One of the most stubborn problems in modern genomics has finally been given a serious new contender. Single-cell RNA ...
Technological development is key to improving the way hematologic cancer is diagnosed and treated. With this vision, the Josep Carreras Leukemia Research Institute is committed to the creation and ...
Spatial transcriptomics provides a unique perspective on the genes that cells express and where those cells are located. However, the rapid growth of the technology has come at the cost of ...
Explore a new class of spatial technology for use with formalin-fixed paraffin-embedded (FFPE) samples. This workflow ...
Biological tissues are made up of different cell types arranged in specific patterns, which are essential to their proper functioning. Understanding these spatial arrangements is important when ...
BioCytics, Inc., has engaged Eremid® Genomic Services to help sequence an autologous immune cell fraction that is the leading candidate of BioCytics' immune-based cancer cell therapy efforts. Eremid ...
Spatial transcriptomics and single-cell RNA sequencing (scRNA-seq) are often framed as rivals, but they answer different questions about the same tissue. Single-cell RNA-seq resolves cell identity at ...
Transcriptomics represents a critical discipline in cancer research, enabling comprehensive mapping of gene expression profiles and the identification of fusion genes implicated in tumor development.
For the first time, scientists have created a single-cell and spatial transcriptomics framework to investigate damage to individual cells.
Transcriptomics is the study of the transcriptome—the complete set of RNA transcripts that are produced by the genome, under specific circumstances or in a specific cell—using high-throughput methods, ...
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