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首页> 外文期刊>Experimental Biology and Medicine: Journal of the Society for Experimental Biology and Medicine >Modeling the lung: Design and development of tissue engineered macro- and micro-physiologic lung models for research use
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Modeling the lung: Design and development of tissue engineered macro- and micro-physiologic lung models for research use

机译:肺部建模:用于研究的组织工程化宏观和微观生理肺部模型的设计和开发

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摘要

Respiratory tract specific cell populations, or tissue engineered in vitro grown human lung, have the potential to be used as research tools to mimic physiology, toxicology, pathology, as well as infectious diseases responses of cells or tissues. Studies related to respiratory tract pathogenesis or drug toxicity testing in the past made use of basic systems where single cell populations were exposed to test agents followed by evaluations of simple cellular responses. Although these simple single-cell-type systems provided good basic information related to cellular responses, much more can be learned from cells grown in fabricated microenvironments which mimic in vivo conditions in specialized microfabricated chambers or by human tissue engineered three-dimensional (3D) models which allow for more natural interactions between cells. Recent advances in microengineering technology, microfluidics, and tissue engineering have provided a new approach to the development of 2D and 3D cell culture models which enable production of more robust human in vitro respiratory tract models. Complex models containing multiple cell phenotypes also provide a more reasonable approximation of what occurs in vivo without the confounding elements in the dynamic in vivo environment. The goal of engineering good 3D human models is the formation of physiologically functional respiratory tissue surrogates which can be used as pathogenesis models or in the case of 2D screening systems for drug therapy evaluation as well as human toxicity testing. We hope that this manuscript will serve as a guide for development of future respiratory tract model systems as well as a review of conventional models.
机译:呼吸道特异的细胞群体,或在体外生长的人肺中工程改造的组织,有可能被用作模仿细胞或组织的生理学,毒理学,病理学以及传染病反应的研究工具。过去有关呼吸道发病机理或药物毒性测试的研究利用了基本系统,在该系统中,单细胞群体暴露于测试剂,然后评估了简单的细胞反应。尽管这些简单的单细胞类型系统提供了与细胞应答有关的良好基本信息,但可以从在模拟的微环境中生长的人工微环境中生长的细胞中了解到更多信息,或者可以通过人体组织工程三维(3D)模型来模拟体内条件使细胞之间更自然的相互作用。微工程技术,微流控技术和组织工程学的最新进展为2D和3D细胞培养模型的开发提供了一种新方法,从而可以生产更强大的人体体外呼吸道模型。包含多种细胞表型的复杂模型还提供了在体内动态情况下更合理的近似值,而没有混杂因素。设计良好的3D人体模型的目的是形成生理功能的呼吸组织替代物,该替代物可以用作发病机理模型,或者在2D筛查系统中用于药物治疗评估以及人体毒性测试。我们希望该手稿可以作为未来呼吸道模型系统开发的指南,并可以作为常规模型的回顾。

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