EP1735618A2

System and method for integrating fluids and reagents in self-contained cartridges containing particle and membrane sensor elements

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 28 February 2025, 1.6 years ago.

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42 claims: 26 independent, 16 dependent

  1. 1
    Claims of equivalent WO 2005083423 A2 What is Claimed:1. A cartridge for use in an analyte detection system comprising: a body;a particle based detection system positioned within the body;a membrane-based detection system positioned within the body;and one or more channels configured to carry fluids into the body and to the particle-based detection system and the membrane-based detection system.
  2. 6
    The cartridge of claims 2-5, wherein particle-based detection system comprises a cover layer positioned above the supporting member at a height to substantially inhibit dislodgement of a particle in a cavity during use.
  3. 7
    The cartridge of claims 2-6, wherein the particle comprises a polymeric resin, a biopolymer coupled to the polymeric resin, and wherein the biopolymer undergoes a chemical reaction in the presence ofthe analyte to produce a signal.
  4. 8
    The cartridge of claims 2-6, wherein the particle comprises a receptor molecule coupled to a polymeric resin.
  5. 11
    The cartridge of claims 2-10, wherein the particle is configured to entrap microbes.
  6. 12
    The cartridge of claims 1-11, wherein the membrane-based detection system comprises a porous membrane coupled to a body.
  7. 15
    The cartridge of claims 14, wherein the top member comprises a fluid inlet configured to allow fluid to be infroduced to the membrane through the top member.
  8. 17
    The cartridge of claims 14-16, further comprising a gasket positioned between the membrane and the top member.
  9. 20
    The cartridge of claims 18 or 19, wherein the bottom member comprises a fluid outlet configured to allow fluid to pass from the membrane out ofthe analyte detection device.
  10. 21
    The cartridge of claims 12-20, further comprising a cap, wherein a top member, the membrane and a bottom member are disposed within the body, and wherein the cap secures the top member, the membrane and the bottom member within the body.
  11. 22
    The cartridge of claims 1-21, further comprising a fluid delivery system coupled to the body.
  12. 23
    The cartridge of claims 1-21, further comprising a fluid delivery system positioned within the body.
  13. 24
    The cartridge of claims 1-23, further comprising one or more sample reservofrs for mixing samples with reagents with the body.
  14. 25
    The cartridge of claims 1-24, further comprising one or more traps for removing entrained gas from the fluid.
  15. 26
    The cartridge of claims 1-25, further comprising a cover layer positioned over the detection region, wherein the cover layer is positioned such that a channel is formed between an upper surface ofthe detection region and the cover layer such that the fluid passes through the channel during use.
  16. 27
    A method of sensing a plurality of analytes in a fluid comprising:passing a fluid over the membrane-based detection system of a cartridge of any of claims claim 1- 27;passing fluid from the membrane-based detection system to the particle-based detection system, wherein the particle-based detection system comprises at least one particle positioned within at least one cavity of a supporting member;detecting an image of analytes captured on the porous membrane;monitoring a specfroscopic change ofthe particle as the fluid is passed over the sensor anay, wherein the specfroscopic change is caused by the interaction of one or more analytes with the particle.
  17. 30
    The method of claims 27-29, further comprising passing the fluid over a reagent pad comprising one or more dried reagents positioned on the reagent pad, wherein passing the fluid over the reagent pad reconstitutes one or more reagents on the reagent pad, and wherein analytes in the fluid react with the one or more reagents.
  18. 31
    The method of claims 27-30, wherein the analytes comprise bacteria, blood cells, proteins, analytes for determining a complete blood count, analytes for determining white blood count, Troponin T, C-reactive protein, or combinations thereof.
  19. 32
    The method of claims 27-31 , further comprising determining if the analyte is present using the detected signal.
  20. 33
    The method of claims 27-32, wherein deteimining if the analyte is present comprises comparing the shape, aggregate area, color, fluorescence, and/or fluorescent intensity ofthe matter to user-defined criteria.
  21. 34
    The method of claims 27-33, further comprising:capturing matter on the membrane-based detection system;and applying a stain to the matter captured on the membrane.
  22. 35
    The method of claims 27-34, further comprising, collecting a sample of an analyte in a fluid using an air collection device.
  23. 36
    The method of claims 37-35, further comprising performing a wash to clean a surface ofthe membrane- based detection system.
  24. 37
    The method of claims 27-36, further comprising passing a visualization agent across the membrane-based detection system after the fluid is passed over the membrane-based detection system.
  25. 41
    The method of claims 27-40, wherein the images are collected using a CCD detector.
  26. 42
    A method of sensing a plurality of analytes in a fluid comprising:passing a fluid over a membrane-based detection system, the membrane-based detection system comprising a body and a porous membrane coupled to the body;passing fluid from the membrane-based detection system to a particle-based detection system, wherein the particle-based detection system comprises at least one particle positioned within at least one cavity of a supporting member;detecting an image of analytes captured on the porous membrane;monitoring a spectroscopic change of the particle as the fluid is passed over the sensor anay, wherein the specfroscopic change is caused by the interaction of one or more analytes with the particle.
Independent claims26