Single-cell RNA sequencing has emerged as a powerful tool for characterizing cells, but not all phenotypes of interest can be observed through changes in gene expression. Linking sequencing with optical analysis has provided insight into the molecular basis of cellular function, but current approaches have limited throughput. Here, we present a high-throughput platform for linked optical and gene expression profiling of single cells. We demonstrate accurate fluorescence and gene expression measurements on thousands of cells in a single experiment. We use the platform to characterize DNA and RNA changes through the cell cycle and correlate antibody fluorescence with gene expression. The platform's ability to isolate rare cell subsets and per...
Optically decodable beads link the identity of a sample to a measurement through an optical barcode,...
Cellular biology has traditionally relied upon simple, low-dimensional single-cell measurements (e.g...
Cellular biology has traditionally relied upon simple, low-dimensional single-cell measurements (e.g...
Single-cell RNA sequencing has emerged as a powerful tool for characterizing cells, but not all phen...
Abstract Optically decodable beads link the identity of a sample to a measurement through an optical...
The transcriptome of a cell contains a wealth of information about the cell’s current state and its ...
Abstract Background Technological advances have enabled transcriptome characterization of cell types...
Fluorescence microscopy is a powerful quantitative tool for exploring regulatory networks in single ...
The single cell is the fundamental unit of biology. Understanding how the identity of individual cel...
The single cell is the fundamental unit of biology. Understanding how the identity of individual cel...
SummaryCells, the basic units of biological structure and function, vary broadly in type and state. ...
Fluorescence microscopy is a powerful quantitative tool for exploring regulatory networks in single ...
We have developed a high-throughput amplification method for generating robust gene expression profi...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biological Engineering, 2017.Ca...
We have developed a high-throughput amplification method for generating robust gene expression profi...
Optically decodable beads link the identity of a sample to a measurement through an optical barcode,...
Cellular biology has traditionally relied upon simple, low-dimensional single-cell measurements (e.g...
Cellular biology has traditionally relied upon simple, low-dimensional single-cell measurements (e.g...
Single-cell RNA sequencing has emerged as a powerful tool for characterizing cells, but not all phen...
Abstract Optically decodable beads link the identity of a sample to a measurement through an optical...
The transcriptome of a cell contains a wealth of information about the cell’s current state and its ...
Abstract Background Technological advances have enabled transcriptome characterization of cell types...
Fluorescence microscopy is a powerful quantitative tool for exploring regulatory networks in single ...
The single cell is the fundamental unit of biology. Understanding how the identity of individual cel...
The single cell is the fundamental unit of biology. Understanding how the identity of individual cel...
SummaryCells, the basic units of biological structure and function, vary broadly in type and state. ...
Fluorescence microscopy is a powerful quantitative tool for exploring regulatory networks in single ...
We have developed a high-throughput amplification method for generating robust gene expression profi...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biological Engineering, 2017.Ca...
We have developed a high-throughput amplification method for generating robust gene expression profi...
Optically decodable beads link the identity of a sample to a measurement through an optical barcode,...
Cellular biology has traditionally relied upon simple, low-dimensional single-cell measurements (e.g...
Cellular biology has traditionally relied upon simple, low-dimensional single-cell measurements (e.g...