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Publications
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MYT1L deficiency impairs excitatory neuron trajectory during cortical development
These findings illuminate MYT1L’s role in orchestrating gene expression during neuronal development, providing insights into the molecular underpinnings of MYT1L syndrome. Yen, A., Sarafinovska, S., Chen, X. et al. MYT1L deficiency impairs excitatory neuron trajectory during cortical development. Nat Commun 15, 10308 (2024). -
Enhanced Single Cell DNA Methylation Analysis Using Combinatorial Indexing
Single cell-omics has transformed our understanding of cellular heterogeneity and cell function.
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Ultra high-parameter, instrument-free, protein profiling by sequencing using TotalSeq™-A antibodies at scale
Current protein profiling methods are limited, offering either high parameter analysis or high-throughput capability, but rarely both simultaneously.
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Scaling Single Cell Sequencing: Multiplexing Innovations for Cost-Effective High-Throughput Profiling
Although plate-based fixation-compatible workflows have increased accessibility of single-cell
profiling these workflows can still be challenging to use with complex samples.
Webinars
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LabRoots Webinar: Single Cell Multiomic characterization of pediatric gliomas – with Dr. David Rincón
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The Scientist Lab Tools Webinar: Exploring the Many Facets of DNA Methylation – with Austin Holmes
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GEN Webinar: Modeling Clonal Evolution in Hematopoietic Malignancies – with Dr. Robert Bowman
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Introducing ScalePlex: A Live Webinar
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Product literature
All
Product sheets
App Notes
eBooks
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Product Sheet: CRISPR Guide Enrichment Kit
Maximized guide detection. Maximized discovery.
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Single Cell Portfolio Brochure
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App Note: Powering High Throughput Drug Screening
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Product Sheet: Single Cell Methylation Kit
Advancing DNA methylation to single cell resolution
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E Book: Unlock True Resolution of Epigenetics with Single Cell DNA Methylation
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App Note: Single Cell Methylation in Glioma
Generate high-quality single cell DNA methylation data from tumor samples.