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.

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.