Comprehensive Profiling of Plasma Exosomes Using Data Independent Acquisitions, New Tools for Aging Cohort Studies
Patel, S. K.; Bruderer, R.; Basisty, N.; Bons, J.; Desprez, P.-Y.; Neri, F.; Reiter, L.; Campisi, J.; Schilling, B.
Show abstract
Aging is a complex biological process associated with progressive loss of physiological function and susceptibility to several diseases, such as cancer and neurodegeneration. Exosomes are involved in many cellular signaling pathways, and their cargo may serve as promising disease or aging biomarkers. These membrane-bound extracellular vesicles facilitate the transport of intracellular contents to proximal and distal cells in the body. Here, we investigated two omics approaches for exosome analysis. To overcome the challenges of plasma exosome contamination with abundant soluble plasma proteins, we developed a high-throughput method to isolate highly purified exosomes from human plasma by sequential size-exclusion chromatography and ultrafiltration. First, we used data-dependent acquisitions from offline high-pH reversed-phase fractions of exosome lysate to generate a deep spectral library comprising [~]2,300 exosome proteins. Second, in a pilot aging study, we used comprehensive data-independent acquisitions to compare plasma exosomes from young (20-26 yrs) and old (60-66 yrs) individuals. We quantified 1,318 exosome proteins, and levels of 144 proteins were significantly different in young and old plasma groups (Q<0.05 and >1.5-fold change). We also analyzed exosome miRNA cargo and detected 331 miRNAs. Levels of several were significantly different in young and old individuals. In addition, 88 and 17 miRNAs were unique to old and young individuals, respectively. Plasma exosome biomarkers have great potential for translational studies investigating biomarkers of aging and age-related diseases and to monitor therapeutic aging interventions.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Inserting Pre-Analytical Chromatographic Priming Runs Significantly Improves Targeted Pathway Proteomics With Sample Multiplexing 95%
- An inflection point in high-throughput proteomics with Orbitrap Astral: analysis of biofluids, cells, and tissues 95%
- Multi-platforms approach for plasma proteomics: complementarity of Olink PEA technology to mass spectrometry-based protein profiling 95%
Similar papers in this journal
Similar papers in this journal
- One-Pot Exosome Proteomics Enabled by a Photocleavable Surfactant 96%
- Assessment of a 60-biomarker health surveillance panel (HSP) on whole blood from remote sampling devices by targeted LC/MRM-MS and discovery DIA-MS analysis 95%
- In-cell processing enables rapid and in-depth proteome analysis of low-input Caenorhabditis elegans 95%
Similar papers in this journal
- Comprehensive palmitoyl-proteomic analysis identifies distinct protein signatures for large and small cancer-derived extracellular vesicles 94%
- Interferometric nanoparticle tracking analysis enables label-free discrimination of extracellular vesicles from large lipoproteins 93%
- Influence of species and processing parameters on recovery and content of brain tissue-derived extracellular vesicles 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.