Literature DB >> 27071933

Cells and Culture Systems Used to Model the Small Airway Epithelium.

Rudra Bhowmick1, Heather Gappa-Fahlenkamp2.   

Abstract

The pulmonary epithelium is divided into upper, lower, and alveolar (or small) airway epithelia and acts as the mechanical and immunological barrier between the external environment and the underlying submucosa. Of these, the small airway epithelium is the principal area of gas exchange and has high immunological activity, making it a major area of cell biology, immunology, and pharmaceutical research. As animal models do not faithfully represent the human pulmonary system and ex vivo human lung samples have reliability and availability issues, cell lines, and primary cells are widely used as small airway epithelial models. In vitro, these cells are mostly cultured as monolayers (2-dimensional cultures), either media submerged or at air-liquid interface. However, these 2-dimensional cultures lack a three dimension-a scaffolding extracellular matrix, which establishes the intercellular network in the in vivo airway epithelium. Therefore, 3-dimensional cell culture is currently a major area of development, where cells are cultured in a matrix or are cultured in a manner that they develop ECM-like scaffolds between them, thus mimicking the in vivo phenotype more faithfully. This review focuses on the commonly used small airway epithelial cells, their 2-dimensional and 3-dimensional culture techniques, and their comparative phenotype when cultured under these systems.

Entities:  

Keywords:  2-Dimensional culture system; 3-Dimensional culture system; Small airway epithelium

Mesh:

Substances:

Year:  2016        PMID: 27071933     DOI: 10.1007/s00408-016-9875-2

Source DB:  PubMed          Journal:  Lung        ISSN: 0341-2040            Impact factor:   2.584


  80 in total

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4.  Transmigration and phagocytosis of macrophages in an airway infection model using four-dimensional techniques.

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Authors:  Tetsuya Homma; Atsushi Kato; Bharat Bhushan; James E Norton; Lydia A Suh; Roderick G Carter; Dave S Gupta; Robert P Schleimer
Journal:  Am J Respir Cell Mol Biol       Date:  2016-01       Impact factor: 6.914

6.  Small airway epithelial cells exposure to printer-emitted engineered nanoparticles induces cellular effects on human microvascular endothelial cells in an alveolar-capillary co-culture model.

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Journal:  Nanotoxicology       Date:  2014-11-11       Impact factor: 5.913

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8.  Transcriptome Profiles of Human Lung Epithelial Cells A549 Interacting with Aspergillus fumigatus by RNA-Seq.

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Journal:  Tissue Eng Part A       Date:  2018-06-29       Impact factor: 3.845

2.  Biomimetics of the pulmonary environment in vitro: A microfluidics perspective.

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Journal:  Curr Microbiol       Date:  2022-01-04       Impact factor: 2.188

4.  [Establishment of a culture system for human nasal mucosa organoids with controllable differentiation].

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5.  A Model of Human Small Airway on a Chip for Studies of Subacute Effects of Inhalation Toxicants.

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Review 6.  Advanced human-relevant in vitro pulmonary platforms for respiratory therapeutics.

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8.  Medium throughput breathing human primary cell alveolus-on-chip model.

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9.  A co-culture model of the bovine alveolus.

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Review 10.  Human Pulmonary 3D Models For Translational Research.

Authors:  Katja Zscheppang; Johanna Berg; Sarah Hedtrich; Leonie Verheyen; Darcy E Wagner; Norbert Suttorp; Stefan Hippenstiel; Andreas C Hocke
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