Single-cell total RNA sequencing expands our view of gene regulation
RNA sequencing captures both coding and noncoding RNAs at single-cell resolution, revealing complex regulatory programs and cellular identities across development and disease...
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RNA sequencing captures both coding and noncoding RNAs at single-cell resolution, revealing complex regulatory programs and cellular identities across development and disease...
RNA sequencing combined with deep learning improves identification of cell populations and key genes, enabling more accurate analysis of complex single cell datasets...
CIPHER‑seq is a single‑cell method that measures RNA and proteins simultaneously, exposing gaps in cytokine signaling and reducing mitochondrial stress signatures to give a clearer...
RNA sequencing from more than 22 million cells trained a model that predicts cell-type-specific gene expression and noncoding variant...
SCSEQ makes single-cell RNA sequencing analysis more accessible through a web-based platform that supports preprocessing, clustering, cell type identification, and downstream biolo...
TAP-seq combines genome editing with targeted RNA sequencing to enable sensitive and cost-effective single-cell functional genomics screens...
RNA sequencing with sc-rDSeq captures diverse RNA types, revealing hidden tumor heterogeneity and drug-resistant cell populations in lung cancer...
RNA sequencing combined with single-cell analysis enables scSurvival to link specific tumor cell populations to patient risk, improving survival prediction and revealing drivers of...
RNA sequencing with the new sm-PORE-cupine method reveals how individual RNA molecules fold and behave, offering insights into gene regulation, viral biology, and therapeutic disco...
RNA sequencing combined with protein analysis enables detailed tracking of immune cell activity, revealing cytokine dynamics and improving understanding of cancer and immune respon...
Parse Biosciences enables RNA sequencing of FFPE samples at single cell resolution, unlocking archived tissues for whole transcriptome analysis and deeper insights into gene...
RNA sequencing with SCOTCH improves isoform-level analysis from long-read single-cell data, helping reveal cell-type-specific transcript diversity and novel RNA isoforms
RNA sequencing advances support CRISPR-based detection methods that use kinetic signatures to identify multiple viruses and variants from RNA in a single, rapid diagnostic assay...
RNA sequencing of newly synthesized transcripts reveals dynamic immune cell activation and gene regulation during infection, providing real-time insight into how immune responses a...
Advanced RNA sequencing methods, including IRISeq and EnrichSci, uncover spatial interactions and molecular changes linked to aging in vulnerable brain cell populations...
RNA sequencing with metabolic labeling reveals early immune cell responses that shape zebrafish heart regeneration and may guide future cardiac repair strategies...
RNA sequencing reveals improved recovery and analysis of pancreatic acinar cells, enabling clearer insights into cell states in healthy tissue and disease conditions...
RNA sequencing with NTVE enables repeated monitoring of gene expression in living cells, supporting time-course analysis of differentiation, perturbation responses, and cellular dy...
RNA sequencing combined with spatial profiling tracks gene expression and cell proliferation, revealing dynamic cellular interactions and uncovering new insights into development.....
by Yixiang Huang, Yuan Gan, Xinqi Gong Multi-omics profiling—spanning proteomics, transcriptomics, and additional omics data types—is rapidly advancing, providing increasingly det...
Takara Bio’s Trekker FX spatial transcriptomics improves single-cell resolution and detects more cell interactions, enhancing analysis of tumor microenvironments in cancer samples....
The collaboration brings together OneCyte's proprietary single-cell platform for high-throughput and high-speed clone selection with Kemp Proteins' molecular engineering capabiliti...
RNA sequencing combined with nanopore technology and machine learning may streamline GMP quality control testing for mRNA therapeutics within a single workflow...
RNA sequencing with nanopore technology improves m6A modification mapping when paired with calibrated workflows, helping reveal cell-specific RNA regulation in fibroblasts and neur...
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