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Pyrocystis noctiluca represents an excellent bioassay for shear forces induced in ground-based microgravity simulators (clinostat and random positioning machine)

机译:夜蛾(Pyrocystis noctiluca)代表了一种出色的生物测定方法,可用于在基于地面的微重力模拟器(倾斜仪和随机定位仪)中感应的剪切力

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摘要

Ground-based facilities, such as clinostats and random positioning machines aiming at simulating microgravity conditions, are tools to prepare space experiments and identify gravity-related signaling pathways. A prerequisite is that the facilities are operated in an appropriate manner and potentially induced non-gravitational effects, such as shearing forces, have to be taken into account.\udDinoflagellates, here P. noctiluca, as fast and sensitive reporter system for shear stress and hydrodynamic gradients, were exposed on a clinostat (constant rotation around one axis, 60 rpm) or in a random positioning machine, that means rotating around two axes, whose velocity and direction were chosen at random. Deformation of the cell membrane of P. noctiluca due to shear stress results in a detectable bioluminescence emission. Our results show that the amount of mechanical stress is higher on an random positioning machine than during constant clinorotation, as revealed by the differences in photon counts. We conclude that one axis clinorotation induced negligible non-gravitational effects in the form of shear forces in contrast to random operation modes tested. For the first time, we clearly visualized the device-dependent occurrence of shear forces by means of a bioassay, which have to be considered during the definition of an appropriate simulation approach and to avoid misinterpretation of results.
机译:旨在模拟微重力条件的地面设施,例如斜压调节器和随机定位机,是准备进行空间实验并确定与重力有关的信号通路的工具。前提条件是设施必须以适当的方式操作,并且必须考虑到潜在的非重力作用,例如剪切力。流体动力学梯度在倾斜仪上(围绕一个轴恒定旋转,转速为60 rpm)或在随机定位机上曝光,这意味着围绕两个轴旋转,其速度和方向是随机选择的。夜蛾的细胞膜由于剪切应力而变形导致可检测到的生物发光发射。我们的结果表明,如光子计数的差异所揭示的那样,在随机定位的机器上,机械应力的量要比在恒定的倾斜旋转过程中要高。我们得出的结论是,与测试的随机操作模式相比,单轴倾斜旋转以剪切力的形式引起的可忽略不计的非重力效应。第一次,我们通过生物测定法清楚地看到了与设备有关的剪切力的出现,在定义适当的仿真方法时必须考虑到这一点,以避免对结果的误解。

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