Elsevier

Neuroscience

Volume 405, 1 May 2019, Pages 148-157
Neuroscience

Review
Cell-to-cell Communication by Extracellular Vesicles: Focus on Microglia

https://doi.org/10.1016/j.neuroscience.2018.04.003Get rights and content
Under a Creative Commons license
open access

Highlights

  • Extracellular vesicles are important mediators of cell-to-cell communication.

  • Microglia serve as source and recipient of extracellular vesicles in the brain.

  • Microglia-related extracellular vesicles play critical roles in neurodegeneration.

Abstract

Extracellular vesicles, including exosomes and microvesicles, are small, nano-to-micrometer vesicles that are released from cells. While initially observed in immune cells and reticulocytes as vesicles meant to remove archaic proteins, now they have been observed in almost all cell types of multicellular organisms. Growing evidence indicates that extracellular vesicles, containing lipids, proteins and RNAs, represent an efficient way to transfer functional cargoes from one cell to another. In the central nervous system, the extensive cross-talk ongoing between neurons and glia, including microglia, the immune cells of the brain, takes advantage of secreted vesicles, which mediate intercellular communication over long range distance. Recent literature supports a critical role for extracellular vesicles in mediating complex and coordinated communication among neurons, astrocytes and microglia, both in the healthy and in the diseased brain. In this review, we focus on the biogenesis and function of microglia-related extracellular vesicles and focus on their putative role in Alzheimer’s disease pathology.

Abbreviations

AEA
N-arachidonoylethanolamine
APP
amyloid precursor protein
BBB
brain–blood barrier
CB1
cannabinoid receptors
CNS
central nervous system
CPECs
choroid plexus epithelial cells
CSF
cerebrospinal fluid
ESCRT
cendosomal sorting complex required for transport
EVs
extracellular vesicles
GBM-EVs
Glioblastoma-derived EVs
HIV
human immunodeficiency virus
IDE
insulin degrading enzyme
ILVs
intraluminal vesicles
LPS
lipopolysaccharide
MCI
mild cognitive impairment
MT1-MMP
Membrane type 1-matrix metalloproteinase
MVs
microvesicles
NO
nitric oxide
PS
phosphatidylserine
PWL
paw withdrawal latency
PWT
paw withdrawal threshold
ROS
reactive oxygen species
TBI
traumatic brain injury

Key words

microglia
extracellular vesicles
microvesicles
exosomes
neurons
Alzheimer’s disease

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