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The Role of Microfluidics for Organ on Chip Simulations

机译:微流体在器官芯片模拟中的作用

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摘要

A multichannel three-dimensional chip of a microfluidic cell culture which enables the simulation of organs is called an “organ on a chip” (OC). With the integration of many other technologies, OCs have been mimicking organs, substituting animal models, and diminishing the time and cost of experiments which is better than the preceding conventional in vitro models, which make them imperative tools for finding functional properties, pathological states, and developmental studies of organs. In this review, recent progress regarding microfluidic devices and their applications in cell cultures is discussed to explain the advantages and limitations of these systems. Microfluidics is not a solution but only an approach to create a controlled environment, however, other supporting technologies are needed, depending upon what is intended to be achieved. Microfluidic platforms can be integrated with additional technologies to enhance the organ on chip simulations. Besides, new directions and areas are mentioned for interested researchers in this field, and future challenges regarding the simulation of OCs are also discussed, which will make microfluidics more accurate and beneficial for biological applications.
机译:能够模拟器官的微流细胞培养的多通道三维芯片称为“芯片上的器官”(OC)。随着许多其他技术的集成,OC可以模仿器官,替代动物模型并减少实验的时间和成本,这比以前的常规体外模型要好,这使它们成为寻找功能特性,病理状态,和器官的发育研究。在这篇综述中,讨论了有关微流体装置及其在细胞培养中的应用的最新进展,以解释这些系统的优点和局限性。微流体技术不是解决方案,而仅仅是创建受控环境的方法,但是,根据要实现的目标,还需要其他支持技术。微流体平台可以与其他技术集成,以增强器官上芯片的仿真。此外,本领域感兴趣的研究人员还提到了新的方向和领域,并讨论了关于OCs模拟的未来挑战,这将使微流控技术更加准确,对生物学应用有益。

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