Patent classifications
C12Q2523/319
Methods and systems for microfluidic screening
Provided are methods and systems useful for screening large libraries of effector molecules. Such methods and systems are particularly useful in microfluidic systems and devices. The methods and systems provided herein utilize encoded effectors to screen large libraries of effectors.
Methods and systems for microfluidic screening
Provided are methods and systems useful for screening large libraries of effector molecules. Such methods and systems are particularly useful in microfluidic systems and devices. The methods and systems provided herein utilize encoded effectors to screen large libraries of effectors.
MULTIPLE BEADS PER DROPLET RESOLUTION
Methods of generating a nucleic acid signature for identifying particles associated in a partition are provided. In one aspect, the method comprises: partitioning a sample into a plurality of partitions comprising a particle comprising a solid support surface, the solid support surface having a plurality of oligonucleotide primers conjugated thereon, wherein the oligonucleotide primers comprise a barcode sequence, and wherein the partitions have 0, 1, or more than 1 particles per partition; providing in a partition a substrate comprising a barcode sequence or repeating clonal barcode sequences; and in the partition, associating a first particle conjugated to oligonucleotide primers comprising a first barcode sequence and a second particle conjugated to oligonucleotide primers comprising a second barcode sequence to a barcode sequence from the substrate, thereby generating a nucleic acid signature for the particles in the partition.
MULTIPLE BEADS PER DROPLET RESOLUTION
Methods of generating a nucleic acid signature for identifying particles associated in a partition are provided. In one aspect, the method comprises: partitioning a sample into a plurality of partitions comprising a particle comprising a solid support surface, the solid support surface having a plurality of oligonucleotide primers conjugated thereon, wherein the oligonucleotide primers comprise a barcode sequence, and wherein the partitions have 0, 1, or more than 1 particles per partition; providing in a partition a substrate comprising a barcode sequence or repeating clonal barcode sequences; and in the partition, associating a first particle conjugated to oligonucleotide primers comprising a first barcode sequence and a second particle conjugated to oligonucleotide primers comprising a second barcode sequence to a barcode sequence from the substrate, thereby generating a nucleic acid signature for the particles in the partition.
METHOD OF ENCODING DATA ON A POLYNUCLEOTIDE STRAND
Provided herein are methods of encoding data on a polymer. Also provided are methods of reading data encoded on a polymer. Also provided are systems for encoding data on a polymer; systems for reading data encoded on a polymer; and data encoding/data reading platforms.
METHOD OF ENCODING DATA ON A POLYNUCLEOTIDE STRAND
Provided herein are methods of encoding data on a polymer. Also provided are methods of reading data encoded on a polymer. Also provided are systems for encoding data on a polymer; systems for reading data encoded on a polymer; and data encoding/data reading platforms.
Autocatalytic Relay Loop Signal Amplification Mechanism and Applications Thereof
Provided herein are methods involving an autocatalyzed looped relay amplification mechanism for detecting an analyte in a sample. The method is useful for detecting very low abundance analytes.
Autocatalytic Relay Loop Signal Amplification Mechanism and Applications Thereof
Provided herein are methods involving an autocatalyzed looped relay amplification mechanism for detecting an analyte in a sample. The method is useful for detecting very low abundance analytes.
PHOTOSELECTIVE NON-INVASIVE TARGETED GENOMIC AND EPIGENOMIC SEQUENCING OF SPATIALLY-DEFINED CELLS OR SUBCELLULAR REGIONS
The present disclosure relates to methods aimed towards non-invasive targeted genomic and epigenomic sequencing of spatially-defined cellular or subcellular region. More particularly, the present disclosure relates to methods of using photoselection to achieve non-invasive targeted genomic and epigenomic sequencing of spatially-defined cellular or subcellular regions, via the use of light-activated probes.
PHOTOSELECTIVE NON-INVASIVE TARGETED GENOMIC AND EPIGENOMIC SEQUENCING OF SPATIALLY-DEFINED CELLS OR SUBCELLULAR REGIONS
The present disclosure relates to methods aimed towards non-invasive targeted genomic and epigenomic sequencing of spatially-defined cellular or subcellular region. More particularly, the present disclosure relates to methods of using photoselection to achieve non-invasive targeted genomic and epigenomic sequencing of spatially-defined cellular or subcellular regions, via the use of light-activated probes.