Patent classifications
C12Q1/6844
Kits and methods for pathogen detection
Kits and methods for detecting pathogens without the need for laboratory equipment are disclosed. The kits and methods described herein allow for near-room temperature amplification of pathogen polynucleotides in a biological sample in a one-compartment reaction vessel. The kits and methods may be used to detect any target nucleic acid, such as DNA or RNA from a bacterial, fungal, or viral pathogen.
Kits and methods for pathogen detection
Kits and methods for detecting pathogens without the need for laboratory equipment are disclosed. The kits and methods described herein allow for near-room temperature amplification of pathogen polynucleotides in a biological sample in a one-compartment reaction vessel. The kits and methods may be used to detect any target nucleic acid, such as DNA or RNA from a bacterial, fungal, or viral pathogen.
Kits and methods for pathogen detection
Kits and methods for detecting pathogens without the need for laboratory equipment are disclosed. The kits and methods described herein allow for near-room temperature amplification of pathogen polynucleotides in a biological sample in a one-compartment reaction vessel. The kits and methods may be used to detect any target nucleic acid, such as DNA or RNA from a bacterial, fungal, or viral pathogen.
Water-soluble prolamin, preparation thereof, and uses thereof for food-grade application including prolamin compositions combining prolamin and DNA taggants
A water-soluble prolamin composition, such as a zein composition, and methods for producing the same. A method for tagging items comprising applying a plurality of non-coding DNA tags in a prolamin composition, such as a zein composition, wherein the selection of the particular taggants corresponds with a binary or nonbinary code sequence containing information about the tagged items.
Water-soluble prolamin, preparation thereof, and uses thereof for food-grade application including prolamin compositions combining prolamin and DNA taggants
A water-soluble prolamin composition, such as a zein composition, and methods for producing the same. A method for tagging items comprising applying a plurality of non-coding DNA tags in a prolamin composition, such as a zein composition, wherein the selection of the particular taggants corresponds with a binary or nonbinary code sequence containing information about the tagged items.
PROBES, MICROARRAY, PRIMERS, KIT AND APPLICATIONS FOR RAPID DETECTION OF CLINICAL OPHTHALMIC MICROORGANISMS
Disclosed are probes, primers, a microarray, a kit and applications for rapid detection of clinical microorganism in ophthalmology, belonging to that technical field of clinical microorganism detection. The probes of that disclosure comprise probes for respectively detect Staphylococcus epidermidis, Staphylococcus aureus, Staphylococcus haemolyticus, Pseudomonas aeruginosa, Staphylococcus hominis, Serratia marcescens, Escherichia coli, Bacillus subtilis and Enterobacter cloacae. The disclosure also discloses primers for amplifying the target bacteria, which comprises primers which can amplify gene sequence fragments with intra-species homology of more than 95 percent (%) and inter-species homology of less than 75%. The disclosure also provides a method for synthesizing the hybridization probe on the microarray, a method for hybridization reaction and a method for scanning detection. The probes described in the present invention are highly specific and detects microorganisms in ophthalmic clinical samples with sufficient positivity, high accuracy and deliver diagnosis in a short period of time.
STABILIZATION AND/OR COMPACTION OF NUCLEIC ACID STRUCTURES
The present disclosure in some aspects relates to methods and compositions for accurately detecting and quantifying multiple analytes present in a biological sample. In some aspects, the methods and compositions provided herein address one or more issues associated with the stability and/or size of nucleic acid structures such as rolling circle amplification products in the biological sample.
STABILIZATION AND/OR COMPACTION OF NUCLEIC ACID STRUCTURES
The present disclosure in some aspects relates to methods and compositions for accurately detecting and quantifying multiple analytes present in a biological sample. In some aspects, the methods and compositions provided herein address one or more issues associated with the stability and/or size of nucleic acid structures such as rolling circle amplification products in the biological sample.
COMPOSITIONS AND METHODS FOR ROLLING CIRCLE AMPLIFICATION
The present disclosure in some aspects relates to methods and compositions for accurately detecting and quantifying multiple analytes present in a biological sample. In some aspects, the methods and compositions provided herein address one or more issues associated with the stability and/or size of nucleic acid structures such as rolling circle amplification products in the biological sample.
COMPOSITIONS AND METHODS FOR ROLLING CIRCLE AMPLIFICATION
The present disclosure in some aspects relates to methods and compositions for accurately detecting and quantifying multiple analytes present in a biological sample. In some aspects, the methods and compositions provided herein address one or more issues associated with the stability and/or size of nucleic acid structures such as rolling circle amplification products in the biological sample.