Clearance and transport of amyloid β by peripheral monocytes correlate with Alzheimer's disease progression.
Xin HuangChris FowlerYihan LiQiao-Xin LiJiaqi SunYijun PanLiang JinKeyla A PerezCeline DuboisYen Y LimCandace DrysdaleRebecca L RumbleHolly R ChinneryChristopher C RoweRalph N MartinsPaul MaruffJames D DoeckeYong LinAbdel Ali BelaidiKevin J BarnhamColin L MastersBen J GuPublished in: Nature communications (2024)
Impaired clearance of amyloid β (Aβ) in late-onset Alzheimer's disease (AD) affects disease progression. The role of peripheral monocytes in Aβ clearance from the central nervous system (CNS) is unclear. We use a flow cytometry assay to identify Aβ-binding monocytes in blood, validated by confocal microscopy, Western blotting, and mass spectrometry. Flow cytometry immunophenotyping and correlation with AD biomarkers are studied in 150 participants from the AIBL study. We also examine monocytes in human cerebrospinal fluid (CSF) and their migration in an APP/PS1 mouse model. The assay reveals macrophage-like Aβ-binding monocytes with high phagocytic potential in both the periphery and CNS. We find lower surface Aβ levels in mild cognitive impairment (MCI) and AD-dementia patients compared to cognitively unimpaired individuals. Monocyte infiltration from blood to CSF and migration from CNS to peripheral lymph nodes and blood are observed. Here we show that Aβ-binding monocytes may play a role in CNS Aβ clearance, suggesting their potential as a biomarker for AD diagnosis and monitoring.
Keyphrases
- mild cognitive impairment
- flow cytometry
- cognitive decline
- dendritic cells
- peripheral blood
- cerebrospinal fluid
- late onset
- blood brain barrier
- mass spectrometry
- mouse model
- lymph node
- end stage renal disease
- endothelial cells
- chronic kidney disease
- early onset
- newly diagnosed
- high throughput
- ejection fraction
- early stage
- immune response
- adipose tissue
- chemotherapy induced
- high resolution
- human health
- south africa
- peritoneal dialysis
- risk assessment
- transcription factor
- induced pluripotent stem cells
- gas chromatography
- single cell
- neoadjuvant chemotherapy
- tandem mass spectrometry