Docosahexaenoic Acid Alleviates Brain Damage by Promoting Mitophagy in Mice with Ischaemic Stroke

Author:

Sun Eryi1ORCID,Zhang Jing2,Deng Yan3ORCID,Wang Jun1ORCID,Wu Qi1ORCID,Chen Wei1,Ma Xiaodong1,Chen Siyuan1,Xiang Xin4ORCID,Chen Yujie5ORCID,Wu Tairong6ORCID,Yang Yang25ORCID,Chen Bo1ORCID

Affiliation:

1. Department of Neurosurgery, The Affiliated People’s Hospital of Jiangsu University, Zhenjiang 212002, China

2. Department of Nursing, The 904th Hospital of PLA, Medical School of Anhui Medical University, Wuxi 214044, China

3. West China Hospital of Sichuan University, Chengdu 610041, China

4. Department of Neurosurgery, The Affiliated Hospital of Guizhou Medical University, Guiyang 550004, China

5. Department of Neurosurgery, Southwest Hospital, Third Military Medical University (Army Medical University), Chongqing 400038, China

6. Department of Traditional Chinese Medicine, The Affiliated People’s Hospital of Jiangsu University, Zhenjiang 212002, China

Abstract

Mitophagy, the selective removal of damaged mitochondria through autophagy, is crucial for mitochondrial turnover and quality control. Docosahexaenoic acid (DHA), an essential omega-3 fatty acid, protects mitochondria in various diseases. This study aimed to investigate the neuroprotective role of DHA in ischaemic stroke models in vitro and in vivo and its involvement in mitophagy and mitochondrial dysfunction. A mouse model of ischaemic stroke was established through middle cerebral artery occlusion (MCAO). To simulate ischaemic stroke in vitro, PC12 cells were subjected to oxygen–glucose deprivation (OGD). Immunofluorescence analysis, western blotting (WB), electron microscopy (EM), functional behavioural tests, and Seahorse assay were used for analysis. DHA treatment significantly alleviated the brain infarction volume, neuronal apoptosis, and behavioural dysfunction in mice with ischaemic stroke. In addition, DHA enhanced mitophagy by significantly increasing the number of autophagosomes and LC3-positive mitochondria in neurons. The Seahorse assay revealed that DHA increased glutamate and succinate metabolism in neurons after ischaemic stroke. JC-1 and MitoSox staining, and evaluation of ATP levels indicated that DHA-induced mitophagy alleviated reactive oxygen species (ROS) accumulation and mitochondrial injury. Mechanistically, DHA improved mitochondrial dynamics by increasing the expression of dynamin-related protein 1 (Drp1), LC3, and the mitophagy clearance protein Pink1/Parkin. Mdivi-1, a specific mitophagy inhibitor, abrogated the neuroprotective effects of DHA, indicating that DHA protected neurons by enhancing mitophagy. Therefore, DHA can protect against neuronal apoptosis after stroke by clearing the damaged mitochondria through Pink1/Parkin-mediated mitophagy and by alleviating mitochondrial dysfunction.

Funder

Young Elite Scientists Sponsorship Program of Jiangsu Province

Publisher

Hindawi Limited

Subject

Cell Biology,Aging,General Medicine,Biochemistry

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