EP1656554A2

Method and apparatus for assay of electrochemical properties

Abstract

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Projected expiry passed 23 August 2024, 2.1 years ago.

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15 claims: 6 independent, 9 dependent

  1. 1
    Claims of equivalent WO 2005022143 A2 CLALMS 1. A method of evaluating a sample for the presence of a select analyte comprising the steps of:(a) introducing the sample into a space between two electrodes of a conduction cell;(b) applying a potential or cunent between the two electrodes sufficient to bring about oxidation or reduction of the analyte or of a mediator in an analyte-detection redox system, thereby forming a chemical potential gradient of the analyte or mediator between the two electrodes;(c) after the gradient is established, discontinuing the applied potential or cunent and obtaining an analyte-independent signal reflecting relaxation of the chemical potential gradient;(d) optionally applying a potential or cunent between the electrodes after the analyte-independent signal is obtained;(e) obtaining an analyte-dependent signal during the application of the potential or cunent in step (b) or step (d) or both, and (f) conecting the analyte-dependent signal obtained in step (e) using the analyte-independent signal obtained in step (c) to obtain a conected analyte-dependent signal indicative of the presence of the selected analyte in the sample.
  2. 8
    The method of any of claims 1 to 7, wherein the chemical potential gradient prior to relaxation extends across at least 10% of the distance between the electrodes.
  3. 10
    A method for determining the effective separation distance between a first electrode and a second electrode in an electrochemical cell, the method comprising the steps of:applying an external force in the form of an applied potential or an applied cunent to generate a chemical potential gradient between the first electrode and the second electrode;stopping the application of the external force;observing the decay of the chemical potential gradient as a function of time;and computing the effective electrode separation distance from the observed decay of the chemical potential gradient.
  4. 11
    A method for determining an effective transport property between a first electrode and a second electrode in an electrochemical cell, the method comprising the steps of:applying an external force in the form of an applied potential or a cunent to generate a chemical potential gradient between the first electrode and the second electrode;stopping the application of the external force;observing the decay of the chemical potential gradient as a function of time;and computing an effective transport property of the electrochemical system from the observed decay of the chemical potential gradient.
  5. 12
    An apparatus for determining the presence of an analyte in a sample disposed in an electrochemical cell said electrochemical cell comprising two electrodes between which the sample is placed for analysis, said apparatus comprising:(a) a housing having a space for receiving the electrochemical cell;(b) means for applying a potential or a cunent between the two electrodes of the electrochemical cell when it is received within the housing;(c) means for measuring oxidation or reduction of an analyte or a mediator in an analyte-detection system occurring within the electrochemical cell when the potential or cunent is being applied;(d) means for switching the potential or cunent off after a period of time during which a chemical potential gradient is established between the two electrodes;(e) means for monitoring the decay of the chemical potential gradient after the potential or cunent is switched off;(f) programmed data processing means for combining the measured oxidation or reduction with the monitored decay to produce an indication of the presence of the analyte in the sample;and (g) output means for conveying the indication of the presence of the analyte in the sample to a user.
  6. 15
    The apparatus of any of claims 12 to 14, wherein the housing is of a size that can be held in a human hand.