RNA analysis at the cellular resolution in the human brain is challenging. Here, we describe an optimised approach for detecting single RNA transcripts in a cell-type specific manner in frozen human brain tissue using multiplexed fluorescent RNAscope probes. We developed a new robust analytical approach for RNAscope quantification. Our method shows that low RNA integrity does not significantly affect RNAscope signal, recapitulates bulk RNA analysis and provides spatial context to transcriptomic analysis of human post-mortem brain at single-cell resolution. In summary, our optimised method allows the usage of frozen human samples from brain banks to perform quantitative RNAscope analysis
Technical and experimental advances in microaspiration techniques, RNA amplification, quantitative r...
Abstract Background Gene expression assays have been shown to yield high quality genome-wide data fr...
Single-nucleus RNA sequencing (snRNA-seq) measures gene expression in individual nuclei instead of c...
RNA analysis at the cellular resolution in the human brain is challenging. Here, we describe an opti...
Abstract Post-Mortem Brain Nuclei Isolation for Single Nucleus RNA Sequencing Charles Tran, Dept. o...
BACKGROUND: Recent developments in droplet-based microfluidics allow the transcriptional profiling o...
While RNA editing by A-to-I deamination is a requisite for neuronal function in humans, it is under ...
Advanced molecular probing techniques such as single molecule fluorescence in situ hybridization (sm...
Single-cell RNA sequencing (RNA-seq) is now a widely implemented tool for assaying gene expression. ...
Diverse cell types have unique transcriptional signatures that are best interrogated at single-cell ...
High-throughput sequencing has greatly influenced the amount of data produced and biological questio...
A variety of single-cell RNA preparation procedures have been described. So far, protocols require f...
The ability to quantify a large number of varied transcripts in single cells in their native spatial...
Abstract Background Gene expression assays have been shown to yield high quality genome-wide data fr...
Accurate profiling of minute quantities of RNA in a global manner can enable key advances in many sc...
Technical and experimental advances in microaspiration techniques, RNA amplification, quantitative r...
Abstract Background Gene expression assays have been shown to yield high quality genome-wide data fr...
Single-nucleus RNA sequencing (snRNA-seq) measures gene expression in individual nuclei instead of c...
RNA analysis at the cellular resolution in the human brain is challenging. Here, we describe an opti...
Abstract Post-Mortem Brain Nuclei Isolation for Single Nucleus RNA Sequencing Charles Tran, Dept. o...
BACKGROUND: Recent developments in droplet-based microfluidics allow the transcriptional profiling o...
While RNA editing by A-to-I deamination is a requisite for neuronal function in humans, it is under ...
Advanced molecular probing techniques such as single molecule fluorescence in situ hybridization (sm...
Single-cell RNA sequencing (RNA-seq) is now a widely implemented tool for assaying gene expression. ...
Diverse cell types have unique transcriptional signatures that are best interrogated at single-cell ...
High-throughput sequencing has greatly influenced the amount of data produced and biological questio...
A variety of single-cell RNA preparation procedures have been described. So far, protocols require f...
The ability to quantify a large number of varied transcripts in single cells in their native spatial...
Abstract Background Gene expression assays have been shown to yield high quality genome-wide data fr...
Accurate profiling of minute quantities of RNA in a global manner can enable key advances in many sc...
Technical and experimental advances in microaspiration techniques, RNA amplification, quantitative r...
Abstract Background Gene expression assays have been shown to yield high quality genome-wide data fr...
Single-nucleus RNA sequencing (snRNA-seq) measures gene expression in individual nuclei instead of c...