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1.
Angew Chem Int Ed Engl ; 59(40): 17628-17633, 2020 09 28.
Artigo em Inglês | MEDLINE | ID: mdl-32627920

RESUMO

Metal-mediated intracellular reactions are becoming invaluable tools in chemical and cell biology, and hold promise for strongly impacting the field of biomedicine. Most of the reactions reported so far involve either uncaging or redox processes. Demonstrated here for the first time is the viability of performing multicomponent alkyne cycloaromatizations inside live mammalian cells using ruthenium catalysts. Both fully intramolecular and intermolecular cycloadditions of diynes with alkynes are feasible, the latter providing an intracellular synthesis of appealing anthraquinones. The power of the approach is further demonstrated by generating anthraquinone AIEgens (AIE=aggregation induced emission) that otherwise do not go inside cells, and by modifying the intracellular distribution of the products by simply varying the type of ruthenium complex.


Assuntos
Complexos de Coordenação/química , Rutênio/química , Alcinos/química , Antraquinonas/síntese química , Antraquinonas/química , Azidas/química , Catálise , Complexos de Coordenação/síntese química , Complexos de Coordenação/metabolismo , Reação de Cicloadição , Células HeLa , Humanos , Microscopia de Fluorescência
2.
Chem Sci ; 9(7): 1947-1952, 2018 Feb 21.
Artigo em Inglês | MEDLINE | ID: mdl-29675241

RESUMO

The archetype reaction of "click" chemistry, namely, the copper-promoted azide-alkyne cycloaddition (CuAAC), has found an impressive number of applications in biological chemistry. However, methods for promoting intermolecular annulations of exogenous, small azides and alkynes in the complex interior of mammalian cells, are essentially unknown. Herein we demonstrate that isolated, well-defined copper(i)-tris(triazolyl) complexes featuring designed ligands can readily enter mammalian cells and promote intracellular CuAAC annulations of small, freely diffusible molecules. In addition to simplifying protocols and avoiding the addition of "non-innocent" reductants, the use of these premade copper complexes leads to more efficient processes than with the alternative, in situ made copper species prepared from Cu(ii) sources, tris(triazole) ligands and sodium ascorbate. Under the reaction conditions, the well-defined copper complexes exhibit very good cell penetration properties, and do not present significant toxicities.

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