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Review
. 2023 Feb;60(2):512-523.
doi: 10.1007/s12035-022-03100-1. Epub 2022 Nov 1.

TREM2 and Microglia Contribute to the Synaptic Plasticity: from Physiology to Pathology

Affiliations
Review

TREM2 and Microglia Contribute to the Synaptic Plasticity: from Physiology to Pathology

Chao-Ji Yu et al. Mol Neurobiol. 2023 Feb.

Abstract

Synapses are bridges for information transmission in the central nervous system (CNS), and synaptic plasticity is fundamental for the normal function of synapses, contributing substantially to learning and memory. Numerous studies have proven that microglia can participate in the occurrence and progression of neurodegenerative diseases (NDDs), such as Alzheimer's disease (AD), by regulating synaptic plasticity. In this review, we summarize the main characteristics of synapses and synaptic plasticity under physiological and pathological conditions. We elaborate the origin and development of microglia and the two well-known microglial signaling pathways that regulate synaptic plasticity. We also highlight the unique role of triggering receptor expressed on myeloid cells 2 (TREM2) in microglia-mediated regulation of synaptic plasticity and its relationship with AD. Finally, we propose four possible ways in which TREM2 is involved in regulating synaptic plasticity. This review will help researchers understand how NDDs develop from the perspective of synaptic plasticity.

Keywords: Alzheimer’s disease; Microglia; Neurodegenerative diseases; Synaptic plasticity; TREM2.

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References

    1. Biederer T, Kaeser PS, Blanpied TA (2017) Transcellular nanoalignment of synaptic function. Neuron 96:680–696
    1. Batool S, Raza H, Zaidi J, Riaz S, Hasan S, Syed NI (2019) Synapse formation: from cellular and molecular mechanisms to neurodevelopmental and neurodegenerative disorders. J Neurophysiol 121:1381–1397
    1. Mattson MP, Liu D (2002) Energetics and oxidative stress in synaptic plasticity and neurodegenerative disorders. Neuromolecular Med 2:215–231
    1. Barron JC, Hurley EP, Parsons MP (2021) Huntingtin and the synapse. Front Cell Neurosci 15:689332
    1. Nguyen M, Wong YC, Ysselstein D, Severino A, Krainc D (2019) Synaptic, mitochondrial, and lysosomal dysfunction in Parkinson’s disease. Trends Neurosci 42:140–149

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