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胰岛素通过调节海马葡萄糖代谢减轻 LPS 诱导的认知障碍和铁死亡。

Insulin attenuates LPS-induced cognitive impairment and ferroptosis through regulation of glucose metabolism in hippocampus.

机构信息

Department of Anesthesiology, The First Medical Center of Chinese PLA General Hospital, Beijing, China.

Department of Anesthesiology, Beijing Tongren Hospital, Capital Medical University, Beijing, China.

出版信息

CNS Neurosci Ther. 2024 Jul;30(7):e14887. doi: 10.1111/cns.14887.

Abstract

AIMS

Neuroinflammation is a recognized contributor to cognitive disorders like Alzheimer's disease, with ferroptosis emerging as a novel mechanism underlying cognitive dysfunction associated with neuroinflammation. Insulin, pivotal in the central nervous system, holds promise for cognitive function enhancement. This study aimed to establish a cognitive impairment model through intracerebroventricular injection of lipopolysaccharide (LPS) and explore the impact of intracerebroventricular insulin injection on cognitive function in mice.

METHODS

We employed diverse experimental techniques, including animal behavior testing, molecular assays, targeted metabolomics, nuclear medicine, and electron microscopy, to assess neurodegenerative changes, brain insulin resistance (IR), glucose uptake and metabolism, and ferroptosis. The model of cognitive impairment was induced via intracerebroventricular injection of LPS, followed by intracerebroventricular administration of insulin to evaluate its effects.

RESULTS

Insulin treatment effectively mitigated LPS-induced cognitive decline and safeguarded against neuronal degeneration. Furthermore, insulin alleviated LPS-induced insulin resistance, enhanced glucose uptake in the hippocampus, and promoted the Pentose Phosphate Pathway (PPP) and nicotinamide adenine dinucleotide phosphate (NADPH) production. Additionally, insulin activated the glutathione (GSH)-glutathione peroxidase 4 (GPX4) pathway, reducing lipid peroxidation, and mitochondrial damage characteristic of LPS-induced ferroptosis in the hippocampus.

CONCLUSION

Our findings underscore the therapeutic potential of insulin in alleviating LPS-induced cognitive impairment and ferroptosis by modulating glucose metabolism. This study offers a promising avenue for future interventions targeting cognitive decline.

摘要

目的

神经炎症是阿尔茨海默病等认知障碍的公认诱因,铁死亡作为一种与神经炎症相关认知功能障碍的新机制正在出现。胰岛素在中枢神经系统中起着至关重要的作用,有望增强认知功能。本研究旨在通过侧脑室注射脂多糖(LPS)建立认知障碍模型,并探讨侧脑室注射胰岛素对小鼠认知功能的影响。

方法

我们采用了多种实验技术,包括动物行为测试、分子分析、靶向代谢组学、核医学和电子显微镜,来评估神经退行性变化、脑胰岛素抵抗(IR)、葡萄糖摄取和代谢以及铁死亡。通过侧脑室注射 LPS 诱导认知障碍模型,然后进行侧脑室胰岛素注射,评估其效果。

结果

胰岛素治疗有效缓解了 LPS 诱导的认知下降,保护了神经元的变性。此外,胰岛素减轻了 LPS 诱导的胰岛素抵抗,增加了海马体的葡萄糖摄取,并促进了戊糖磷酸途径(PPP)和烟酰胺腺嘌呤二核苷酸磷酸(NADPH)的产生。此外,胰岛素激活了谷胱甘肽(GSH)-谷胱甘肽过氧化物酶 4(GPX4)通路,减少了 LPS 诱导的铁死亡中出现的脂质过氧化和线粒体损伤。

结论

我们的研究结果强调了胰岛素通过调节葡萄糖代谢缓解 LPS 诱导的认知障碍和铁死亡的治疗潜力。这项研究为未来针对认知能力下降的干预措施提供了一个有前途的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bee2/11284243/04ef78d0d216/CNS-30-e14887-g002.jpg

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