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Effects of large gradient high magnetic field (LG-HMF) on the long-term culture of aquatic organisms: Planarians example

机译:大梯度高磁场(LG-HMF)对水生生物长期培养的影响:以涡虫为例

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Large gradient high magnetic field (LG-HMF) is a powerful tool to study the effects of altered gravity on organisms. In our study, a platform for the long-term culture of aquatic organisms was designed based on a special superconducting magnet with an LG-HMF, which can provide three apparent gravity levels (mu g, 1g, and 2g), along with a control condition on the ground. Planarians, Dugesia japonica, were head-amputated and cultured for 5 days in a platform for head reconstruction. After planarian head regeneration, all samples were taken out from the superconducting magnet for a behavioral test under geomagnetic field and normal gravity conditions. To analyze differences among the four groups, four aspects of the planarians were considered, including head regeneration rate, phototaxis response, locomotor velocity, and righting behavior. Data showed that there was no significant difference in the planarian head regeneration rate under simulated altered gravity. According to statistical analysis of the behavioral test, all of the groups had normal functioning of the phototaxis response, while the planarians that underwent head reconstruction under the microgravity environment had significantly slower locomotor velocity and spent more time in righting behavior. Furthermore, histological staining and immunohistochemistry results helped us reveal that the locomotor system of planarians was affected by the simulated microgravity environment. We further demonstrated that the circular muscle of the planarians was weakened (hematoxylin and eosin staining), and the epithelial cilia of the planarians were reduced (anti-acetylated tubulin staining) under the simulated microgravity environment. Bioelectromagnetics. 2018;39:428-440. (c) 2018 Wiley Periodicals, Inc.
机译:大梯度高磁场(LG-HMF)是研究重力变化对生物体影响的有力工具。在我们的研究中,设计了一个水生生物长期培养平台,该平台基于具有LG-HMF的特殊超导磁体,可以提供三个表观重力水平(μg,1g和2g),以及地面控制条件。涡虫 Dugesia japonica 被截肢并在头部重建平台中培养 5 天。涡虫头再生后,从超导磁体中取出所有样品,在地磁场和正常重力条件下进行行为测试。为了分析四组之间的差异,考虑了涡虫的头部再生率、趋光性反应、运动速度和矫正行为等4个方面。数据显示,在模拟改变重力作用下,涡虫头部再生速率无显著差异。根据行为检验的统计分析,各组的趋光性反应功能正常,而微重力环境下头部重建的涡虫运动速度明显较慢,矫正行为的时间较长。此外,组织学染色和免疫组化结果帮助我们揭示了涡虫的运动系统受到模拟微重力环境的影响。我们进一步证明,在模拟的微重力环境下,涡虫的圆形肌肉减弱(苏木精和伊红染色),涡虫的上皮纤毛减少(抗乙酰化微管蛋白染色)。生物电磁学。2018;39:428-440.(c) 2018 Wiley Periodicals, Inc.

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