"Bioelectronic super-taster" device based on taste receptor-carbon nanotube hybrid structures

We have developed a method to monitor the activities of human taste receptor protein in lipid membrane using carbon nanotube transistors, enabling a "bioelectronic super-taster (BST)", a taste sensor with human-tongue-like selectivity. In this work, human bitter taste receptor protein expr...

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Veröffentlicht in:Lab on a chip 2011-01, Vol.11 (13), p.2262-2267
Hauptverfasser: Kim, Tae Hyun, Song, Hyun Seok, Jin, Hye Jun, Lee, Sang Hun, Namgung, Seon, Kim, Un-kyung, Park, Tai Hyun, Hong, Seunghun
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Sprache:eng
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Zusammenfassung:We have developed a method to monitor the activities of human taste receptor protein in lipid membrane using carbon nanotube transistors, enabling a "bioelectronic super-taster (BST)", a taste sensor with human-tongue-like selectivity. In this work, human bitter taste receptor protein expressed in E. coli was immobilized on a single-walled carbon nanotube field effect transistor (swCNT-FET) with the lipid membrane. Then, the protein binding activity was monitored using the underlying swCNT-FET, leading to the operation as a BST device. The fabricated BST device could detect bitter tastants at 100 fM concentrations and distinguish between bitter and non-bitter tastants with similar chemical structures just like a human tongue. Furthermore, this strategy was utilized to differentiate the responses of taster or non-taster types of the bitter taste receptor proteins.
ISSN:1473-0197
1473-0189
DOI:10.1039/c0lc00648c