EP0935673B1

Methods and devices for mass transport assisted optical assays

Abstract

An optical assay device for the detection of an analyte of interest in a sample comprising a support containing channels, an optically functional layer positioned on the support such that the optically functional layer and the support allow for laminar flow of the sample through layers of the device, an attachment layer positioned on the optically functional layer, and an analyte specific receptive layer positioned on the attachment layer.

EP0935673B1, drawing sheet 1
Sheet 1 of 4

Term

Term ended

Expired 20 October 2017, 8.9 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

21 claims: 16 independent, 5 dependent

  1. 1
    An optical assay device for the detection of an analyte of interest in a sample comprising:a support containing channels or a porous support, an optically functional layer containing channels positioned on said support, the optically functional layer having an optical property that is detectably altered upon a change in mass on the optically functional layer related to analyte binding, wherein the channels in the optically functional layer are positioned to allow fluid flow from the optically functional layer to the support either through the channels in the support containing channels or via pores in the porous support, and wherein the device provides laminar flow of a sample through layers of said device.
  2. 5
    The device of any preceding claim wherein the support is a porous support.
  3. 6
    The device of any preceding claim, wherein the support is a porous support and wherein the optically functional layer containing channels comprises discrete, optically functional particles embedded in the porous support configured and arranged to provide channels through the optically functional layer to the porous support.
  4. 7
    The device of any of preceding claim, wherein said optically functional layer further comprises an antireflective layer.
  5. 8
    The device of any of claims 1 to 6, wherein said attachment layer is nickel.
  6. 9
    The device of any of claims 1 to 6, wherein said device further comprises an absorbent material surrounding said optically functional layer or beneath said support.
  7. 10
    The device of any of claims 1 to 6, wherein said support comprises polyester or polycarbonate, said optically functional layer comprises a layer of silicon nitride positioned on a layer of amorphous silicon, and said attachment layer comprises nickel.
  8. 11
    The device of any of claims 1 to 6, wherein said support comprises polycarbonate or polyester, and said optically functional layer comprises a layer of germanium on which is positioned a layer of diamond-like carbon.
  9. 12
    The device of any of claims 1 to 6, wherein said optically functional layer comprises a layer of germanium on which is positioned a layer of diamond-like carbon, and said attachment layer comprises nickel.
  10. 13
    The device of any of claims 1 to 6, wherein said optically functional layer comprises a layer of silicon nitride positioned on a layer of amorphous silicon.
  11. 14
    The device of any of claims 2 to 13, wherein said attachment layer comprises diamond-like carbon.
  12. 15
    The device of any preceding claim, wherein said analyte is selected from the group consisting of antigens, antibodies, receptors, ligands, chelates, proteins, enzymes, nucleic acids, DNA, RNA, pesticides, herbicides, inorganic or organic compounds.
  13. 16
    A method for detecting the presence or amount of an analyte in a sample comprising the steps of:(a) providing a device of any of claims 2 to 4, (b) applying a sample to surface of said device such that said sample is drawn by laminar flow through or across the layers of said device, and wherein said analyte binds to the surface of the device, causing a mass change on said surface of said device, wherein the optically functional layer has an optical property that is detectably altered upon a change in mass related to analyte binding to the surface, thereby indicating the presence or amount of said analyte in said sample.
  14. 19
    The method of any of claims 16 to 18, wherein said support contains channels.
  15. 20
    The method of any of claims 16 to 18, wherein said support is porous and said optically functional layer contains channels.
  16. 21
    The method of and of claims 16 to 20, wherein said support is porous and the channels of said optically functional layer comprise discrete, optically functional particles embedded in said support such that said optically functional layer and said support allow for laminar flow of said sample through layers of the device.