Related Experiment Video
Updated: Aug 10, 2025

Enrichment of Astrocyte-Derived Extracellular Vesicles from Human Plasma
Published on: August 3, 2022
Plasma extracellular vesicles reveal early molecular differences in amyloid positive patients with early-onset mild
Amanda Cano1,2, Ester Esteban-de-Antonio3, Mireia Bernuz4
1Ace Alzheimer Center Barcelona - International University of Catalunya (UIC), C/Marquès de Sentmenat, 57, 08029, Barcelona, Spain. acano@fundacioace.org.
Abstract:
In the clinical course of Alzheimer's disease (AD) development, the dementia phase is commonly preceded by a prodromal AD phase, which is mainly characterized by reaching the highest levels of Aβ and p-tau-mediated neuronal injury and a mild cognitive impairment (MCI) clinical status. Because of that, most AD cases are diagnosed when neuronal damage is already established and irreversible. Therefore, a differential diagnosis of MCI causes in these prodromal stages is one of the greatest challenges for clinicians. Blood biomarkers are emerging as desirable tools for pre-screening purposes, but the current results are still being analyzed and much more data is needed to be implemented in clinical practice. Because of that, plasma extracellular vesicles (pEVs) are gaining popularity as a new source of biomarkers for the early stages of AD development. To identify an exosome proteomics signature linked to prodromal AD, we performed a cross-sectional study in a cohort of early-onset MCI (EOMCI) patients in which 184 biomarkers were measured in pEVs, cerebrospinal fluid (CSF), and plasma samples using multiplex PEA technology of Olink© proteomics. The obtained results showed that proteins measured in pEVs from EOMCI patients with established amyloidosis correlated with CSF p-tau181 levels, brain ventricle volume changes, brain hyperintensities, and MMSE scores. In addition, the correlations of pEVs proteins with different parameters distinguished between EOMCI Aβ( +) and Aβ(-) patients, whereas the CSF or plasma proteome did not. In conclusion, our findings suggest that pEVs may be able to provide information regarding the initial amyloidotic changes of AD. Circulating exosomes may acquire a pathological protein signature of AD before raw plasma, becoming potential biomarkers for identifying subjects at the earliest stages of AD development.
Insights
Plasma extracellular vesicles (pEVs) show promise as early Alzheimer's disease (AD) biomarkers. Proteomics in pEVs from early MCI patients correlated with AD pathology, distinguishing early disease stages better than CSF or plasma alone.
Area of Science:
- Neuroscience
- Biochemistry
- Biomarker Discovery
Background:
- Alzheimer's disease (AD) diagnosis often occurs late, after irreversible neuronal damage.
- Prodromal AD, marked by mild cognitive impairment (MCI), presents diagnostic challenges.
- Current blood biomarkers for early AD detection require further validation.
Purpose of the Study:
- To identify an exosome proteomics signature associated with prodromal AD.
- To evaluate plasma extracellular vesicles (pEVs) as potential early AD biomarkers.
- To differentiate early-onset MCI (EOMCI) patients based on amyloid status using pEVs.
Main Methods:
- Cross-sectional study of 184 biomarkers in pEVs, CSF, and plasma from EOMCI patients.
- Utilized Olink® proteomics multiplex PEA technology.
- Correlated pEV proteomics with CSF p-tau181, brain imaging, and cognitive scores.
Main Results:
- pEV proteins in EOMCI patients with amyloidosis correlated with CSF p-tau181, brain changes, and cognitive scores.
- pEV protein correlations differentiated amyloid-positive from amyloid-negative EOMCI patients.
- Plasma and CSF proteomes did not show similar discriminatory power.
Conclusions:
- Plasma extracellular vesicles (pEVs) may reflect early amyloid changes in AD.
- Circulating exosomes could capture AD pathology before plasma, serving as early diagnostic biomarkers.
- pEVs offer a promising avenue for identifying individuals in the earliest stages of AD development.
More Related Videos
07:55Harnessing the Power of MicroRNA Cargoes in Small Extracellular Vesicles Released from Fresh-Frozen Human Brain Sections
Published on: November 8, 2024
09:31Visualization of Amyloid β Deposits in the Human Brain with Matrix-assisted Laser Desorption/Ionization Imaging Mass Spectrometry
Published on: March 7, 2019