Nossa Roberta, Costa Joana, Cacopardo Ludovica, Ahluwalia Arti
University of Pisa, Pisa, Italy.
J Tissue Eng. 2021 Apr 28;12:20417314211008696. doi: 10.1177/20417314211008696. eCollection 2021 Jan-Dec.
The aim of this review is to provide a systematic design guideline to users, particularly engineers interested in developing and deploying lung models, and biologists seeking to identify a suitable platform for conducting in vitro experiments involving pulmonary cells or tissues. We first discuss the state of the art on lung in vitro models, describing the most simplistic and traditional ones. Then, we analyze in further detail the more complex dynamic engineered systems that either provide mechanical cues, or allow for more predictive exposure studies, or in some cases even both. This is followed by a dedicated section on microchips of the lung. Lastly, we present a critical discussion of the different characteristics of each type of system and the criteria which may help researchers select the most appropriate technology according to their specific requirements. Readers are encouraged to refer to the tables accompanying the different sections where comprehensive and quantitative information on the operating parameters and performance of the different systems reported in the literature is provided.
本综述的目的是为用户提供系统的设计指南,特别是对开发和部署肺部模型感兴趣的工程师,以及寻求为涉及肺细胞或组织的体外实验确定合适平台的生物学家。我们首先讨论肺部体外模型的现状,描述最简化和传统的模型。然后,我们更详细地分析更复杂的动态工程系统,这些系统要么提供机械线索,要么允许进行更具预测性的暴露研究,或者在某些情况下甚至两者兼备。接下来是关于肺部微芯片的专门章节。最后,我们对每种系统的不同特性以及可能帮助研究人员根据其特定要求选择最合适技术的标准进行了批判性讨论。鼓励读者参考不同章节附带的表格,其中提供了文献中报道的不同系统的操作参数和性能的全面定量信息。