Traditional sequencing methods using dissociated samples can miss out on key spatial information. Spatial methods, however, can accelerate the identification of biomarkers by enabling non-destructive expression profiling of RNA and protein from distinct tissue sections and cells with an automated and scalable workflow that integrates with standard histology staining.
This webinar highlights a custom service using technology for spatial transcriptomics to identify biomarkers with clinical benefit in non-small cell lung cancer and analyze the immune microenvironment in bone marrow trephine samples.
Watch this webinar to discover:
- Morphologically guided gene expression profiling
- Pre-designed panels for RNA and protein analysis
- A comprehensive end-to-end service with expertise in IHC, pathology and sequencing
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Using Spatial Transcriptomics Platforms to Assess Immune Profiling & Enable Biomarker Discovery: NanoString® GeoMx® Case Studies
Traditional sequencing methods using dissociated samples can miss out on key spatial information. Spatial methods, however, can accelerate the identification of biomarkers, furthering our understanding of mechanisms in health and disease by retaining the precise location of biological molecules within a tissue.
The latest technology enables non-destructive expression profiling of RNA and protein from distinct tissue sections and cells with an automated and scalable workflow that integrates with standard histology staining.
This webinar highlights a platform that can identify biomarkers with clinical benefit in non-small cell lung cancer and analyze the immune microenvironment in bone marrow trephine samples.
Watch this webinar to discover:
Morphologically guided gene expression profiling
Pre-designed panels for RNA and protein analysis
A comprehensive end-to-end service with expertise in IHC, pathology and sequencing