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Application of chemical reaction engineering principles to 'body-on-a-chip' systems

机译:化学反应工程原理在“芯片体”系统中的应用

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摘要

The combination of cell culture models with microscale technology has fostered emergence of in vitro cell-based microphysiological models, also known as organ-on-a-chip systems. Body-on-a-chip (BOC) systems, which are multiorgan systems on a chip to mimic physiological relations, enable recapitulation of organ-organ interactions and potentially whole-body response to drugs, as well as serve as models of diseases. Chemical reaction engineering principles can be applied to understanding complex reactions inside the cell or human body, which can be treated as a multireactor system. These systems use physiologically based pharmacokinetic models to guide the development of microscale systems of the body where organs or tissues are represented by living cells or tissues, and integrated into BOC systems. Here, we provide a brief overview on the concept of chemical reaction engineering and how its principles can be applied to understanding and predicting the behavior of BOC systems. (c) 2018 American Institute of Chemical Engineers
机译:细胞培养模型与微观技术的组合促进了基于体外细胞的微生物学模型的出现,也称为芯片系统。芯片(BOC)系统(BOC)系统,它们是用于模拟生理关系的芯片的多功能系统,使器官器官相互作用和可能的全身对药物的反应,以及作为疾病的模型。化学反应工程原理可以应用于了解细胞或人体内的复杂反应,可以将其作为多反射体系统。这些系统使用基于生理学上的药代动力学模型来指导体尺度的体育系统的发育,其中器官或组织由活细胞或组织表示,并集成到BOC系统中。在这里,我们简要概述了化学反应工程的概念以及其原理如何应用于理解和预测BOC系统的行为。 (c)2018美国化学工程研究所

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