Characterization of a modified gold platform for the development of a label-free anti-thrombin aptasensor.

This work reports the characterization of a modified gold surface as a platform for the development of a label free aptasensor for thrombin detection. The biorecognition platform was obtained by the self-assembly of 4-mercaptobenzoic acid onto a gold surface, covalent attachment of streptavidin and further immobilization of the biotinylated anti-thrombin aptamer. The biosensing platform was characterized by cyclic voltammetry, electrochem. impedance spectroscopy, surface plasmon resonance (SPR) and quartz crystal microbalance with dissipation monitoring. The biorecognition event aptamer-thrombin was detected from changes in the SPR angle produced as a consequence of the mol. interaction between the aptasensor and the target protein. The biosensing platform demonstrated to be highly selective for human thrombin even in the presence of large excess of bovine thrombin, bovine serum albumin, cytochrome C, lysozyme and myoglobin. The relationship between the changes in the SPR angle and thrombin concn. was linear up to 0.19 $μ$mol L-1 (R2=0.992) while the detection limit was of 12.0 nmol L-1 (240 fmol in the sample). This new sensing approach represents an interesting and promising alternative for the SPR-based quantification of thrombin. [on SciFinder(R)]

Références

Titre
Characterization of a modified gold platform for the development of a label-free anti-thrombin aptasensor.
Type de publication
Article de revue
Année de publication
2013
Revue
Biosens. Bioelectron.
Volume
41
Pagination
424–429
ISSN
0956-5663
Soumis le 12 avril 2018