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Cell cultivation under different gravitational loads using a novel random positioning incubator

机译:使用新型随机定位培养箱在不同重力负载下进行细胞培养

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摘要

Important in biotechnology is the establishment of cell culture methods that reflect the in vivo situation accurately. One approach for reaching this goal is through 3D cell cultivation that mimics tissue or organ structures and functions. We present here a newly designed and constructed random positioning incubator (RPI) that enables 3D cell culture in simulated microgravity (0 g). In addition to growing cells in a weightlessness-like environment, our RPI enables long-duration cell cultivation under various gravitational loads, ranging from close to 0 g to almost 1 g. This allows the study of the mechanotransductional process of cells involved in the conversion of physical forces to an appropriate biochemical response. Gravity is a type of physical force with profound developmental implications in cellular systems as it modulates the resulting signaling cascades as a consequence of mechanical loading. The experiments presented here were conducted on mouse skeletal myoblasts and human lymphocytes, two types of cells that have been shown in the past to be particularly sensitive to changes in gravity. Our novel RPI will expand the horizon at which mechanobiological experiments are conducted. The scientific data gathered may not only improve the sustainment of human life in space, but also lead to the design of alternative countermeasures against diseases related to impaired mechanosensation and downstream signaling processes on earth.
机译:在生物技术中重要的是建立能够准确反映体内情况的细胞培养方法。实现此目标的一种方法是通过模仿组织或器官结构和功能的3D细胞培养。我们在这里介绍一种新设计和建造的随机定位培养箱(RPI),它可以在模拟微重力(0 g)中进行3D细胞培养。除了在类似失重的环境中生长细胞外,我们的RPI还能在各种重力载荷下(从接近0 g到几乎1 g)进行长时间的细胞培养。这允许研究与物理力转换成适当的生化反应有关的细胞的机械转导过程。重力是一种物理力,在细胞系统中具有深远的发展意义,因为它通过机械负载调节所产生的信号级联。这里介绍的实验是在小鼠骨骼成肌细胞和人类淋巴细胞上进行的,这两种细胞在过去已显示出对重力变化特别敏感。我们新颖的RPI将扩大进行机械生物学实验的视野。收集的科学数据不仅可以改善人类在太空中的生命维持能力,而且还可以设计出针对与机械感测受损和地球下游信号传递过程有关的疾病的替代对策。

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