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首页> 外文期刊>Frontiers in Bioengineering and Biotechnology >In vitro Models and On-Chip Systems: Biomaterial Interaction Studies With Tissues Generated Using Lung Epithelial and Liver Metabolic Cell Lines
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In vitro Models and On-Chip Systems: Biomaterial Interaction Studies With Tissues Generated Using Lung Epithelial and Liver Metabolic Cell Lines

机译:体外模型和芯片系统:与肺上皮和肝代谢细胞系产生的组织的生物材料相互作用研究

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In vitro models are very important in medicine and biology, because they provide an insight into cells’ and microorganisms’ behaviour. Since these cells and microorganisms are isolated from their natural environment, these models may not completely or precisely predict the effects on the entire organism. Improvement in this area is secured by organ-on-a-chip development. The organ-on-a-chip assumes cells cultured in a microfluidic chip. The chip simulates bioactivities, mechanics and physiological behaviour of organs or organ systems, generating artificial organs in that way. There are several cell lines used so far for each tested artificial organ. For lungs, mostly used cell lines are 16HBE, A549, Calu-3, NHBE, while mostly used cell lines for liver are HepG2, Hep 3B, TPH1, etc. In this paper, state of the art for lung and liver organ-on-a-chip is presented, together with the established in vitro testing on lung and liver cell lines, with the emphasis on Calu-3 (for lung cell lines) and Hep-G2 (for liver cell lines). Primary focus in this review is to discuss different researches on the topics of lung and liver cell line models, approaches in determining fate and transport, cell partitioning, cell growth and division, as well as cell dynamics, meaning toxicity and effects. The review is finalised with current research gaps and problems, stating potential future developments in the field.
机译:体外模型在医学和生物学中非常重要,因为它们可以洞悉细胞和微生物的行为。由于这些细胞和微生物是从其自然环境中分离出来的,因此这些模型可能无法完全或精确地预测对整个生物体的影响。芯片上器官的开发确保了这一领域的改进。芯片上的器官假定细胞是在微流控芯片中培养的。该芯片可模拟器官或器官系统的生物活性,力学和生理行为,从而以这种方式生成人造器官。到目前为止,每种被测试的人造器官都使用了几种细胞系。对于肺,最常用的细胞系是16HBE,A549,Calu-3,NHBE,而最常用的肝细胞系是HepG2,Hep 3B,TPH1等。在本文中,关于肺和肝器官的最新技术介绍了一种芯片以及在肺和肝细胞系中建立的体外测试,重点是Calu-3(对于肺细胞系)和Hep-G2(对于肝细胞系)。这篇综述的主要重点是讨论关于肺和肝细胞系模型,确定命运和转运,细胞分配,细胞生长和分裂的方法以及细胞动力学,毒性和作用等主题的不同研究。审查工作以当前的研究差距和问题完成,说明该领域的潜在未来发展。

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