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首页> 外文期刊>Advanced Functional Materials >Evolution of Bioengineered Lung Models: Recent Advances and Challenges in Tissue Mimicry for Studying the Role of Mechanical Forces in Cell Biology
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Evolution of Bioengineered Lung Models: Recent Advances and Challenges in Tissue Mimicry for Studying the Role of Mechanical Forces in Cell Biology

机译:生物工程化肺模型的演变:组织模仿在研究机械力在细胞生物学中的作用的最新进展和挑战

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摘要

Mechanical stretch under both physiological (breathing) and pathophysiological (ventilator-induced) conditions is known to significantly impact all cellular compartments in the lung, thereby playing a pivotal role in lung growth, regeneration and disease development. In order to evaluate the impact of mechanical forces on the cellular level, in vitro models using lung cells on stretchable membranes have been developed. Only recently have some of these cell-stretching devices become suitable for air-liquid interface cell cultures, which is required to adequately model physiological conditions for the alveolar epithelium. To reach this goal, a multi-functional membrane for cell growth balancing biophysical and mechanical properties is critical to mimic (patho)physiological conditions. In this review, i) the relevance of cyclic mechanical forces in lung biology is elucidated, ii) the physiological range for the key parameters of tissue stretch in the lung is described, and iii) the currently available in vitro cell-stretching devices are discussed. After assessing various polymers, it is concluded that natural-synthetic copolymers are promising candidates for suitable stretchable membranes used in cell-stretching models. This work provides guidance on future developments in biomimetic in vitro models of the lung with the potential to function as a template for other organ models (e.g., skin, vessels).
机译:已知在生理(呼吸)和病理生理(呼吸机诱导)条件下的机械拉伸都会显着影响肺中的所有细胞区室,从而在肺的生长,再生和疾病发展中发挥关键作用。为了评估机械力对细胞水平的影响,已经开发了在可拉伸膜上使用肺细胞的体外模型。直到最近,这些细胞拉伸装置中的一些才变得适合于气-液界面细胞培养,这是充分模拟肺泡上皮的生理条件所必需的。为了达到这个目标,用于细胞生长平衡生物物理和机械特性的多功能膜对于模拟(病理)生理条件至关重要。在这篇综述中,i)阐明了肺生物学中循环机械力的相关性,ii)描述了肺组织拉伸关键参数的生理范围,以及iii)讨论了目前可用的体外细胞拉伸装置。在评估了各种聚合物后,得出的结论是,天然合成共聚物是用于细胞拉伸模型的合适可拉伸膜的有希望的候选者。这项工作为肺仿生体外模型的未来发展提供了指导,该模型有可能用作其他器官模型(例如皮肤,血管)的模板。

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  • 来源
    《Advanced Functional Materials》 |2019年第39期|1903114.1-1903114.20|共20页
  • 作者单位

    German Ctr Lung Res DZL Comprehens Pneumol Ctr Munich D-81377 Munich Germany|Helmholtz Zentrum Munchen Inst Lung Biol & Dis German Res Ctr Environm Hlth D-85764 Neuherberg Germany|Ludwig Maximilians Univ Munich LMU MMRS Fac Med D-80336 Munich Germany;

    Lund Univ Dept Expt Med Sci Lung Bioengn & Regenerat S-22100 Lund Sweden|Lund Univ Stem Cell Ctr S-22184 Lund Sweden|Lund Univ Wallenberg Ctr Mol Med S-22100 Lund Sweden;

    Univ Wurzburg Dept Funct Mat Med & Dent D-97070 Wurzburg Germany|Univ Wurzburg BPI D-97070 Wurzburg Germany;

    German Ctr Lung Res DZL Comprehens Pneumol Ctr Munich D-81377 Munich Germany|Helmholtz Zentrum Munchen Inst Lung Biol & Dis German Res Ctr Environm Hlth D-85764 Neuherberg Germany;

    German Ctr Lung Res DZL Comprehens Pneumol Ctr Munich D-81377 Munich Germany|Hosp Ludwig Maximilians Univ Ctr Comprehens Dev Care Dr von Haunersches Childrens Hosp Univ D-81377 Munich Germany|Helmholtz Zentrum Muenchen Inst Lung Biol & Dis D-81377 Munich Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    air-liquid interface cell culture; alveolar-capillary barrier; in vitro cell-stretching model; porous ultra-thin scaffolds; tunable polymeric membranes;

    机译:气液界面细胞培养肺泡-毛细血管屏障体外细胞拉伸模型多孔超薄支架;可调谐聚合物膜;

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