Encapsulation of FRET-based glucose and maltose biosensors to develop functionalized silica nanoparticles

Silicate nanoparticles with immobilized FRET-based biosensors were developed for the detection of glucose and maltose. Immobilization of the protein biosensor in the nanoparticle was achieved through specific interaction between the hexa-histidine tag of the protein and a calcium-silicate complex of...

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Veröffentlicht in:Analyst (London) 2016-06, Vol.141 (13), p.3982-3984
Hauptverfasser: Faccio, G, Bannwarth, M. B, Schulenburg, C, Steffen, V, Jankowska, D, Pohl, M, Rossi, R. M, Maniura-Weber, K, Boesel, L. F, Richter, M
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Sprache:eng
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Zusammenfassung:Silicate nanoparticles with immobilized FRET-based biosensors were developed for the detection of glucose and maltose. Immobilization of the protein biosensor in the nanoparticle was achieved through specific interaction between the hexa-histidine tag of the protein and a calcium-silicate complex of the silica matrix. Encapsulation of the biosensors preserved the affinity for the respective sugar. Compared to the free biosensors, encapsulation had a stabilizing effect on the biosensor towards chemical and thermal denaturation. The demonstrated immobilization strategy for specific sensing proteins paves the way towards the development of protein-inorganic nanostructures for application in metabolite analyses. Silicate nanoparticles with immobilized FRET-based biosensors were developed for the detection of glucose and maltose.
ISSN:0003-2654
1364-5528
DOI:10.1039/c5an02573g