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Flexible cell culture device made of membrane-type silicone composites for simulating human body

机译:由膜状有机硅复合材料制成的用于模拟人体的柔性细胞培养装置

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Human tissues are exposed to various mechanical stimuli, and the types and magnitudes of the mechanical stimuli acting on cells and tissues are important factors in controlling the development pathway of cells and tissues. Therefore, giving repetitive mechanical stimuli to culturing cells may provide beneficial effects, such as differentiating target cells or accelerating cell development, by controlling the type of stimulus and its magnitude. Electroactive polymers (EAPs) respond to electrical voltage with significant changes in shape or size and can transfer appropriate (1-20%) mechanical stimuli to cells. In this study, we designed a new type of flexible cell culture device made of silicone (composite) film, and evaluated the actuating strain of the driving portion of the cell culture device according to the pre-stretching condition and the clay nanoparticle (i.e., organically modified montmorillonite, or OMMT) content. The effect of OMMT particles on the electro-mechanical performance of the silicone (composite) film actuators was investigated by adding 0-5% OMMT particles to silicone elastomer using the solvent-assisted mixing method. The effects of these two major variables on actuation strain were quantitatively investigated, and the most appropriate conditions for the driving part of a cell culture device were determined. (C) 2015 Elsevier Ltd. All rights reserved.
机译:人体组织受到各种机械刺激,作用在细胞和组织上的机械刺激的类型和大小是控制细胞和组织发育途径的重要因素。因此,通过控制刺激的类型及其大小,对细胞进行重复的机械刺激可能会产生有益的效果,例如区分靶细胞或加速细胞发育。电活性聚合物(EAP)对电压的响应具有明显的形状或大小变化,并且可以将适当的(1-20%)机械刺激传递给细胞。在这项研究中,我们设计了一种新型的有机硅(复合)薄膜柔性细胞培养装置,并根据预拉伸条件和粘土纳米颗粒(即,有机改性的蒙脱石(OMMT)含量。通过使用溶剂辅助混合法向有机硅弹性体中添加0-5%OMMT颗粒,研究了OMMT颗粒对有机硅(复合)薄膜驱动器的机电性能的影响。定量研究了这两个主要变量对驱动应变的影响,并确定了细胞培养装置驱动部分的最合适条件。 (C)2015 Elsevier Ltd.保留所有权利。

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