EP1417352A2

Electronic detection of biological molecules using thin layers

Abstract

This record has no abstract on file.

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Projected expiry passed 10 June 2022, 4.3 years ago.

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176 claims: 24 independent, 152 dependent

  1. 1
    Claims of equivalent WO 03042396 A2 CLAIMS What is claimed is:1. A molecular sensing apparatus comprising: a first electrode;a second electrode;a spacer between said first and said second electrode;and a biological macromolecule connecting said first electrode to said second electrode.
  2. 2
    The apparatus of claims 1, wherein said first electrode, said spacer, and said second electrode do not form a sandwich configuration.
  3. 3
    The apparatus of claims 1 or 2, wherein said biological macromolecule is selected from the group consisting of a nucleic acid, a protein, a polysaccharide, a lectin and a lipid.
  4. 6
    The apparatus of claims 1 or 2, wherein said spacer comprises an insulator having a resistivity greater than 10 "3 ohm-meters.
  5. 8
    The apparatus of claims 1 or 2, wherein said first electrode and said second electrode are separated by a distance in the range of 1 to 10 9 Angstroms.
  6. 9
    The apparatus of claims 1 or 2, wherein said first electrode and said second electrode are separated by a distance less than about 500 Angstroms.
  7. 10
    The apparatus of claims 1 or 2, wherein at said first electrode and said second electrode has a resistivity of less than 10 "2 ohm-meters.
  8. 11
    The apparatus of claims 1 or 2, wherein at said first electrode and said second electrode has a resistivity of less than 10 "3 ohm-meters.
  9. 13
    The apparatus of claims 1 or 2, wherein said first electrode is functionalized to contain a chemical group that can be derivatized or crosslinked.
  10. 15
    The apparatus of claims 1 or 2, wherein said first electrode bears a self-assembled monolayer (SAM).
  11. 19
    The apparatus of claims 1 or 2, wherein said biological macromolecule is attached to said first electrode by a linker.
  12. 24
    The apparatus of claims 1 or 2, wherein said first electrode and said second electrode are oriented in a formation selected from the group consisting of annular, planar, and orthogonal.
  13. 25
    The apparatus of claims 1 or 2, wherein the first electrode comprises a first surface and a second electrode comprises a second surface wherein the first surface and the second surface are not co-planar.
  14. 26
    The apparatus of claims 1 or 2, wherein the first electrode and the second electrode comprise a first electrode pair, the molecular sensing apparatus further comprising a second electrode pair comprising a second first electrode and a second second electrode.
  15. 34
    The apparatus of claims 1 or 2, further comprising an electrical circuit electrically coupled to the first electrode and the second electrode.
  16. 39
    The apparatus of claims 1 or 2, further comprising a computer electrically coupled to the first electrode and the second electrode of at least one electrode pair.
  17. 40
    The apparatus of claims 1 or 2, wherein at least one of the first electrode and the second electrode comprises a semi-conducting material.
  18. 45
    A method of making a molecular sensing apparatus, said method comprising:providing a first electrode and a second electrode separated by an insulator;contacting said first and said second electrode with a first solution comprising a biological macromolecule;placing a charge on said first electrode to attract said biological macromolecule to said first electrode where said macromolecule attaches to said first electrode to form an attached macromolecule;and placing a charge on said second electrode to attract a portion of said attached macromolecule to said second electrode where said macromolecule attaches to said second electrode.
  19. 78
    A method of detecting an analyte, said method comprising:i) providing molecular sensing apparatus comprising a first electrode and a second electrode separated by an insulator where said first electrode has a biological macromolecule attached thereto;ii) contacting the attached macromolecule with said analyte whereby said analyte binds to said macromolecule thereby forming a macromolecule/analyte complex;iii) placing a charge on said second electrode attract a portion of said bound analyte to said second electrode where said analyte is bound to said second electrode such that said macromolecule/analyte complex forms a connection between said first electrode and said second electrode;and iv) detecting the connection between said first and said second electrode.
  20. 108
    A method of detecting an analyte, said method comprising:i) providing a molecular sensing apparatus comprising a first electrode and a second electrode separated by a spacer where said first electrode has a first biological macromolecule attached thereto and said second electrode has a second biological macromolecule attached thereto;ii) contacting the first attached macromolecule and the second attached macromolecule with said analyte whereby said analyte binds to the first macromolecule and to the second macromolecule thereby forming a macromolecule/analyte complex forming a connection between said first electrode and said second electrode;and iii) detecting the connection between said first and said second electrode.
  21. 111
    The method of claimss 108 or 109, wherein said detecting comprises detecting an electromagnetic property selected from the group consisting of direct electric current, alternating electric current, permitivity, resistivity, electron transfer, electron tunneling, electron hopping, electron transport, electron conductance, voltage, electrical impedance, signal loss, dissipation factor, resistance, capacitance, inductance, magnetic field, electrical potential, charge and magnetic potential.
  22. 139
    A method of detecting an analyte, said method comprising:i) providing a molecular sensing apparatus comprising a first electrode and a second electrode separated by a spacer where a biological macromolecule forms a connection between said first electrode and said second electrode;ii) detecting the connection between said first and said second electrode;iii) contacting the attached macromolecule with said analyte whereby said analyte binds to said macromolecule forming a macromolecule/analyte complex;and iv) detecting the difference in the connection between said first electrode and said second electrode.
  23. 161
    The method of claims 139, or 140 wherein said linker is selected from the group consisting of chemical crosslinkers capable of linking functional groups, such as DFDNB, DST, ABH, ANB-NOS, EDC, NHS, NHS-ASA, SIA. ,
  24. 174
    An array of biological macromolecules, the array comprising:a solid support comprising a plurality of non-planar surfaces at a density of greater than 500 surfaces/cm 2 ;and at least one type of biological macromolecule attached to each surface.
Independent claims24