Abstract The spatial organisation of cellular protein expression profiles within tissue determines cellular function and is key to understanding disease pathology. To define molecular phenotypes in the spatial context of tissue, there is a need for unbiased, quantitative technology capable of mapping proteomes within tissue structures. Here, we present a workflow for spatially-resolved, quantitative proteomics of tissue that generates maps of protein abundance across tissue slices derived from a human atypical teratoid-rhabdoid tumour at three spatial resolutions, the highest being 40 µm, to reveal distinct abundance patterns of thousands of proteins. We employ spatially-aware algorithms that do not require prior knowledge of the fine tissu...
The human cell is complex, with countless processes ongoing in parallel in specialized compartments,...
Characterizing the molecular components of the basic unit of life; the cell, is crucial for a comple...
Spatial proteomic profiling of tissue sections provides in situ molecular analysis of proteins and p...
Biological tissues contain diverse cell subpopulations crucial to their function, and proteins are t...
INTRODUCTIONResolving the molecular details of proteome variation in the different tissues and organ...
Spatial proteomics combining microscopy-based cell phenotyping with ultrasensitive mass-spectrometry...
Protein subcellular localization is tightly controlled and intimately linked to protein function in ...
The systems-wide analysis of biomolecules in time and space is key to our understanding of cellular ...
Deep Visual Proteomics combines machine learning, automated image analysis and single-cell proteomic...
Mass spectrometry (MS)-based proteomics has become a powerful technology to quantify the entire comp...
Methods for profiling RNA and protein expression in a spatially resolved manner are rapidly evolving...
The interpatient variability of tumor proteomes has been investigated on a large scale but many tumo...
Spatial molecular profiling of complex tissues is essential to investigate cellular function in phys...
Spatially targeted proteomics analyzes the proteome of specific cell types and functional regions wi...
A new workflow for protein-based tumor heterogeneity probing in tissues is here presented. Tumor het...
The human cell is complex, with countless processes ongoing in parallel in specialized compartments,...
Characterizing the molecular components of the basic unit of life; the cell, is crucial for a comple...
Spatial proteomic profiling of tissue sections provides in situ molecular analysis of proteins and p...
Biological tissues contain diverse cell subpopulations crucial to their function, and proteins are t...
INTRODUCTIONResolving the molecular details of proteome variation in the different tissues and organ...
Spatial proteomics combining microscopy-based cell phenotyping with ultrasensitive mass-spectrometry...
Protein subcellular localization is tightly controlled and intimately linked to protein function in ...
The systems-wide analysis of biomolecules in time and space is key to our understanding of cellular ...
Deep Visual Proteomics combines machine learning, automated image analysis and single-cell proteomic...
Mass spectrometry (MS)-based proteomics has become a powerful technology to quantify the entire comp...
Methods for profiling RNA and protein expression in a spatially resolved manner are rapidly evolving...
The interpatient variability of tumor proteomes has been investigated on a large scale but many tumo...
Spatial molecular profiling of complex tissues is essential to investigate cellular function in phys...
Spatially targeted proteomics analyzes the proteome of specific cell types and functional regions wi...
A new workflow for protein-based tumor heterogeneity probing in tissues is here presented. Tumor het...
The human cell is complex, with countless processes ongoing in parallel in specialized compartments,...
Characterizing the molecular components of the basic unit of life; the cell, is crucial for a comple...
Spatial proteomic profiling of tissue sections provides in situ molecular analysis of proteins and p...