Exploring the human brain with automated high-plex immunofluorescence: focus on Multiple Sclerosis disease

Exploring the human brain with automated high-plex immunofluorescence: focus on Multiple Sclerosis disease

Decoding Neuro-Immune Interactions: Spatial Multiomics Analysis of Mouse Brain via same-section RNA and Protein co-detection

Decoding Neuro-Immune Interactions: Spatial Multiomics Analysis of Mouse Brain via same-section RNA and Protein co-detection

Spatial resolution of Alzheimer’s disease using automated high-plex immunofluorescence

Spatial resolution of Alzheimer’s disease using automated high-plex immunofluorescence

Morpho-molecular features of Epithelial Mesenchymal Transition associate with clinical outcome in patients with rectal cancer

Multiomic mapping of the brain: same-section, fully-automated spatial RNA and protein detection on mouse frozen tissues

Multiomic mapping of the brain: same-section, fully-automated spatial RNA and protein detection on mouse frozen tissues

Evaluation of IDH-1, EGF-R, IGF-1R and Ki-67 biomarkers in glioblastoma using the Lunaphore COMET™ platform

Evaluation of IDH-1, EGF-R, IGF-1R and Ki-67 biomarkers in glioblastoma using the Lunaphore COMET™ platform

In vivo interaction screening reveals liver-derived constraints to metastasis

Integrated RNA and protein profiling in the same tissue section: deciphering tumor microenvironment dynamics via automated spatial multiomics analysis

Integrated RNA and protein profiling in the same tissue section: deciphering tumor microenvironment dynamics via automated spatial multiomics analysis

Comprehensive analysis of tumoral functional markers with an automated signal amplification method for multiplex immunofluorescence

Comprehensive analysis of tumoral functional markers with an automated signal amplification method for multiplex immunofluorescence

Uncovering the spatial dynamics of the tumor microenvironment: integrated RNA and protein profiling on the same section through automated spatial multiomics analysis

Uncovering the spatial dynamics of the tumor microenvironment: integrated RNA and protein profiling on the same section through automated spatial multiomics analysis