Patents by Inventor Geoffrey Lillie

Geoffrey Lillie has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20110048972
    Abstract: A multi-analyte test strip includes a first insulating layer and an electrically conductive layer disposed on the first insulating layer. The electrically conductive layer has a first working electrode with a first analyte contact pad, a shared counter/reference electrode with a counter/reference electrode contact pad, and a second working electrode with a second analyte contact pad. The multi-analyte test strip also includes a second insulating layer disposed above the first insulating layer and a patterned spacer layer positioned between the first insulating layer and the first electrically conductive layer with the patterned spacer layer defining a bodily fluid sample-receiving chamber that overlies the first working electrode, the shared counter/reference electrode and the second working electrode.
    Type: Application
    Filed: August 31, 2009
    Publication date: March 3, 2011
    Applicant: LifeScan Scotland Limited
    Inventors: James MOFFAT, Kathryn Macleod, Christopher Philip Leach, Gavin Macfie, Geoffrey Lillie, Marco F. Cardosi
  • Patent number: 7588670
    Abstract: An enzymatic electrochemical-based sensor includes a substrate and a conductive layer formed from a dried water-miscible conductive ink. The water-miscible conductive ink used to form the conductive layer includes a conductive material, an enzyme, a mediator, and a binding agent and is formulated such that the water-miscible conductive ink is a water-miscible aqueous-based dispersion and the binding agent became operatively water-insoluble upon drying.
    Type: Grant
    Filed: April 28, 2005
    Date of Patent: September 15, 2009
    Assignee: LifeScan Scotland Limited
    Inventors: James Iain Rodgers, Zuifang Liu, Alan Watson McNeilage, Margaret MacLennan, James Moffat, Geoffrey Lillie, Michael MacDonald
  • Patent number: 7572356
    Abstract: An electrochemical-based sensor includes an electrode with at least one electrode surface, a film disposed on the electrode surface, and a dialysis membrane disposed on the film. The film includes a redox enzyme and a hydrophilic redox polymer (i.e., a polymer with an attached redox mediator(s)). In addition, the dialysis membrane serves to entrap the redox polymer and redox enzyme in the vicinity of the electrode. Such entrapment is accomplished by employing a redox enzyme and a hydrophilic redox polymer of a sufficiently high molecular weight that they do not pass through the dialysis membrane.
    Type: Grant
    Filed: August 31, 2004
    Date of Patent: August 11, 2009
    Assignee: Lifescan Scotland Limited
    Inventors: James Iain Rodgers, Zuifang Liu, Geoffrey Lillie
  • Patent number: 7465380
    Abstract: A water-miscible conductive ink for use in enzymatic electrochemical-based sensors includes a conductive material, an enzyme, a mediator and a binding agent. The conductive material, enzyme, mediator, and binding agent are formulated as a water-miscible aqueous-based dispersion wherein the binding agent becomes operatively water-insoluble upon drying.
    Type: Grant
    Filed: April 28, 2005
    Date of Patent: December 16, 2008
    Assignee: Lifescan Scotland, Ltd.
    Inventors: James Iain Rodgers, Zuifang Liu, Alan Watson McNeilage, Margaret MacLennan, James Moffat, Geoffrey Lillie, Michael MacDonald
  • Patent number: 7429630
    Abstract: A redox polymer for use in an electrochemical-based sensor includes a hydrophobic polymer backbone (e.g., a hydrophobic poly(methyl methacrylate) polymer backbone) and at least one hydrophilic polymer arm (such as a hydrophilic oligo(N-vinylpyrrolidinone) polymer arm) attached to the hydrophobic polymer backbone. The redox polymer also includes a plurality of redox mediators (e.g., ferrocene-based redox mediators) attached to the at least one hydrophilic polymer arm.
    Type: Grant
    Filed: May 4, 2006
    Date of Patent: September 30, 2008
    Assignee: Lifescan Scotland Limited
    Inventors: Zuifang Liu, James Jain Rodgers, Geoffrey Lillie
  • Patent number: 7351770
    Abstract: Ionic hydrophilic high molecular weight redox polymers for use in enzymatic electrochemical-based sensors include a hydrophilic polymer (such as a hydrophilic polymer backbone) with ionic portions (e.g., cationic monomers incorporated in the hydrophilic polymer backbone) and a plurality of attached redox mediators. The redox mediators can be, for example, covalently attached to the hydrophilic polymer in a pendant manner. An exemplary cationic hydrophilic high molecular weight redox polymer is synthesized by co-polymerization of a hydrophilic acrylamide monomer, [2-(acryloyloxy)ethyl]trimethyl ammonium chloride and vinyl ferrocene.
    Type: Grant
    Filed: September 30, 2004
    Date of Patent: April 1, 2008
    Assignee: Lifescan, Inc.
    Inventors: Zuifang Liu, James Iain Rodgers, Geoffrey Lillie, Marco Fabio Cardosi
  • Publication number: 20060226008
    Abstract: A water-miscible conductive ink for use in enzymatic electrochemical-based sensors includes a conductive material, an enzyme, a mediator and a binding agent. The conductive material, enzyme, mediator, and binding agent are formulated as a water-miscible aqueous-based dispersion wherein the binding agent becomes operatively water-insoluble upon drying.
    Type: Application
    Filed: April 28, 2005
    Publication date: October 12, 2006
    Inventors: James Rodgers, Zuifang Liu, Alan McNeilage, Margaret MacLennan, James Moffat, Geoffrey Lillie, Michael MacDonald
  • Publication number: 20060226006
    Abstract: An enzymatic electrochemical-based sensor includes a substrate and a conductive layer formed from a dried water-miscible conductive ink. The water-miscible conductive ink used to form the conductive layer includes a conductive material, an enzyme, a mediator, and a binding agent and is formulated such that the water-miscible conductive ink is a water-miscible aqueous-based dispersion and the binding agent became operatively water-insoluble upon drying.
    Type: Application
    Filed: April 28, 2005
    Publication date: October 12, 2006
    Inventors: James Rodgers, Zuifang Liu, Alan McNeilage, Margaret MacLennan, James Moffat, Geoffrey Lillie, Michael MacDonald
  • Publication number: 20060226007
    Abstract: A method for manufacturing a portion of an enzymatic electrochemical-based sensor includes applying a water-miscible conductive ink to a substrate of an enzymatic electrochemical-based sensor. The water-miscible conductive ink includes a conductive material, an enzyme, a mediator, and a binding agent (that becomes operatively water-insoluble upon drying) formulated as a water-miscible aqueous-based dispersion. The method further includes the drying the water-miscible conductive ink to form a conductive layer on the substrate that includes an operatively water-insoluble binding agent.
    Type: Application
    Filed: April 28, 2005
    Publication date: October 12, 2006
    Inventors: James Rodgers, Zuifang Liu, Alan McNeilage, Margaret MacLennan, James Moffat, Geoffrey Lillie, Michael MacDonald
  • Patent number: 7109271
    Abstract: A redox polymer for use in an electrochemical-based sensor includes a hydrophobic polymer backbone (e.g., a hydrophobic poly(methyl methacrylate) polymer backbone) and at least one hydrophilic polymer arm (such as a hydrophilic oligo(N-vinylpyrrolidinone) polymer arm) attached to the hydrophobic polymer backbone. The redox polymer also includes a plurality of redox mediators (e.g., ferrocene-based redox mediators) attached to the at least one hydrophilic polymer arm.
    Type: Grant
    Filed: July 28, 2004
    Date of Patent: September 19, 2006
    Assignee: LifeScan, Inc.
    Inventors: Zuifang Liu, James Iain Rodgers, Geoffrey Lillie
  • Publication number: 20060205885
    Abstract: A redox polymer for use in an electrochemical-based sensor includes a hydrophobic polymer backbone (e.g., a hydrophobic poly(methyl methacrylate) polymer backbone) and at least one hydrophilic polymer arm (such as a hydrophilic oligo(N-vinylpyrrolidinone) polymer arm) attached to the hydrophobic polymer backbone. The redox polymer also includes a plurality of redox mediators (e.g., ferrocene-based redox mediators) attached to the at least one hydrophilic polymer arm.
    Type: Application
    Filed: May 4, 2006
    Publication date: September 14, 2006
    Inventors: Zuifang Liu, James Rodgers, Geoffrey Lillie
  • Publication number: 20060069211
    Abstract: Ionic hydrophilic high molecular weight redox polymers for use in enzymatic electrochemical-based sensors include a hydrophilic polymer (such as a hydrophilic polymer backbone) with ionic portions (e.g., cationic monomers incorporated in the hydrophilic polymer backbone) and a plurality of attached redox mediators. The redox mediators can be, for example, covalently attached to the hydrophilic polymer in a pendant manner. An exemplary cationic hydrophilic high molecular weight redox polymer is synthesized by co-polymerization of a hydrophilic acrylamide monomer, [2-(acryloyloxy)ethyl]trimethyl ammonium chloride and vinyl ferrocene.
    Type: Application
    Filed: September 30, 2004
    Publication date: March 30, 2006
    Inventors: Zuifang Liu, James Rodgers, Geoffrey Lillie, Marco Cardosi
  • Publication number: 20060042944
    Abstract: An electrochemical-based sensor includes an electrode with at least one electrode surface, a film disposed on the electrode surface, and a dialysis membrane disposed on the film. The film includes a redox enzyme and a hydrophilic redox polymer (i.e., a polymer with an attached redox mediator(s)). In addition, the dialysis membrane serves to entrap the redox polymer and redox enzyme in the vicinity of the electrode. Such entrapment is accomplished by employing a redox enzyme and a hydrophilic redox polymer of a sufficiently high molecular weight that they do not pass through the dialysis membrane.
    Type: Application
    Filed: August 31, 2004
    Publication date: March 2, 2006
    Inventors: James Rodgers, Zuifang Liu, Geoffrey Lillie
  • Publication number: 20060025550
    Abstract: A redox polymer for use in an electrochemical-based sensor includes a hydrophobic polymer backbone (e.g., a hydrophobic poly(methyl methacrylate) polymer backbone) and at least one hydrophilic polymer arm (such as a hydrophilic oligo(N-vinylpyrrolidinone) polymer arm) attached to the hydrophobic polymer backbone. The redox polymer also includes a plurality of redox mediators (e.g., ferrocene-based redox mediators) attached to the at least one hydrophilic polymer arm.
    Type: Application
    Filed: July 28, 2004
    Publication date: February 2, 2006
    Inventors: Zuifang Liu, James Rodgers, Geoffrey Lillie
  • Publication number: 20060013731
    Abstract: A microfluidic system for extracting a bodily fluid sample (e.g., an interstitial fluid sample) and monitoring an analyte therein includes an analysis module, a sampling module, a meter and a feedback controller. The analysis module has a micro-channel(s) for receiving and transporting the bodily fluid sample, an analyte sensor(s) in operative communication with the micro-channel for measuring an analyte in the bodily fluid sample, and a position electrode in operative communication with the micro-channel. The sampling module is configured to extract the bodily fluid sample from a target site of a user's body and transport the bodily fluid sample to the micro-channel. The sampling module includes a pressure ring(s) adapted to apply pressure to the user's body in the vicinity of the target site. The meter is configured for measuring an electrical characteristic of the position electrode(s).
    Type: Application
    Filed: July 28, 2005
    Publication date: January 19, 2006
    Inventors: Phil Stout, Geoffrey Lillie, James Moffat
  • Publication number: 20050266571
    Abstract: A method for the feedback control of a microfluidic system includes measuring an electrical characteristic (such as impedance or resistance) of a position electrode(s) of the microfluidic system with a meter of the microfluidic system. A feedback controller is then employed to control the flow of bodily fluid sample through the microfluidic system based on the electrical characteristic measured by the meter.
    Type: Application
    Filed: July 28, 2005
    Publication date: December 1, 2005
    Inventors: Phil Stout, Geoffrey Lillie, James Moffat