
GeoMx Digital Spatial Profiling (DSP) service by Lambda Biologics enables spatially resolved RNA and protein analysis directly within intact tissue sections and complex 3D models such as human organoids. This technology preserves histological context while delivering quantitative molecular data from precisely defined regions of interest (ROIs).
Price | 8800€+ |
Organism | Human |
Product Type | Organoid, Tissue |
Tissue | Refer to our panel for detailed insights |
Disease | – |
Applications
Spatial Biology
Protein Solution
RNA Solution

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GeoMx Digital Spatial Profiler (DSP) efficiently resolves tissue heterogeneity and microenvironment complexities, offering a comprehensive solution for profiling RNA and protein expression across tissue compartments and cell populations. With an automated workflow and seamless integration with standard histology staining, GeoMx DSP delivers an intuitive research experience.




Whether you are studying tissue heterogeneity, validating spatial biomarkers, or exploring drug response in organoids, GeoMx spatial profiling by Lambda Biologics provides actionable, biologically meaningful insights.
Contact us to discuss your project design, sample requirements, and timeline.
GeoMx DSP is a spatial biology platform that enables high-resolution analysis of RNA and protein expression within intact tissue sections while preserving histological context.
GeoMx can be applied to complex tissue samples, including sections prepared using standard histology workflows, enabling spatial profiling across diverse tissue architectures.
GeoMx performs region-of-interest (ROI) – based spatial profiling, generating molecular data from defined tissue regions or cell populations rather than individual single cells.
Yes. GeoMx allows simultaneous spatial profiling of RNA and protein within selected tissue regions, providing complementary molecular insights from the same sample.
GeoMx is widely used for studying tissue heterogeneity, spatial biology, disease mechanisms, and drug development, particularly in research involving complex tissues where spatial context is critical.