.

SUBMITTER: Vasilev AA 

PROVIDER: S-EPMC5753173 | biostudies-literature | 2017

REPOSITORIES: biostudies-literature

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Halogen-containing thiazole orange analogues - new fluorogenic DNA stains.

Vasilev Aleksey A AA   Kandinska Meglena I MI   Stoyanov Stanimir S SS   Yordanova Stanislava B SB   Sucunza David D   Vaquero Juan J JJ   Castaño Obis D OD   Baluschev Stanislav S   Angelova Silvia E SE  

Beilstein journal of organic chemistry 20171228


Novel asymmetric monomeric monomethine cyanine dyes <b>5a-d</b>, which are analogues of the commercial dsDNA fluorescence binder thiazole orange (<b>TO</b>), have been synthesized. The synthesis was achieved by using a simple, efficient and environmetally benign synthetic procedure to obtain these cationic dyes in good to excellent yields. Interactions of the new derivatives of <b>TO</b> with dsDNA have been investigated by absorption and fluorescence spectroscopy. The longest wavelength absorpt  ...[more]

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