Artículo
Electropolymerizable Thiophene-Oligonucleotides for Electrode Functionalization
Kassahun, Getnet S.; Farias, Eliana Desiree
; Benizri, Sebastien; Mortier, Claudio; Gaubert, Alexandra; Salinas, Gerardo; Garrigue, Patrick; Kuhn, Alexander; Zigah, Dodzi; Barthélémy, Philippe
Fecha de publicación:
06/2022
Editorial:
American Chemical Society
Revista:
ACS Applied Materials & Interfaces
ISSN:
1944-8244
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
Inserting complex biomolecules such as oligonucleotides during the synthesis of polymers remains an important challenge in the development of functionalized materials. In order to engineer such a biofunctionalized interface, a single-step method for the covalent immobilization of oligonucleotides (ONs) based on novel electropolymerizable lipid thiophene-oligonucleotide (L-ThON) conjugates was employed. Here, we report a new thiophene phosphoramidite building block for the synthesis of modified L-ThONs. The biofunctionalized material was obtained by direct electropolymerization of L-ThONs in the presence of 2,2′-bithiophene (BTh) to obtain a copolymer film on indium tin oxide electrodes. In situ electroconductance measurements and microstructural studies showed that the L-ThON was incorporated in the BTh copolymer backbone. Furthermore, the covalently immobilized L-ThON sequence showed selectivity in subsequent hybridization processes with a complementary target, demonstrating that L-ThONs can directly be used for manufacturing materials via an electropolymerization strategy. These results indicate that L-ThONs are promising candidates for the development of stable ON-based bioelectrochemical platforms.
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Articulos(INFIQC)
Articulos de INST.DE INVESTIGACIONES EN FISICO- QUIMICA DE CORDOBA
Articulos de INST.DE INVESTIGACIONES EN FISICO- QUIMICA DE CORDOBA
Citación
Kassahun, Getnet S.; Farias, Eliana Desiree; Benizri, Sebastien; Mortier, Claudio; Gaubert, Alexandra; et al.; Electropolymerizable Thiophene-Oligonucleotides for Electrode Functionalization; American Chemical Society; ACS Applied Materials & Interfaces; 14; 23; 6-2022; 26350-26358
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