Single Cell Sequencing

10x Genomics offers a comprehensive range of products that empower researchers to explore genomics at both the single-cell and spatial levels. Their products are designed to enable researchers to gain deeper insights into the complexities of biology and disease by providing high-resolution data, Here’s an overview of some of their key products:

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Chromium Single Cell

The Chromium Single Cell Technology by 10x Genomics is a powerful platform for single-cell analysis, providing researchers with high-resolution insights into gene expression at the individual cell level. Flexible enough to fit into any lab, Chromium X series can partition hundreds of thousands of fresh, frozen, or fixed cells in a single run, removing constraints, and making million cell studies routine.

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Xenium in situ

Xenium builds on our years of innovation in single cell and spatial technologies to deliver the most advanced end-to-end high-plex in situ platform on the market. The purpose-built design streamlines going from tissue section to data, with an automated analyzer, curated and/or custom panels, and intuitive visualization and analysis software.

Visium CytAssist

The Visium platform enables unbiased molecular profiling of frozen and fixed tissue sections, simple tissue handling, sensitive gene detection, and user-friendly software for visualizing gene expression.

Visium CytAssist is a compact instrument designed to simplify the Visium workflow by facilitating the transfer of transcriptomic probes from standard glass slides to Visium slides, enabling whole transcriptomic spatial profiling insights across your entire tissue section, and expanded compatibility with FFPE and/or FF samples.

Next GEM technology

is built on a novel chip architecture that enables high-throughput single cell analysis with our Chromium instruments. This innovative system includes chips and compatible reagents, and is offered for the full breadth of our single cell product portfolio.

Spatial transcriptomics

is a groundbreaking molecular profiling method that allows scientists to measure all the gene activity in a tissue sample and map where the activity is occurring.

In Situ Technology
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Life Sciences

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