TECHNICAL SERVICE
Comprehensive analysis of the protein composition of exosomes is conducted usinghigh-precision mass spectrometry technology, and bioinformatics analysis is employedtoreveal disease-related protein markers and signaling pathways. This study enables preciseidentification of key proteins involved in intercellular communication mediated by exosomes, providing molecular evidence for the development of personalized medicine and novel 16 diagnostic reagents.
Schematic diagram illustrating the principle of mass spectrometry identification
Presentation of proteomics analysis results: (Figure A shows Gene Ontology (GO) Cellular Component (CC) enrichment analysis, Figure B displays a Venn diagramof the overlapbetween identified proteins and the Vesiclepedia database, and Figure C presents a heatmapof differentially expressed proteins between the disease group and the control group.)
Schematic diagram illustrating the principle of mass spectrometry identification
Presentation of proteomics analysis results: (Figure A shows Gene Ontology (GO) Cellular Component (CC) enrichment analysis, Figure B displays a Venn diagramof the overlapbetween identified proteins and the Vesiclepedia database, and Figure C presents a heatmapof differentially expressed proteins between the disease group and the control group.)