IP Library Granted Patent US 7,534,578
Granted Patent B1
US 7,534,578 · App. 11/943,064 · Granted May 19, 2009

Self-referencing biodetection method and patterned bioassays

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Quick Facts
Patent No.
US 7,534,578
App. No.
11/943,064
Granted
May 19, 2009
Kind
B1
Abstract

The invention relates to compositions and methods for detecting biomolecular interactions. The detection can occur without the use of labels and can be done in a high-throughput manner. The invention further relates to self-referencing colorimetric resonant optical biosensors and optical devices.

Claims (29)

1. A self-referencing colorimetric resonant optical biosensor comprising:

(a) a liquid holding vessel comprising a colorometric resonant optical biosensor as a surface;

(b) a fluid-impermeable divider on the colorimetric resonant optical biosensor surface, wherein the fluid impermeable divider separates the liquid holding vessel into two or more assay regions, wherein the fluid-impermeable divider segregates an immobilization volume within each assay region, and wherein the fluid-impermeable divider allows a reaction volume to encompass all assay regions in the liquid-holding vessel.

2. The self-referencing colorometric resonant optical biosensor of claim 1 , wherein one or more specific binding substances are immobilized on one or more of the assay regions to form one or more reaction regions, and wherein no specific binding substances are immobilized on one or more of the assay regions to form one or more reference regions.

3. The self-referencing colorometric resonant optical biosensor of claim 2 , wherein when the biosensor is illuminated a resonant grating effect is produced on the reflected radiation spectrum and wherein the depth and period of a grating of the biosensor are less than a wavelength of the resonant grating effect.

4. The self-referencing colorometric resonant optical biosensor of claim 2 , wherein a narrow band of optical wavelengths is reflected from the biosensor when the biosensor is illuminated with a broad band of optical wavelengths.

5. The self-referencing colorometric resonant optical biosensor of claim 2 , wherein the one or more specific binding substances are bound to their specific binding partners.

6. The self-referencing colorometric resonant optical biosensor of claim 1 , wherein the liquid-holding vessel is selected from the group consisting of a microtiter plate well, a test tube, a Petri dish and a microfluidic channel.

7. The self-referencing colorometric resonant optical biosensor of claim 1 , wherein the biosensor comprises two or more liquid-holding vessels.

8. The self-referencing colorometric resonant optical biosensor of claim 7 , wherein one or more specific binding substances are immobilized on one or more of the assay regions to form one or more reaction regions, and wherein no specific binding substances are immobilized on one or more of the assay regions to form one or more reference regions.

9. A method of detecting the binding of one or more specific binding substances to their respective binding partners in the self-referencing colorometric resonant optical biosensor of claim 2 comprising:

(a) applying one or more specific binding partners in a reaction volume to the liquid holding vessel of claim 2 ;

(b) illuminating the one or more reaction regions and the one or more reference regions with light;

(c) detecting a maxima in reflected wavelength, or a minima in transmitted wavelength of light from the one or more reaction regions and the one or more reference regions; and

(d) comparing the maxima or minima of the one or more reference regions to the maxima or minima from the one or more reaction regions;

wherein the binding of one or more specific binding substances to their respective binding partners is detected.

10. A method of detecting activity of an enzyme in a self-referencing colorometric resonant optical biosensor of claim 2 comprising:

(a) applying one or more enzymes in a reaction volume to the liquid holding vessel of claim 2 ;

(b) illuminating the one or more reaction regions and the one or more reference regions with light;

(c) detecting a maxima in reflected wavelength, or a minima in transmitted wavelength of light from the one or more reaction regions and the one or more reference regions; and

(d) comparing the maxima or minima of the one or more reference regions to the maxima or minima from the one or more reaction regions;

wherein the activity of an enzyme is detected.

11. A method of detecting the inhibition activity of one or more molecules against one or more enzymes or specific binding partners in a self-referencing colorometric resonant optical biosensor of claim 2 comprising:

(a) applying one or more molecules suspected of having inhibition activity in a reaction volume to the liquid holding vessel of claim 2 ;

(b) applying one or more enzymes or specific binding partners in a reaction volume to the liquid holding vessel;

(c) illuminating the one or more reaction regions and the one or more reference regions with light;

(d) detecting a maxima in reflected wavelength, or a minima in transmitted wavelength of light from the one or more reaction regions and the one or more reference regions; and

(e) comparing the maxima or minima of the one or more reference regions to the maxima or minima from the one or more reaction regions;

wherein the inhibition activity of one or more molecules is detected.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 9, 2012
From: SRU BIOSYSTEMS, INC.
To: X-BODY, INC.
Reel/Frame 028014/0817 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 4, 2008
From: BAIRD, CHERYL; CUNNINGHAM, BRIAN T.; LI, PETER
To: SRU BIOSYSTEMS INC
Reel/Frame 020458/0968 →