C12Q2539/10

METHOD OF SCREENING A THERAPY FOR INDUCTION OF FERROPTOSIS
20230160878 · 2023-05-25 ·

Provided herein are methods of screening a therapy for induction of ferroptosis, the method comprising: exposing a cell line to a potential therapy; measuring induction of Heme Oxygenase 1 (HMOX1) resulting from the exposing the cell line to the potential therapy; and identifying the potential therapy as passing or failing the screening of the therapy for induction of ferroptosis based on the measuring the induction of HMOX1.

METHODS AND COMPOSITIONS FOR DETERMINING PLOIDY

The invention provides improved methods, compositions, and kits for detecting ploidy of chromosome regions, e.g. for detecting cancer or a chromosomal abnormality in a gestating fetus. The methods can utilize a set of more than 200 SNPs that are found within haploblocks and can include analyzing a series of target chromosomal regions related to cancer or a chromosomal abnormality in a gestating fetus. Finally the method may use knowledge about chromosome crossover locations or a best fit algorithm for the analysis. The compositions may comprise more than 200 primers located within haplotype blocks known to show CNV.

Detecting mutations and ploidy in chromosomal segments

The invention provides methods, systems, and computer readable medium for detecting ploidy of chromosome segments or entire chromosomes, for detecting single nucleotide variants and for detecting both ploidy of chromosome segments and single nucleotide variants. In some aspects, the invention provides methods, systems, and computer readable medium for detecting cancer or a chromosomal abnormality in a gestating fetus.

DEVICES AND METHODS FOR ANALYZING BIOLOGICAL SAMPLES

Described herein are systems and methods for analyzing biological samples. Including a method for processing an analyte, comprising providing a fluidic device comprising the analyte and one or more polymer precursors; selecting a discrete area within said fluidic device; providing an energy source in optical communication with fluidic device; and selectively supplying a unit of energy generated from the energy source to the fluidic device to generate a polymer matrix within the fluidic device, wherein the polymer matrix is within the discrete area or adjacent to the discrete area.

DEVICES AND METHODS FOR ANALYZING BIOLOGICAL SAMPLES

Described herein are systems and methods for analyzing biological samples. Including a method for processing an analyte, comprising providing a fluidic device comprising the analyte and one or more polymer precursors; selecting a discrete area within said fluidic device; providing an energy source in optical communication with fluidic device; and selectively supplying a unit of energy generated from the energy source to the fluidic device to generate a polymer matrix within the fluidic device, wherein the polymer matrix is within the discrete area or adjacent to the discrete area.

METHODS OF FUNCTIONAL LINKAGE OF CHROMOSOMAL POSITIONS
20230159916 · 2023-05-25 ·

Provided herein are methods of functionally linking two or more genetic loci of a genome of a cell sample, the method comprising: exposing the cell sample to a plurality of different stimuli in parallel for a period of time sufficient to elicit a transcriptional response from the cell sample directly or indirectly; performing a transcriptional run-on assay on the cell sample to yield labeled nascent RNA transcripts; isolating the labeled nascent RNA transcripts; preparing a nascent RNA library from the labeled nascent RNA transcripts; sequencing the nascent RNA library to produce sequencing reads and mapping the sequencing reads to a reference genome, wherein the sequencing reads that are mapped represent genomic locations in the cell sample where active transcription was occurring at the end of the period of time; and identifying active enhancers and correlating activity of the active enhancers with the active transcription of the cell samples.

Devices and methods for analyzing biological samples

Described herein are systems and methods for analyzing biological samples. Including a method for processing an analyte, comprising providing a fluidic device comprising the analyte and one or more polymer precursors; selecting a discrete area within said fluidic device; providing an energy source in optical communication with fluidic device; and selectively supplying a unit of energy generated from the energy source to the fluidic device to generate a polymer matrix within the fluidic device, wherein the polymer matrix is within the discrete area or adjacent to the discrete area.

Devices and methods for analyzing biological samples

Described herein are systems and methods for analyzing biological samples. Including a method for processing an analyte, comprising providing a fluidic device comprising the analyte and one or more polymer precursors; selecting a discrete area within said fluidic device; providing an energy source in optical communication with fluidic device; and selectively supplying a unit of energy generated from the energy source to the fluidic device to generate a polymer matrix within the fluidic device, wherein the polymer matrix is within the discrete area or adjacent to the discrete area.

DEVICES AND METHODS FOR ANALYZING BIOLOGICAL SAMPLES

Described herein are systems and methods for analyzing biological samples. Including a method for processing an analyte, comprising providing a fluidic device comprising the analyte and one or more polymer precursors; selecting a discrete area within said fluidic device; providing an energy source in optical communication with fluidic device; and selectively supplying a unit of energy generated from the energy source to the fluidic device to generate a polymer matrix within the fluidic device, wherein the polymer matrix is within the discrete area or adjacent to the discrete area.

DEVICES AND METHODS FOR ANALYZING BIOLOGICAL SAMPLES

Described herein are systems and methods for analyzing biological samples. Including a method for processing an analyte, comprising providing a fluidic device comprising the analyte and one or more polymer precursors; selecting a discrete area within said fluidic device; providing an energy source in optical communication with fluidic device; and selectively supplying a unit of energy generated from the energy source to the fluidic device to generate a polymer matrix within the fluidic device, wherein the polymer matrix is within the discrete area or adjacent to the discrete area.