Single cell and spatial multiomics technologies provide powerful insights into cellular diversity, function, and tissue organization. Whether you're investigating cancer, immunology, neuroscience, developmental biology, or precision medicine, our comprehensive solutions support a wide range of research applications. Explore the services below to find the right solution for your study.
Characterise cellular heterogeneity by profiling gene expression at single-cell resolution. Ideal for identifying cell types, discovering rare cell populations, and studying cellular responses within complex tissues.
Investigate immune cell diversity and adaptive immune repertoires through combined gene expression and TCR/BCR profiling, supporting immuno-oncology, infectious disease, vaccine, and autoimmune research.
Capture full-length transcripts and isoforms at single-cell resolution to improve transcript annotation, identify novel splice variants, and reveal transcriptomic complexity.
Map whole-transcriptome gene expression while preserving tissue architecture, providing high-resolution insights into cellular interactions, tissue organization, and disease microenvironments.
Profile gene expression across large tissue sections with ultra-high spatial resolution, enabling comprehensive mapping of cellular organization throughout entire tissues and organs.
Visualise and quantify targeted RNA molecules directly within tissue at single-cell and subcellular resolution, enabling high-resolution validation of gene expression within native tissue environments.
Rigorous QC embedded throughout every stage of your project.
One partner for your entire workflow, from tissue dissociation to biological insights.
Trusted 10x Genomics workflows to deliver reliable, reproducible data.

High-throughput single cell profiling for scalable multiomics studies.

Whole-transcriptome spatial profiling while preserving tissue architecture.

High-resolution in situ spatial transcriptomics with single-cell precision.

Profile whole-transcriptome gene expression across large tissue sections with nanoscale spatial resolution, enabling detailed studies of tissue architecture, cellular interactions, and complex biological systems.

Talk to our specialist to find the right solution.
Single cell and spatial multiomics technologies provide powerful insights into cellular diversity, function, and tissue organization. Whether you're investigating cancer, immunology, neuroscience, developmental biology, or precision medicine, our comprehensive solutions support a wide range of research applications. Explore the services below to find the right solution for your study.
Characterise cellular heterogeneity by profiling gene expression at single-cell resolution. Ideal for identifying cell types, discovering rare cell populations, and studying cellular responses within complex tissues.
Investigate immune cell diversity and adaptive immune repertoires through combined gene expression and TCR/BCR profiling, supporting immuno-oncology, infectious disease, vaccine, and autoimmune research.
Capture full-length transcripts and isoforms at single-cell resolution to improve transcript annotation, identify novel splice variants, and reveal transcriptomic complexity.
Map whole-transcriptome gene expression while preserving tissue architecture, providing high-resolution insights into cellular interactions, tissue organization, and disease microenvironments.
Profile gene expression across large tissue sections with ultra-high spatial resolution, enabling comprehensive mapping of cellular organization throughout entire tissues and organs.
Visualise and quantify targeted RNA molecules directly within tissue at single-cell and subcellular resolution, enabling high-resolution validation of gene expression within native tissue environments.
Rigorous QC embedded throughout every stage of your project.
One partner for your entire workflow, from tissue dissociation to biological insights.
Trusted 10x Genomics workflows to deliver reliable, reproducible data.

High-throughput single cell profiling for scalable multiomics studies.

Whole-transcriptome spatial profiling while preserving tissue architecture.

High-resolution in situ spatial transcriptomics with single-cell precision.

Profile whole-transcriptome gene expression across large tissue sections with nanoscale spatial resolution, enabling detailed studies of tissue architecture, cellular interactions, and complex biological systems.

Talk to our specialist to find the right solution.