EP3290522A1

Electrical patterns for biosensor and method of making

Abstract

The present invention provides an inventive biosensor that includes multiple regions in which the electrical pattern is formed from different electrically conductive materials. The present invention also provides an inventive method for mass producing biosensors as just described. In one embodiment of this method, first and second different electrically conductive materials are deposited side by side on a portion of an electrically insulating base material, and a plurality of electrical patterns is formed on the portion of the base material. Each electrical pattern includes a first region formed from the first electrically conductive material electrically connected to a second region formed from the second electrically conductive material. The electrically conductive materials can be deposited as layers on the base material and portions of the layers can be removed to form the electrical patterns, or, the electrical patterns can be formed by transferring the conductive material in the shape of the electrical pattern directly to the base material, such as by a laser direct transfer technique.

EP3290522A1, drawing sheet 1
Sheet 1 of 16

Term

Projected expiry 29 October 2028.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

14 claims: 9 independent, 5 dependent

  1. 1
    A method of manufacturing a base substrate having an electrical pattern thereon for use in an electrochemical biosensor, the method comprising providing a base material (80, 104, 106, 1106) having a first layer (92, 98) of a first electrically conductive material positioned substantially side by side to and in electrical contact with a second layer (94, 100) of a second electrically conductive material;and removing at least a portion of the first layer and the second layer to form an electrical pattern on the base material, the electrical pattern including a first region (70, 1022, 1328, 1428) formed from the first electrically conductive material electrically connected to a second region (72, 1024, 1332, 1432) formed from the second electrically conductive material, the first region of the electrical pattern comprising at least one electrode (37, 38, 39).
  2. 3
    The method of any one of claims 1 - 2, further comprising repeating the removing step a plurality of times at spaced intervals along the base material to form a base substrate web having a plurality of the electrical patterns thereon.
  3. 4
    The method of any one of claims 1 - 3, wherein the removing step comprises forming working and counter electrodes from the first electrically conductive material and forming contact pads from the second electrically conductive material.
  4. 5
    The method of any one of claims 1 - 4 wherein the providing step comprises providing the base material with the first layer formed from a noble metal and the second layer formed from an electrically conductive material substantially more robust than a noble metal.
  5. 7
    The method of any one of claims 1 - 6, wherein the providing step comprises providing the base material with the first and second layers in a partially overlapping arrangement.
  6. 8
    The method of any one of claims 1 - 6, further comprising, prior to the providing step, depositing the first and second layers of electrically conductive material substantially side by side along a portion of the base material.
  7. 10
    The method of any one of claims 1 - 9, further comprising providing a second base material having a second electrical pattern formed thereon and combining the first base material and the second base material into a laminate in which the first electrical pattern faces the second electrical pattern.
  8. 12
    The method of any one of claims 1 - 11, wherein a reagent is coated or deposited on or over at least a portion of one or more of the electrodes of the electrical pattern.
  9. 13
    A biosensor (20) for determining presence or concentration of an analyte in a fluid sample and manufactured according to the method of any one of claims 1 - 12, the biosensor comprising:a substrate (22, 1020, 1330, 1430) having an electrical pattern (36, 112) formed thereon, the electrical pattern comprising a working electrode (39, 1118, 1320, 1420), a counter electrode (37, 1116, 1322, 1422), contact pads (42, 1352, 1452), and traces (40, 1120, 1122, 1350,1450) electrically connecting the working and counter electrodes to their respective contact pads;one or more of a spacing layer (24) and a covering layer (28, 30) overlying the substrate and cooperating with the substrate to define a sample receiving chamber;the biosensor having a first region (70, 1022, 1328, 1428) in which the electrical pattern is formed of a first electrically conductive material and a second region (72, 1024, 1332, 1432) in which the electrical pattern is formed of a second electrically conductive material, wherein at least one of the traces includes a first section located in the first region electrically connected to a second section located in the second region, the first and second sections being comprised of the first and second electrically conductive materials, respectively.