Olfactory Receptor-Based Devices

The invention provides a bio-sensing nanodevice comprising: a stabilized biologically-derived G-protein coupled receptor—the olfactory receptor—on a support, a real time receptor-ligand binding detection method, an odorant delivery system and an odorant recognition program. The biologically-derived G-protein coupled receptor can be stabilized on nanotechnology using surfactant peptide. The said nanodevice provides a greater surface area for better precision and sensitivity to odorant detection. The invention further provides a microfluidic chip containing a stabilized biologically-derived G-protein coupled receptor—the olfactory receptor—immobilized on a support, and arranged in at least two dimensional microarray system. The invention also provides a method of delivering odorant comprising the step of manipulating the bubbles in complex microfluidic networks wherein the bubbles travel in a microfluidic channel carrying a variety of gas samples to a precise location on a chip. The invention further provides method of fabricating hOR17-4 olfactory receptor.

Researchers

Manu Prakash / Andreas Mershin / Brian Cook / Joanke (Johanna) Bikker Graveland / Liselotte Kaiser / Shuguang Zhang / Yael Maguire / David Kong

Departments: MIT Sloan Executive Education, Media Lab
Technology Areas: Biotechnology: Sensors & Monitoring / Chemicals & Materials: Nanotechnology & Nanomaterials / Computer Science: Bioinformatics / Therapeutics: Cell Based Therapy

  • bio-sensing nanodevice
    United States of America | Granted | 9,714,941

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