C12Q1/58

Control of pH in aqueous urea-containing solutions utilizing amino acid-containing compositions

Aqueous calibration or quality control reagents that include urea are disclosed; the reagents may further include at least one amino acid-containing composition to provide pH stability thereto. Methods of production and use thereof are also disclosed.

Single-walled carbon nanotube biosensor for detection of glucose, lactate, and urea

A single-walled carbon nanotube-based micron scale multiplex biosensor is provided that enables the detection of glucose, lactate, and urea. The sensor is based on modification of semiconducting single-walled carbon nanotubes using a linker that non-covalently associates with the nanotubes and covalently couples to an enzyme. Reaction of a physiological substrate with the enzyme results in increased resistance of the nanotubes within the sensor. The sensor is suitable for use in patient monitoring, particularly in a clinical setting. Incorporation of read out electronics and an RF signal generator into the sensor device enables it to communicate to a relay station or remote receiver. Methods are also provided for fabricating the biosensor device and using the device for detection.

Single-walled carbon nanotube biosensor for detection of glucose, lactate, and urea

A single-walled carbon nanotube-based micron scale multiplex biosensor is provided that enables the detection of glucose, lactate, and urea. The sensor is based on modification of semiconducting single-walled carbon nanotubes using a linker that non-covalently associates with the nanotubes and covalently couples to an enzyme. Reaction of a physiological substrate with the enzyme results in increased resistance of the nanotubes within the sensor. The sensor is suitable for use in patient monitoring, particularly in a clinical setting. Incorporation of read out electronics and an RF signal generator into the sensor device enables it to communicate to a relay station or remote receiver. Methods are also provided for fabricating the biosensor device and using the device for detection.

RESTORING FUNCTION OF TUMOUR ACIDIFIED T CELLS

Methods and compositions to restore function to acidified T cells are provided. The methods comprise administering urease to the T cells. Compositions comprise urease.

RESTORING FUNCTION OF TUMOUR ACIDIFIED T CELLS

Methods and compositions to restore function to acidified T cells are provided. The methods comprise administering urease to the T cells. Compositions comprise urease.

BIOSENSOR AND METHODS OF IN-SITU MEASURING OF NUTRIENT CONTENT OF A CROP CULTIVATION SUBSTRATE
20250027927 · 2025-01-23 ·

The subject matter described herein is directed to systems, detection devices and enzyme sensors for real-time determination of the concentration levels of nutrients in a crop cultivation substrate using thermal signals and change in enthalpy per unit of enzyme. Methods of using the systems, detection devices and enzyme sensors for agricultural applications are described.

BIOSENSOR AND METHODS OF IN-SITU MEASURING OF NUTRIENT CONTENT OF A CROP CULTIVATION SUBSTRATE
20250027927 · 2025-01-23 ·

The subject matter described herein is directed to systems, detection devices and enzyme sensors for real-time determination of the concentration levels of nutrients in a crop cultivation substrate using thermal signals and change in enthalpy per unit of enzyme. Methods of using the systems, detection devices and enzyme sensors for agricultural applications are described.

ELECTROCHEMICAL METHODS AND DEVICES FOR AMENDING URINE SAMPLES FOR IMMUNOSENSOR DETECTION

The present invention is directed to methods and devices for amending undiluted and partially diluted urine samples in a manner suitable for performing immunoassays for target analytes, for example NGAL. Generally, the urine sample is treated with reagents including at least one of buffer materials, water soluble proteins, urease, and other interferent mitigants. These reagents control the pH of the urine sample in a manner suitable for immuno-binding reactions and ameliorate interferences, particularly during the detection step.

ELECTROCHEMICAL METHODS AND DEVICES FOR AMENDING URINE SAMPLES FOR IMMUNOSENSOR DETECTION

The present invention is directed to methods and devices for amending undiluted and partially diluted urine samples in a manner suitable for performing immunoassays for target analytes, for example NGAL. Generally, the urine sample is treated with reagents including at least one of buffer materials, water soluble proteins, urease, and other interferent mitigants. These reagents control the pH of the urine sample in a manner suitable for immuno-binding reactions and ameliorate interferences, particularly during the detection step.

Method and apparatus for electrochemical detection

The invention provides an apparatus and methods for the electrochemical detection and/or quantitation of an analyte in a sample, wherein the device comprises a substrate and a detector, wherein the substrate comprises a labeled binding agent, wherein the label is an enteric material particle that encapsulates a ferrocene methanol redox species.