IP Library Granted Patent US 7,852,482
Granted Patent B2
US 7,852,482 · App. 12/751,090 · Granted Dec 14, 2010

Sub-micron surface plasmon resonance sensor systems

Assignee: Indiana University Research & Technology Corporation
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Quick Facts
Patent No.
US 7,852,482
App. No.
12/751,090
Granted
Dec 14, 2010
Kind
B2
Abstract

A sensor for detecting the presence of a target analyte, ligand or molecule in a test fluid, comprising a light transmissive substrate on which an array of surface plasmon resonant (SPR) elements is mounted is described. A multi-channel sensor for detecting the presence of several targets with a single microchip sensor is described. A multi-channel sensor including collections of SPR elements which are commonly functionalized to one of several targets is also described. The detectors sense changes in the resonant response of the SPR elements indicative of binding with the targets.

Claims (15)

1. A multi-sensor device for detecting the presence of a target analyte, ligand, or molecule in a test fluid, comprising:

a light transmissive substrate;

a plurality of surface plasmon resonant (SPR) elements mounted on a surface of said substrate;

a light source arranged to direct light into said SPR elements; and

a detector arranged relative to said SPR elements to detect light transmitted therethrough;

wherein the SPR elements are mounted randomly or non-randomly over a spatial domain of said surface, where the separation of the SPR elements is larger than their diameter;

an exposed surface of each SPR element has a surface treatment, or a surface coating of a material, capable of binding with a target to be detected;

each SPR element includes a light transmissive bead formed in a geometric shape that can sustain periodic boundary conditions for a stationary plasmon resonance wave to travel across the outer surface thereof; and

wherein a pinhole is defined at the interface between each SPR element and the substrate.

2. The multi-sensor device of claim 1 wherein the exposed surface of each SPR element in a first group of said plurality of SPR elements has a first surface treatment, or a first surface coating of a first material, capable of binding with a first target to be detected.

3. The multi-sensor device of claim 2 wherein an exposed surface of each SPR element in a second group of said plurality of SPR elements has a second surface treatment, or a surface coating of a second material.

4. The multi-sensor device of claim 3 wherein the second surface treatment or the surface coating of the second material is capable of binding with a second target to be detected different from the first target.

5. A group of multi-sensor devices of claim 1 wherein a plurality of said multi-sensor devices each consisting of a plurality of SPR elements are disposed in a non-overlapping, random or non-random pattern, wherein each group is characterized by each SPR element in the group having the same surface treatment or surface coating of the same material, where said surface treatment or said surface coating is capable of binding with the corresponding target to be detected.

6. The group of multi-sensor devices of claim 5 wherein the plurality of multi-sensor devices are characterized by a plurality of surface treatments or surface coatings.

7. The group of multi-sensor devices of claim 6 wherein the plurality of surface treatments or surface coatings is capable of binding to a plurality of targets.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 24, 2019
From: INDIANA UNIVERSITY RESEARCH AND TECHNOLOGY CORPORATION
To: THE TRUSTEES OF INDIANA UNIVERSITY
Reel/Frame 048117/0493 →
CONFIRMATORY LICENSE Recorded May 20, 2010
From: INDIANA UNIVERSITY
To: NATIONAL SCIENCE FOUNDATION
Reel/Frame 024413/0957 →
Continuity (3)
Continuation 1161150900 · Dec 15, 2006
Provisional Application 6075087200 · Dec 16, 2005
Related Publication 20100189603A1 · Jul 29, 2010