G01N33/551

METHOD OF CONVERSION AND SYNTHESIS OF MATERIALS VIA LABELED BIOSTRUCTURES WITH INORGANIC MATERIALS CONJUGATED ANTIBODY
20220205986 · 2022-06-30 ·

Various embodiments provide a method of conversion and synthesis of materials via biostructures labeled with an antibody which an inorganic particle has been conjugated. According to various embodiments, a structure corresponding to a biostructure is generated by labeling an antibody which an inorganic particle has been conjugated in a biostructure and growing the inorganic particle with respect to the biostructure.

Graphene-Based Sensor For Detection Of Prostate Biomarkers

The present teachings are generally directed to sensors that employ antibody- and/or aptamer-functionalized graphene layer (or graphene flakes and/or graphdiyne layer) for detecting a prostate-specific biomarker in a sample. A graphene layer can be deposited on a underlying substrate and functionalized with an antibody and/or aptamer that specifically binds with an analyte of interest (e.g., a prostate-specific biomarker). A sample under investigation can be introduced onto the functionalized graphene layer. The interaction of the analyte of interest, if present in the sample, with the functionalized graphene layer can mediate a change in at least one electrical property of the graphene layer, e.g., their DC electrical resistance. An analyzer can detect such a change and analyze it to determine whether the analyte is present in the sample. In some embodiments, calibration methods can be employed to quantify the analyte present in the sample.

PRISTINE GRAPHENE BASED BIOSENSOR FOR BIOMARKER DETECTION AND RELATED CORE PARTICLES, MATERIALS COMPOSITIONS METHODS AND SYSTEMS

Provided herein are graphene biosensors and related core particles, compositions methods and systems in which more than one pristine graphene sheet is coated with a coating layer of an organic or inorganic material to provide a core graphene particle, to which detectable components comprising a detectable moiety and a peptide linkage are attached through binding of the peptide linkage.

PRISTINE GRAPHENE BASED BIOSENSOR FOR BIOMARKER DETECTION AND RELATED CORE PARTICLES, MATERIALS COMPOSITIONS METHODS AND SYSTEMS

Provided herein are graphene biosensors and related core particles, compositions methods and systems in which more than one pristine graphene sheet is coated with a coating layer of an organic or inorganic material to provide a core graphene particle, to which detectable components comprising a detectable moiety and a peptide linkage are attached through binding of the peptide linkage.

SWCNT-DNA-ANTIBODY CONJUGATES, RELATED COMPOSITIONS, AND SYSTEMS, METHODS AND DEVICES FOR THEIR USE
20210364507 · 2021-11-25 ·

Described herein are compositions useful for the detection of analytes. In certain embodiments, the invention relates among other things to DNA-encapsulated single-walled carbon nanotubes (SWCNTs) functionalized with an antibody or other analyte-binding species, for detection and/or imaging of an analyte in a biological sample or subject. Other embodiments described herein include systems, methods, and devices utilizing such compositions for ex vivo biomarker quantification, tissue optical probes, and in vivo analyte detection and quantification. In one aspect the invention relates to a single-walled carbon nanotube (SWCNT) sensor, comprising a SWCNT; a polymer associated with the SWCNT; and an analyte-binding species. Detection of one or more analytes is achieved by measuring changes in fluorescence intensity, shifts in fluorescence wavelength, and/or other characteristics in the spectral characteristics of the described compositions.

SWCNT-DNA-ANTIBODY CONJUGATES, RELATED COMPOSITIONS, AND SYSTEMS, METHODS AND DEVICES FOR THEIR USE
20210364507 · 2021-11-25 ·

Described herein are compositions useful for the detection of analytes. In certain embodiments, the invention relates among other things to DNA-encapsulated single-walled carbon nanotubes (SWCNTs) functionalized with an antibody or other analyte-binding species, for detection and/or imaging of an analyte in a biological sample or subject. Other embodiments described herein include systems, methods, and devices utilizing such compositions for ex vivo biomarker quantification, tissue optical probes, and in vivo analyte detection and quantification. In one aspect the invention relates to a single-walled carbon nanotube (SWCNT) sensor, comprising a SWCNT; a polymer associated with the SWCNT; and an analyte-binding species. Detection of one or more analytes is achieved by measuring changes in fluorescence intensity, shifts in fluorescence wavelength, and/or other characteristics in the spectral characteristics of the described compositions.

SYSTEM AND METHOD FOR TRANSISTOR PATHOGEN DETECTOR
20210349091 · 2021-11-11 ·

Disclosed herein is a system and method for transistor pathogen virus detector in which one embodiment may include a substrate layer, a silicon dioxide layer on the substrate layer, a nanocrystalline diamond layer on the silicon dioxide layer, a graphene oxide layer on the nanocrystalline diamond layer, fluorinated graphene oxide portions; and a linker layer, the linker layer including a plurality of pathogen receptors.

SYSTEM AND METHOD FOR TRANSISTOR PATHOGEN DETECTOR
20210349091 · 2021-11-11 ·

Disclosed herein is a system and method for transistor pathogen virus detector in which one embodiment may include a substrate layer, a silicon dioxide layer on the substrate layer, a nanocrystalline diamond layer on the silicon dioxide layer, a graphene oxide layer on the nanocrystalline diamond layer, fluorinated graphene oxide portions; and a linker layer, the linker layer including a plurality of pathogen receptors.

Kit and Method
20220003765 · 2022-01-06 ·

A method of determining the presence or absence of an antibody in a sample, the method comprising the steps of: (a) contacting the sample with a lysis composition comprising: (i) a quaternary ammonium compound; and (ii) a non-ionic surfactant; and (b) contacting the sample and the lysis composition with an antibody detection device.

SENSITIVE AND ROBUST BIOSENSING USING PLASMONIC ENHANCEMENT OF FLUORESCENCE BY RAPID THERMAL ANNEALED SILVER NANOSTRUCTURES

Chips and metallic nanostructure biosensors comprising a dielectric substrate and discontinuous and disordered metallic nanostructures of flat island shapes thereon are disclosed herein. Also disclosed are methods of making and using the same.