Exosomes Derived from M2 Microglial Cells Modulated by 1070‐nm Light Improve Cognition in an Alzheimer's Disease Mouse Model

Author:

Chen Chengwei12345ORCID,Bao Yuting12345,Xing Lu12345,Jiang Chengyong6,Guo Yu12345,Tong Shuangmei7,Zhang Jiayi6,Chen Liang12345,Mao Ying12345

Affiliation:

1. Department of Neurosurgery, Huashan Hospital, Shanghai Medical College Fudan University Shanghai 200040 China

2. National Center for Neurological Disorders Shanghai 200040 China

3. Shanghai Key Laboratory of Brain Function Restoration and Neural Regeneration Shanghai 200040 China

4. Neurosurgical Institute of Fudan University Shanghai 200040 China

5. Shanghai Clinical Medical Center of Neurosurgery Shanghai 200040 China

6. State Key Laboratory of Medical Neurobiology, MOE Frontiers Center for Brain Science and Institutes of Brain Science Fudan University Shanghai 200032 China

7. Department of Pharmacy, Huashan Hospital, Shanghai Medical College Fudan University Shanghai 200040 China

Abstract

AbstractNear‐infrared photobiomodulation has been identified as a potential strategy for Alzheimer's disease (AD). However, the mechanisms underlying this therapeutic effect remain poorly characterize. Herein, it is illustrate that 1070‐nm light induces the morphological alteration of microglia from an M1 to M2 phenotype that secretes exosomes, which alleviates the β‐amyloid burden to improve cognitive function by ameliorating neuroinflammation and promoting neuronal dendritic spine plasticity. The results show that 4 J cm−2 1070‐nm light at a 10‐Hz frequency prompts microglia with an M1 inflammatory type to switch to an M2 anti‐inflammatory type. This induces secretion of M2 microglial‐derived exosomes containing miR‐7670‐3p, which targets activating transcription factor 6 (ATF6) during endoplasmic reticulum (ER) stress. Moreover, it is found that miR‐7670‐3p reduces ATF6 expression to further ameliorate ER stress, thus attenuating the inflammatory response and protecting dendritic spine integrity of neurons in the cortex and hippocampus of 5xFAD mice, ultimately leading to improvements in cognitive function. This study highlights the critical role of exosomes derive from 1070‐nm light‐modulated microglia in treating AD mice, which may provide a theoretical basis for the treatment of AD with the use of near‐infrared photobiomodulation.

Publisher

Wiley

Subject

General Physics and Astronomy,General Engineering,Biochemistry, Genetics and Molecular Biology (miscellaneous),General Materials Science,General Chemical Engineering,Medicine (miscellaneous)

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