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Cytostretch, an Organ-on-Chip Platform

机译:Cytostretch,片上器官平台

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摘要

Organ-on-Chips (OOCs) are micro-fabricated devices which are used to culture cells in order to mimic functional units of human organs. The devices are designed to simulate the physiological environment of tissues in vivo. Cells in some types of OOCs can be stimulated in situ by electrical and/or mechanical actuators. These actuations can mimic physiological conditions in real tissue and may include fluid or air flow, or cyclic stretch and strain as they occur in the lung and heart. These conditions similarly affect cultured cells and may influence their ability to respond appropriately to physiological or pathological stimuli. To date, most focus has been on devices specifically designed to culture just one functional unit of a specific organ: lung alveoli, kidney nephrons or blood vessels, for example. In contrast, the modular Cytostretch membrane platform described here allows OOCs to be customized to different OOC applications. The platform utilizes silicon-based micro-fabrication techniques that allow low-cost, high-volume manufacturing. We describe the platform concept and its modules developed to date. Membrane variants include membranes with (i) through-membrane pores that allow biological signaling molecules to pass between two different tissue compartments; (ii) a stretchable micro-electrode array for electrical monitoring and stimulation; (iii) micro-patterning to promote cell alignment; and (iv) strain gauges to measure changes in substrate stress. This paper presents the fabrication and the proof of functionality for each module of the Cytostretch membrane. The assessment of each additional module demonstrate that a wide range of OOCs can be achieved.
机译:片上器官(OOC)是一种微型设备,用于培养细胞以模仿人体器官的功能单元。该设备旨在模拟体内组织的生理环境。某些类型的OOC中的细胞可以通过电和/或机械致动器原位刺激。这些致动可以模拟真实组织中的生理状况,并且可能包括流体或空气流动,或者发生在肺和心脏中的周期性拉伸和应变。这些条件类似地影响培养的细胞,并可能影响它们对生理或病理刺激做出适当反应的能力。迄今为止,大多数注意力都集中在专门设计用于仅培养特定器官的一个功能单元的设备上:例如肺泡,肾单位或血管。相反,此处描述的模块化Cytostretch膜平台允许将OOC定制为不同的OOC应用。该平台利用基于硅的微制造技术,可实现低成本,大批量制造。我们描述了迄今为止开发的平台概念及其模块。膜变体包括具有(i)膜通孔的膜,该膜允许生物信号分子在两个不同的组织隔室之间通过; (ii)用于电监测和刺激的可拉伸微电极阵列; (iii)微图案化以促进细胞排列; (iv)应变仪以测量基板应力的变化。本文介绍了Cytostretch膜每个模块的制造和功能证明。对每个其他模块的评估表明,可以实现各种各样的OOC。

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