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生成一种接近天然的体外系统,用于研究肺细胞-细胞外基质相互作用。

Generation of a Close-to-Native In Vitro System to Study Lung Cells-Extracellular Matrix Crosstalk.

机构信息

1 Department of Histology and Embryology, Faculty of Medicine, Masaryk University , Brno, Czech Republic .

2 FNUSA-ICRC-International Clinical Research Center of St. Anne University Hospital Brno , Brno, Czech Republic .

出版信息

Tissue Eng Part C Methods. 2018 Jan;24(1):1-13. doi: 10.1089/ten.tec.2017.0283. Epub 2017 Oct 23.

Abstract

Extracellular matrix (ECM) is an essential component of the tissue microenvironment, actively shaping cellular behavior. In vitro culture systems are often poor in ECM constituents, thus not allowing for naturally occurring cell-ECM interactions. This study reports on a straightforward and efficient method for the generation of ECM scaffolds from lung tissue and its subsequent in vitro application using primary lung cells. Mouse lung tissue was subjected to decellularization with 0.2% sodium dodecyl sulfate, hypotonic solutions, and DNase. Resultant ECM scaffolds were devoid of cells and DNA, whereas lung ECM architecture of alveolar region and blood and airway networks were preserved. Scaffolds were predominantly composed of core ECM and ECM-associated proteins such as collagens I-IV, nephronectin, heparan sulfate proteoglycan core protein, and lysyl oxidase homolog 1, among others. When homogenized and applied as coating substrate, ECM supported the attachment of lung fibroblasts (LFs) in a dose-dependent manner. After ECM characterization and biocompatibility tests, a novel in vitro platform for three-dimensional (3D) matrix repopulation that permits live imaging of cell-ECM interactions was established. Using this system, LFs colonized the ECM scaffolds, displaying a close-to-native morphology in intimate interaction with the ECM fibers, and showed nuclear translocation of the mechanosensor yes-associated protein (YAP), when compared with cells cultured in two dimensions. In conclusion, we developed a 3D-like culture system, by combining an efficient decellularization method with a live-imaging culture platform, to replicate in vitro native lung cell-ECM crosstalk. This is a valuable system that can be easily applied to other organs for ECM-related drug screening, disease modeling, and basic mechanistic studies.

摘要

细胞外基质(ECM)是组织微环境的重要组成部分,积极塑造细胞行为。体外培养系统通常缺乏 ECM 成分,因此无法实现自然发生的细胞-ECM 相互作用。本研究报告了一种从肺组织生成 ECM 支架的简单高效方法,以及随后使用原代肺细胞进行体外应用。用 0.2%十二烷基硫酸钠、低渗溶液和 DNA 酶对鼠肺组织进行脱细胞处理。得到的 ECM 支架不含细胞和 DNA,但保留了肺泡区域和血液及气道网络的肺 ECM 结构。支架主要由核心 ECM 和 ECM 相关蛋白组成,如胶原 I-IV、纤连蛋白、硫酸乙酰肝素蛋白聚糖核心蛋白和赖氨酰氧化酶同源物 1 等。当支架被均质化并作为涂层底物应用时,ECM 以剂量依赖的方式支持肺成纤维细胞(LFs)的附着。在对 ECM 进行特性描述和生物相容性测试后,建立了一种允许对细胞-ECM 相互作用进行实时成像的新型 3D 基质再填充体外平台。使用该系统,LFs 定植在 ECM 支架上,与 ECM 纤维紧密相互作用,呈现出接近天然的形态,并且与在二维培养的细胞相比,核内机械感受器 yes 相关蛋白(YAP)发生易位。总之,我们开发了一种 3 维样培养系统,将高效脱细胞方法与实时成像培养平台相结合,以在体外复制天然肺细胞-ECM 串扰。这是一个有价值的系统,可轻松应用于其他器官进行 ECM 相关药物筛选、疾病建模和基础机制研究。

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