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Photodetection of DNA mismatches by dissymmetric Ru(II)acridine based complexes
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作者 Martin Gillard Baptiste Laramée-Milette +6 位作者 Quentin Deraedt garry shanan Fredérique Loiseau Jérôme Dejeu Eric Defrancq Benjamin Elias Lionel Marcélis 《Inorganic Chemistry Frontiers》 2019年第9期2260-2270,共11页
The early detection of DNA mutations such as DNA mismatches is of major interest.Indeed,the accumulation of mismatches into the genome arises from deficiencies of the cellular mismatch repair machinery that is often a... The early detection of DNA mutations such as DNA mismatches is of major interest.Indeed,the accumulation of mismatches into the genome arises from deficiencies of the cellular mismatch repair machinery that is often associated with several types of cancers being resistant to classic chemotherapeutics.In this context,ruthenium(II)compounds bearing a planar extended ligand appear to be excellent candidates as DNA photoprobes since they exhibit high affinity for DNA as well as tuneable luminescence properties.Herein,we report on the synthesis of a novel dissymmetric acridine based Ru(II)complex,[Ru(bpy)_(2)napp]^(2+),along with the study of its ability to photodetect DNA mismatches.We also investigated the origin of the ability of the complex to photodetect mismatches via CD-melting assays and bio-layer interferometry.Interestingly,this behaviour may be attributed to a better protection of the excited state of the complex from non-radiative deexcitation sources(e.g.,collisions with the solvent,oxygen photosensitization,etc.)when intercalated into well-matched compared to mismatched DNA. 展开更多
关键词 detection dna mutations planar extended ligand dna mismatches Ru ii acridine complexes photodetection cellular mismatch repair machinery early detection dna photoprobes
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