Patent classifications
C12Q2537/1376
HAIRPIN LOOP METHOD FOR DOUBLE STRAND POLYNUCLEOTIDE SEQUENCING USING TRANSMEMBRANE PORES
The invention relates to a new method of sequencing a double stranded target polynucleotide. The two strands of the double stranded target polynucleotide are linked by a bridging moiety. The two strands of the target polynucleotide are separated using a polynucleotide binding protein and the target polynucleotide is sequenced using a transmembrane pore.
HAIRPIN LOOP METHOD FOR DOUBLE STRAND POLYNUCLEOTIDE SEQUENCING USING TRANSMEMBRANE PORES
The invention relates to a new method of sequencing a double stranded target polynucleotide. The two strands of the double stranded target polynucleotide are linked by a bridging moiety. The two strands of the target polynucleotide are separated using a polynucleotide binding protein and the target polynucleotide is sequenced using a transmembrane pore.
METHOD FOR DETECTING TARGET RNA BY UTILIZING NICKING/EXTENSION CHAIN REACTION SYSTEM- BASED ISOTHERMAL NUCLEIC ACID AMPLIFICATION
The present invention relates to a detection method for detecting a target RNA contained in a sample with high sensitivity by using nicking/extension chain reaction system-based isothermal nucleic acid amplification (NESBA) that uses activity of a cleavage enzyme and a DNA polymerase. The NESBA of the present invention is a new concept isothermal target RNA detection method that realizes higher amplification efficiency than the existing NASBA technology and is deemed to be utilizable as a new concept diagnosis technology that can replace conventional target RNA detection technologies.
METHOD FOR DETECTING TARGET RNA BY UTILIZING NICKING/EXTENSION CHAIN REACTION SYSTEM- BASED ISOTHERMAL NUCLEIC ACID AMPLIFICATION
The present invention relates to a detection method for detecting a target RNA contained in a sample with high sensitivity by using nicking/extension chain reaction system-based isothermal nucleic acid amplification (NESBA) that uses activity of a cleavage enzyme and a DNA polymerase. The NESBA of the present invention is a new concept isothermal target RNA detection method that realizes higher amplification efficiency than the existing NASBA technology and is deemed to be utilizable as a new concept diagnosis technology that can replace conventional target RNA detection technologies.
METHODS AND DEVICES FOR SINGLE-MOLECULE WHOLE GENOME ANALYSIS
Provided are methods and devices for single-molecule genomic analysis. In one embodiment, the methods entail processing a double-stranded nucleic acid and characterizing said nucleic acid. These methods are useful in, e.g. determining structural variations and copy number variations between individuals.
METHODS AND DEVICES FOR SINGLE-MOLECULE WHOLE GENOME ANALYSIS
Provided are methods and devices for single-molecule genomic analysis. In one embodiment, the methods entail processing a double-stranded nucleic acid and characterizing said nucleic acid. These methods are useful in, e.g. determining structural variations and copy number variations between individuals.
Molecular programming tools
The present disclosure provides, in some aspects, nucleic acid-based molecular tools that enable the recording of molecular structure and soluble signals as well as the programmed assembly of molecular structures.
Molecular programming tools
The present disclosure provides, in some aspects, nucleic acid-based molecular tools that enable the recording of molecular structure and soluble signals as well as the programmed assembly of molecular structures.
CONDITIONAL PRIMER EXTENSION FOR SINGLE-MOLECULE DETECTION
The present disclosure provides, in some embodiments, methods and compositions for single-molecule detection.
CONDITIONAL PRIMER EXTENSION FOR SINGLE-MOLECULE DETECTION
The present disclosure provides, in some embodiments, methods and compositions for single-molecule detection.