Precision medicine, drug discovery and cell/gene therapies are driving adoption, creating opportunities in automation, spatial multi-omics, AI bioinformatics and clinical diagnostics.Dublin, Sept. 24, ...
Single-cell transcriptomics in plant systems has emerged as a transformative approach to dissect cellular heterogeneity, developmental dynamics and environmental responses with unprecedented ...
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Volume 40 of SLAS Technology includes one review, seven original research articles, and entries from the Special Issue on ...
BioCytics, Inc., has engaged Eremid® Genomic Services to help sequence an autologous immune cell fraction that is the leading ...
Every cell in the body carries essentially the same genome, yet what distinguishes a neuron from a liver cell is which genes ...
An overview of where next-generation sequencing is used, from whole-genome variant discovery to clinical liquid biopsy and single-cell transcriptomics.
One of the most stubborn problems in modern genomics has finally been given a serious new contender. Single-cell RNA ...
A comprehensive review article titled “Bioinformatics perspectives on transcriptomics: A comprehensive review of bulk and single-cell RNA sequencing analyses,” published in Quantitative Biology, ...
Scientists can now detect molecular features in place at single-cell resolution, but existing spatial transcriptomics technologies remain expensive and difficult for many laboratories to adopt.
The global transcriptome sequencing market is projected to reach $11.8 billion by 2035, growing at a 7.3% CAGR from 2025 to 2035. Growth is driven by falling sequencing costs, precision medicine, drug ...
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