Abstract High-throughput single-cell RNA-seq methods assign limited unique molecular identifier (UMI) counts as gene expression values to single cells from shallow sequence reads and detect limited gene counts. We thus developed a high-throughput single-cell RNA-seq method, Quartz-Seq2, to overcome these issues. Our improvements in the reaction steps make it possible to effectively convert initial reads to UMI counts, at a rate of 30–50%, and detect more genes. To demonstrate the power of Quartz-Seq2, we analyzed approximately 10,000 transcriptomes from in vitro embryonic stem cells and an in vivo stromal vascular fraction with a limited number of reads
Abstract Single-cell RNA-seq technologies require library preparation prior to sequencing. Here, we ...
Single-cell RNA-seq technologies require library preparation prior to sequencing. Here, we present t...
Abstract Background Single-cell RNA sequencing (scRNA-seq) provides new insights to address biologic...
Single-cell RNA sequencing (scRNA-seq) offers new possibilities to address biological and medical qu...
© 2020 National Academy of Sciences. All rights reserved. Single-cell quantification of RNAs is impo...
Single cell RNA sequencing methods have been increasingly used to understand cellular heterogeneity....
Accurate profiling of minute quantities of RNA in a global manner can enable key advances in many sc...
For the past several decades, due to technical limitations, the field of transcriptomics has focused...
High-throughput transcriptomics has revolutionised the field of transcriptome research by offering a...
BackgroundRecently, measurement of RNA at single cell resolution has yielded surprising insights. Me...
Single-cell transcriptomics requires a method that is sensitive, accurate, and reproducible. Here, w...
Abstract RNA sequencing (RNA-seq) is a genomic approach for the detection and quantitative analysis ...
Understanding biological systems at a single cell resolution may reveal several novel insights which...
Single-cell whole-transcriptome analysis is a powerful tool for quantifying gene expression heteroge...
Transcriptomic profiling by RNA sequencing (RNA-Seq) represents the preferred approach to measure ge...
Abstract Single-cell RNA-seq technologies require library preparation prior to sequencing. Here, we ...
Single-cell RNA-seq technologies require library preparation prior to sequencing. Here, we present t...
Abstract Background Single-cell RNA sequencing (scRNA-seq) provides new insights to address biologic...
Single-cell RNA sequencing (scRNA-seq) offers new possibilities to address biological and medical qu...
© 2020 National Academy of Sciences. All rights reserved. Single-cell quantification of RNAs is impo...
Single cell RNA sequencing methods have been increasingly used to understand cellular heterogeneity....
Accurate profiling of minute quantities of RNA in a global manner can enable key advances in many sc...
For the past several decades, due to technical limitations, the field of transcriptomics has focused...
High-throughput transcriptomics has revolutionised the field of transcriptome research by offering a...
BackgroundRecently, measurement of RNA at single cell resolution has yielded surprising insights. Me...
Single-cell transcriptomics requires a method that is sensitive, accurate, and reproducible. Here, w...
Abstract RNA sequencing (RNA-seq) is a genomic approach for the detection and quantitative analysis ...
Understanding biological systems at a single cell resolution may reveal several novel insights which...
Single-cell whole-transcriptome analysis is a powerful tool for quantifying gene expression heteroge...
Transcriptomic profiling by RNA sequencing (RNA-Seq) represents the preferred approach to measure ge...
Abstract Single-cell RNA-seq technologies require library preparation prior to sequencing. Here, we ...
Single-cell RNA-seq technologies require library preparation prior to sequencing. Here, we present t...
Abstract Background Single-cell RNA sequencing (scRNA-seq) provides new insights to address biologic...