α7 nicotinic acetylcholine receptor agonist improved brain injury and impaired glucose metabolism in a rat model of ischemic stroke

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作者
Ya-Yu Wang
Shih-Yi Lin
Cheng-Yi Chang
Chih-Cheng Wu
Wen-Ying Chen
Wei-Chi Huang
Su-Lan Liao
Wen-Yi Wang
Chun-Jung Chen
机构
[1] Taichung Veterans General Hospital,Department of Family Medicine
[2] Taichung Veterans General Hospital,Center for Geriatrics and Gerontology
[3] National Yang Ming Chiao Tung University,Institute of Clinical Medicine
[4] Feng Yuan Hospital,Department of Surgery
[5] National Chung Hsing University,Department of Veterinary Medicine
[6] Taichung Veterans General Hospital,Department of Anesthesiology
[7] Taichung Veterans General Hospital,Department of Medical Research
[8] Hung Kuang University,Department of Nursing
[9] China Medical University,Department of Medical Laboratory Science and Biotechnology
来源
Metabolic Brain Disease | 2023年 / 38卷
关键词
Hyperglycemia; Inflammation; α7 nicotinic acetylcholine receptor; Skeletal muscle; Stroke;
D O I
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学科分类号
摘要
Vagus nerve stimulation through the action of acetylcholine can modulate inflammatory responses and metabolism. α7 Nicotinic Acetylcholine Receptor (α7nAChR) is a key component in the biological functions of acetylcholine. To further explore the health benefits of vagus nerve stimulation, this study aimed to investigate whether α7nAChR agonists offer beneficial effects against poststroke inflammatory and metabolic changes and to identify the underlying mechanisms in a rat model of stroke established by permanent cerebral ischemia. We found evidence showing that pretreatment with α7nAChR agonist, GTS-21, improved poststroke brain infarction size, impaired motor coordination, brain apoptotic caspase 3 activation, dysregulated glucose metabolism, and glutathione reduction. In ischemic cortical tissues and gastrocnemius muscles with GTS-21 pretreatment, macrophages/microglia M1 polarization-associated Tumor Necrosis Factor-α (TNF-α) mRNA, Cluster of Differentiation 68 (CD68) protein, and Inducible Nitric Oxide Synthase (iNOS) protein expression were reduced, while expression of anti-inflammatory cytokine IL-4 mRNA, and levels of M2 polarization-associated CD163 mRNA and protein were increased. In the gastrocnemius muscles, stroke rats showed a reduction in both glutathione content and Akt Serine 473 phosphorylation, as well as an elevation in Insulin Receptor Substrate-1 Serine 307 phosphorylation and Dynamin-Related Protein 1 Serine 616 phosphorylation. GTS-21 reversed poststroke changes in the gastrocnemius muscles. Overall, our findings, provide further evidence supporting the neuroprotective benefits of α7nAChR agonists, and indicate that they may potentially exert anti-inflammatory and metabolic effects peripherally in the skeletal muscle in an acute ischemic stroke animal model.
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页码:1249 / 1259
页数:10
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