Mapping the tumor microenvironment with sequential immunofluorescence, an automated image analysis pipeline, and spatial metrics

Mapping the tumor microenvironment with sequential immunofluorescence, an automated image analysis pipeline, and spatial metrics

COMET™ streamlines hyperplex immunofluorescence at single-cell resolution

COMET™ streamlines hyperplex immunofluorescence at single-cell resolution

Easy and scalable transfer of an immuno-oncology panel across a wide range of cancer tissue types.

Easy and scalable transfer of an immuno-oncology panel across a wide range of cancer tissue types.

Next-Generation Pathology Using Multiplexed Immunohistochemistry: Mapping Tissue Architecture at Single-Cell Level

A 10-plex panel to accelerate immuno-oncology research

A 10-plex panel to accelerate immuno-oncology research

Cutting-Edge Platforms for Analysis of Immune Cells in the Hepatic Microenvironment—Focus on Tumor-Associated Macrophages in Hepatocellular Carcinoma

Elution efficiency and epitope stability with COMET™

Elution efficiency and epitope stability with COMET™

How to reduce and remove autofluorescence

How to reduce and remove autofluorescence

Microfluidics-assisted multiplexed biomarker detection for in situ mapping of immune cells in tumor sections

Microfluidic-based immunohistochemistry for breast cancer diagnosis: a comparative clinical study