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长期中等强度静磁场暴露对成年雌性小鼠的影响

The Effect of Long-Term Moderate Static Magnetic Field Exposure on Adult Female Mice.

作者信息

Yang Xingxing, Yu Biao, Song Chao, Feng Chuanlin, Zhang Jing, Wang Xinyu, Cheng Guofeng, Yang Rui, Wang Wei, Zhu Yong

机构信息

School of Life Sciences, Hefei Normal University, Hefei 230601, China.

High Magnetic Field Laboratory, Hefei Institutes of Physical Science, Chinese Academy of Sciences, Hefei 230031, China.

出版信息

Biology (Basel). 2022 Oct 28;11(11):1585. doi: 10.3390/biology11111585.

Abstract

Because of the high cost and safety of ultra-high magnetic resonance imaging (MRI), its application has certain limitations. Whereas 0.5−3 T MRI has been widely applied in hospitals, static magnetic fields (SMFs) have been shown to improve mice mental health and have anti-tumor potentials. Here, we compared the effects of the upward and downward 150 mT SMF groups with the sham group on C57BL/6J adult female mice. Locomotor and exploratory activity were also measured by behavioral tests, including the open field and elevated plus test. Additionally, physiology, pathology indicators and gut microbiota were examined. We found that 150 mT SMFs long-term exposure enhanced locomotive and exploratory activity of mice, especially the downward 150 mT SMF. Compared with the downward 150 mT SMF group, the movement speed and distance in the center area of the sham group were increased by 65.99% (p < 0.0001) and 68.58% (p = 0.0038), respectively. Moreover, compared to the sham group, downward 150 mT SMF increased the number of entrances to the center area by 67.0% (p = 0.0082) and time in the center area by 77.12% (p = 0.0054). Additionally, we observed that upward 150 mT SMF improved the number of follicles (~2.5 times, p = 0.0325) and uterine glands through increasing the total antioxidant capacity and reducing lipid peroxidation level in mice. Gut microbiome analysis showed that 150 mT SMFs long-term exposure improved the microbiota abundance (Clostridium, Bifidobacterium, Ralstonia and Yaniella) in the genus level, which may affect metabolism, anxiety and behavior in adult female mice. Our results demonstrated that 150 mT SMFs long-term exposure not only had good biosafety, but also improved athletic performance, emotion and the function of ovarian, uterine and gut microbiota abundance in adult female mice, which unraveled the potential of moderate long-term SMF exposure in clinical applications.

摘要

由于超高场磁共振成像(MRI)成本高昂且存在安全性问题,其应用具有一定局限性。而0.5 - 3T的MRI已在医院中广泛应用,静磁场(SMF)已被证明可改善小鼠心理健康并具有抗肿瘤潜力。在此,我们比较了向上和向下150mT静磁场组与假手术组对C57BL/6J成年雌性小鼠的影响。还通过行为测试,包括旷场试验和高架十字迷宫试验,测量了运动和探索活动。此外,还检测了生理、病理指标以及肠道微生物群。我们发现,150mT静磁场长期暴露增强了小鼠的运动和探索活动,尤其是向下的150mT静磁场。与向下150mT静磁场组相比,假手术组在中心区域的运动速度和距离分别提高了65.99%(p <

0.0001)和68.58%(p = 0.0038)。此外,与假手术组相比,向下150mT静磁场使进入中心区域的次数增加了67.0%(p = 0.0082),在中心区域的停留时间增加了77.12%(p = 0.0054)。此外,我们观察到向上150mT静磁场通过提高小鼠的总抗氧化能力和降低脂质过氧化水平,改善了卵泡数量(约2.5倍,p = 0.0325)和子宫腺。肠道微生物组分析表明,150mT静磁场长期暴露在属水平上改善了微生物群丰度(梭菌属、双歧杆菌属、罗尔斯通氏菌属和亚尼氏菌属),这可能会影响成年雌性小鼠的代谢、焦虑和行为。我们的结果表明,150mT静磁场长期暴露不仅具有良好的生物安全性,还改善了成年雌性小鼠的运动表现、情绪以及卵巢、子宫和肠道微生物群丰度的功能,这揭示了适度长期静磁场暴露在临床应用中的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f1e7/9687991/e37d13260c9a/biology-11-01585-g001.jpg

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