Sakai Yasuyuki, Shinohara Marie
Department of Chemical System Engineering, Graduate School of Engineering, The University of Tokyo.
International Research Center on Integrative Biomedical Systems (CIBiS), Institute of Industrial Science, The University of Tokyo.
Nihon Yakurigaku Zasshi. 2018;151(2):56-61. doi: 10.1254/fpj.151.56.
Animal-free and mechanism-based understanding of human body responses is the ultimate goal of alternative to animal experiments. To achieve this goal, integration of advanced cell-based assays using iPS/ES cell technologies with various numerical methods are required. In this review, from the standpoint of tissue engineering, we focused first on the enhancement of physiological relevance of tissue culture models by overcoming the problem between 3D cellular organization and oxygen/nutrient supply. Second, we summarized the concept and actual systems of microfluidic-based body/organ on-a-chip systems, also called as microphysiological system, MPS, particularly for liver on-a-chip systems. Finally, remaining issues were discussed to realize better physiological relevance in vitro.
基于无动物实验和机制的人体反应理解是动物实验替代方法的最终目标。为实现这一目标,需要将使用诱导多能干细胞/胚胎干细胞技术的先进细胞检测方法与各种数值方法相结合。在本综述中,从组织工程的角度出发,我们首先关注通过克服三维细胞组织与氧气/营养供应之间的问题来提高组织培养模型的生理相关性。其次,我们总结了基于微流控的人体/器官芯片系统(也称为微生理系统,MPS)的概念和实际系统,特别是肝脏芯片系统。最后,讨论了在体外实现更好生理相关性的遗留问题。