Lipidomics and mass spectrometry imaging unveil alterations in mice hippocampus lipid composition exposed to hypoxia

Lipids are components of cytomembranes that are involved in various biochemical processes. High-altitude hypoxic environments not only affect the body’s energy metabolism, but these environments can also cause abnormal lipid metabolism involved in the hypoxia-induced cognitive impairment. Thus, comp...

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Veröffentlicht in:Journal of lipid research 2024-07, Vol.65 (7), p.100575, Article 100575
Hauptverfasser: Gao, Jiayue, Guo, Zhiying, Zhao, Ming, Cheng, Xiang, Jiang, Xiufang, Liu, Yikun, Zhang, Wenpeng, Yue, Xiangpei, Fei, Xuechao, Jiang, Yaqun, Chen, Lu, Zhang, Shaojie, Zhao, Tong, Zhu, Lingling
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Sprache:eng
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Zusammenfassung:Lipids are components of cytomembranes that are involved in various biochemical processes. High-altitude hypoxic environments not only affect the body’s energy metabolism, but these environments can also cause abnormal lipid metabolism involved in the hypoxia-induced cognitive impairment. Thus, comprehensive lipidomic profiling of the brain tissue is an essential step toward understanding the mechanism of cognitive impairment induced by hypoxic exposure. In the present study, mice showed reduced new-object recognition and spatial memory when exposed to hypobaric hypoxia for 1 day. Histomorphological staining revealed significant morphological and structural damage to the hippocampal tissue, along with prolonged exposure to hypobaric hypoxia. Dynamic lipidomics of the mouse hippocampus showed a significant shift in both the type and distribution of phospholipids, as verified by spatial lipid mapping. Collectively, a diverse and dynamic lipid composition in mice hippocampus was uncovered, which deepens our understanding of biochemical changes during sustained hypoxic exposure and could provide new insights into the cognitive decline induced by high-altitude hypoxia exposure.
ISSN:0022-2275
1539-7262
1539-7262
DOI:10.1016/j.jlr.2024.100575