Fully Automated Sequential Immunofluorescence (seqIF) for Hyperplex Spatial Proteomics

Studying the immune status of the tumor microenvironment with automated hyperplex immunofluorescence

Studying the immune status of the tumor microenvironment with automated hyperplex immunofluorescence

Automated multiplex immunofluorescence workflow to interrogate the cellular composition of the tumor microenvironment

Automated multiplex immunofluorescence workflow to interrogate the cellular composition of the tumor microenvironment

Validation of a novel multiplex immuno-fluorescence panel for the spatial analysis of the tumor microenvironment

Validation of a novel multiplex immuno-fluorescence panel for the spatial analysis of the tumor microenvironment

Automated multiplex immunofluorescence enables single cell analysis of tumor stroma

Automated multiplex immunofluorescence enables single cell analysis of tumor stroma

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.

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

Ultra-fast and automated immunohistofluorescent multistaining using a microfluidic tissue processor

Microfluidics for rapid cytokeratin immunohistochemical staining in frozen sections

Microfluidics-assisted fluorescence in situ hybridization for advantageous human epidermal growth factor receptor 2 assessment in breast cancer