CA2957134C

Signal amplification in plasmonic specific-binding partner assays

Abstract

The present invention relates to analyte detection devices and methods of using such devices to detect minute quantities of a target analyte in a sample. In particular, the invention provides an analyte detection device comprising a plurality of composite metallic nanostructures conjugated to analyte binding partners and a surface containing a metallic nanolayer on which a plurality of capture molecules is immobilized. Methods of preparing composite nanostructures are also described.

CA2957134C, drawing sheet 1
Sheet 1 of 8

Term

8.9 yearsleft in the term

Expires 13 August 2035.

  1. Priority
  2. Filed
  3. Granted
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  5. Expires

96 claims: 8 independent, 88 dependent

  1. 1
    An analyte detection device comprising:a plurality of detection conjugates, wherein the conjugates comprise composite metallic nanostructures coupled to binding partners that are capable of specifically binding to a target analyte, wherein the composite metallic nanostructures comprise a silver core and a gold coating;a surface containing a metallic nanolayer;and a plurality of capture molecules, wherein the capture molecules are immobilized on the metallic nanolayer and are capable of specifically binding to the target analyte.
  2. 2
    An analyte detection device comprising:a plurality of detection conjugates, wherein the conjugates comprise composite metallic nanostructures that are capable of coupling to a target analyte, wherein the composite metallic nanostructures comprise a silver core and a gold coating;a surface containing a metallic nanolayer;and a plurality of capture molecules, wherein the capture molecules are immobilized on the metallic nanolayer and are capable of specifically binding to the target analyte.
  3. 24
    A method of detecting a target analyte in a sample comprising:mixing the sample with a plurality of detection conjugates, wherein the conjugates comprise composite metallic nanostructures coupled to binding partners that are capable of specifically binding to the target analyte if present in the sample to form analyte-detection conjugate complexes, wherein the composite metallic nanostructures comprise a silver core and a gold coating;contacting the mixture with a surface containing a metallic nanolayer, wherein a plurality of capture molecules are immobilized on the metallic nanolayer and are capable of specifically binding to the target analyte if present in the sample;exposing the surface to a light source at a wavelength range within the ultravioletvisible-infrared spectrum;and measuring an optical signal from the surface, wherein a change in the optical signal indicates the presence of the target analyte in the sample.
  4. 38
    An assay complex comprising:a detection conjugate comprising a composite metallic nanostructure coupled to a binding partner, wherein the composite metallic nanostructures comprise a silver core and a gold coating;a target analyte;and a metallic nanolayer-coated bead on which a capture molecule is immobilized, wherein the binding partner in the detection conjugate is bound to a first epitope on the target analyte and the capture molecule is bound to a second epitope on the target analyte, thereby forming a complex comprising the detection conjugate, target analyte, and the capture molecule. Date Reçue/Date Received 2022-01-07
  5. 49
    A localized surface plasmon resonance (LSPR) analyte detection device comprising:a plurality of detection conjugates, wherein the conjugates comprise composite metallic nanostructures coupled to binding partners that are capable of specifically binding to a target analyte, wherein the composite metallic nanostructures comprise a silver core and a gold coating;a surface containing a metallic nanolayer;and a plurality of capture molecules, wherein tee capture molecules are immobilized on tee metallic nanolayer and are capable of specifically binding to tee target analyte.
  6. 50
    A localized surface plasmon resonance (LSPR) analyte detection device comprising:a plurality of detection conjugates, wherein tee conjugates comprise composite metallic nanostructures teat are capable of coupling to a target analyte, wherein tee composite metallic nanostructures comprise a silver core and a gold coating;a surface containing a metallic nanolayer;and a plurality of capture molecules, wherein the capture molecules are immobilized on tee metallic nanolayer and are capable of specifically binding to the target analyte.
  7. 72
    A method of detecting a target analyte in a sample based on localized surface plasmon resonance (LSPR) comprising:mixing the sample with a plurality of detection conjugates, wherein the conjugates comprise composite metallic nanostructures coupled to binding partners that are capable of specifically binding to the target analyte if present in the sample to form analyte-detection conjugate complexes, wherein the composite metallic nanostructures comprise a silver core and a gold coating;contacting the mixture with a surface containing a metallic nanolayer, wherein a plurality of capture molecules are immobilized on the metallic nanolayer and are capable of specifically binding to the target analyte if present in tire sample;exposing the surface to a light source at a wavelength range within the ultravioletvisible-infrared spectrum;and measuring an optical signal from the surface, wherein a change in the optical signal indicates the presence of the target analyte in the sample.
  8. 86
    A localized surface plasmon resonance (LSPR) assay complex comprising:a detection conjugate comprising a composite metallic nanostructure coupled to a binding partner, wherein the composite metallic nanostructures comprise a silver core and a gold coating;a target analyte;and a metallic nanolayer-coated bead on which a capture molecule is immobilized, wherein the binding partner in the detection conjugate is bound to a first epitope on the target analyte Date Reçue/Date Received 2022-01-07 and the capture molecule is bound to a second epitope on the target analyte, thereby forming a complex comprising the detection conjugate, target analyte, and the capture molecule.