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OctoShaker: A versatile robotic biomechanical agitator for cellular and organoid research

机译:OctoShaker:用于细胞和类器官研究的多功能机器人生物力学搅拌器

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摘要

Mechanical forces have increasingly been recognized as a key regulator in the fate of cellular development and functionality. Different mechanical transduction methods, such as substrate stiffness and magnetic bead vibration, have been experimented with to understand the interaction between the biophysical cues and cellular outcome. In the exploration and utilization of the intrinsic cellular mechanism, bio-shakers, traditionally invented for stirring liquid, have garnered more interest as a tool to provide precise mechanical stimuli to aid in this study. Nonetheless, despite the usefulness of current bio-shaking technology, each type of shaker often offers a single mode of motion, insufficient for generating complex force dynamics needed to resemble the actual physical condition that occurs inside living organisms. In this study, we present OctoShaker, a robotic instrument capable of creating a multitude of motions that could be sequenced or programmed to mimic sophisticated hemodynamics in vivo. We demonstrated the programmed motion of circular convection and investigated its influence on micro-particle distribution in 96-well culture microplates. Biological samples, including HeLa cells and organoids, were tested, and unique resultant patterns were observed. We anticipate the open-source dissemination of OctoShaker in diverse biological applications, encompassing biomechanical studies for cellular and organoid research, as well as other disciplines that demand dynamic mechanical force generation.
机译:机械力越来越被认为是细胞发育和功能命运的关键调节因素。已经试验了不同的机械转导方法,例如基质刚度和磁珠振动,以了解生物物理线索与细胞结果之间的相互作用。在探索和利用内在细胞机制的过程中,传统上为搅拌液体而发明的生物摇床作为提供精确机械刺激以帮助本研究的工具引起了更多的兴趣。尽管如此,尽管当前的生物振荡技术很有用,但每种类型的振动台通常都提供单一的运动模式,不足以产生类似于生物体内发生的实际物理条件所需的复杂力动力学。在这项研究中,我们介绍了 OctoShaker,这是一种能够产生多种运动的机器人仪器,可以对其进行测序或编程以模拟体内复杂的血液动力学。我们演示了圆对流的程序化运动,并研究了它对 96 孔培养微孔板中微粒分布的影响。测试了生物样品,包括 HeLa 细胞和类器官,并观察到独特的结果模式。我们预计 OctoShaker 将在各种生物应用中开源传播,包括用于细胞和类器官研究的生物力学研究,以及需要动态机械力产生的其他学科。

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