七氟醚影响老年狨猴和小鼠认知功能的机制:上调脑小胶质细胞中FKBP5的表达。

IF 3 Q2 MEDICINE, RESEARCH & EXPERIMENTAL
Lei Zhang, Jiao Zhu, Zhengjie Miao, Haoli Mao, Hong Jiang
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引用次数: 0

摘要

吸入麻醉剂可能触发下丘脑-垂体-肾上腺轴。FK-506结合蛋白(FKBP5)是下丘脑-垂体-肾上腺轴的关键调节因子,与术后认知功能障碍有关。然而,吸入麻醉剂如何影响FKBP5在大脑中的表达和功能尚不清楚。我们采用单核RNA测序方法描绘了七氟醚麻醉后老年狨猴和小鼠大脑的海马转录组谱。单核RNA测序结果显示,长期暴露于七氟醚(6小时)可显著增加老年狨猴和小鼠海马中FKBP5的表达,尤其是在小胶质细胞中。Western blot实验也验证了上述结果。Barnes迷宫实验显示,与杂合对照小鼠相比,小胶质细胞特异性FKBP5条件敲除小鼠在七氟醚/手术后表现出改善的神经认知功能。对小胶质细胞特异性FKBP5条件敲除小鼠和杂合小鼠在七氟醚/手术后的大脑进行转录组测序分析,进一步发现FKBP5主要与炎症信号通路相关。因此,这些研究结果表明,长期暴露于七氟醚会增加老年狨猴和小鼠海马中FKBP5的表达,从而影响炎症信号通路,导致术后认知功能障碍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanisms by which sevoflurane affects cognitive function in aged marmosets and mice: up-regulation of FKBP5 expression in brain microglia.

JOURNAL/mgres/04.03/01612956-990000000-00062/figure1/v/2025-04-22T045710Z/r/image-tiff Inhalation anesthetics may trigger the hypothalamic-pituitary-adrenal axis. FK-506 binding protein (FKBP5) is a critical regulator of the hypothalamic- pituitary-adrenal axis and has been implicated in postoperative cognitive dysfunction. However, how inhalation anesthetics affect the expression and function of FKBP5 in the brain is unclear. We employed single-nucleus RNA sequencing to delineate the hippocampal transcriptomic profiles of the brains of aged marmosets and mice after sevoflurane anesthesia. The results of single-nucleus RNA sequencing revealed that long-term exposure (6 hours) to sevoflurane significantly increased FKBP5 expression in the hippocampus of aged marmosets and mice, especially in microglia. Western blot assay also verified the above results. The Barnes maze test showed that, compared with heterozygous control mice, microglia-specific FKBP5 conditional knockout mice exhibited improved neurocognitive function after sevoflurane/surgery. Transcriptome sequencing analysis was performed on the brains of microglia-specific FKBP5 conditional knockout mice and heterozygous mice after sevoflurane/surgery and further revealed that FKBP5 was related mainly to inflammatory signaling pathways. Therefore, these findings indicate that long-term exposure to sevoflurane increases FKBP5 expression in the hippocampus of aged marmosets and mice, which thereby affects inflammatory signaling pathways and leads to postoperative cognitive dysfunction.

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来源期刊
Medical Gas Research
Medical Gas Research MEDICINE, RESEARCH & EXPERIMENTAL-
CiteScore
5.10
自引率
13.80%
发文量
35
期刊介绍: Medical Gas Research is an open access journal which publishes basic, translational, and clinical research focusing on the neurobiology as well as multidisciplinary aspects of medical gas research and their applications to related disorders. The journal covers all areas of medical gas research, but also has several special sections. Authors can submit directly to these sections, whose peer-review process is overseen by our distinguished Section Editors: Inert gases - Edited by Xuejun Sun and Mark Coburn, Gasotransmitters - Edited by Atsunori Nakao and John Calvert, Oxygen and diving medicine - Edited by Daniel Rossignol and Ke Jian Liu, Anesthetic gases - Edited by Richard Applegate and Zhongcong Xie, Medical gas in other fields of biology - Edited by John Zhang. Medical gas is a large family including oxygen, hydrogen, carbon monoxide, carbon dioxide, nitrogen, xenon, hydrogen sulfide, nitrous oxide, carbon disulfide, argon, helium and other noble gases. These medical gases are used in multiple fields of clinical practice and basic science research including anesthesiology, hyperbaric oxygen medicine, diving medicine, internal medicine, emergency medicine, surgery, and many basic sciences disciplines such as physiology, pharmacology, biochemistry, microbiology and neurosciences. Due to the unique nature of medical gas practice, Medical Gas Research will serve as an information platform for educational and technological advances in the field of medical gas.
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