Literature DB >> 31233786

Air-liquid interface culture changes surface properties of A549 cells.

Kristin Öhlinger1, Tatjana Kolesnik1, Claudia Meindl1, Birgit Gallé1, Markus Absenger-Novak1, Dagmar Kolb-Lenz1, Eleonore Fröhlich2.   

Abstract

A549 cells are common models in the assessment of respiratory cytotoxicity. To provide physiologically more representative exposure conditions and increase the differentiation state, respiratory cells, for instance Calu-3 bronchial epithelial cells, are cultured at an air-liquid interface (ALI). There are indications that A549 cells also change their phenotype upon culture in ALI. The influence of culture in two variations of transwell cultures compared to conventional culture in plastic wells on the phenotype of A549 cells was studied. Cells were characterized by morphology, proliferation and transepithelial electrical resistance, whole genome transcription analysis, Western blot and immunocytochemical detection of pro-surfactant proteins. Furthermore, lipid staining, surface morphology, cell elasticity, surface tension and reaction to quartz particles were performed. Relatively small changes were noted in the expression of differentiation markers for alveolar cells but A549 cells cultured in ALI showed marked differences in lipid staining and surface morphology, surface tension and cytotoxicity of quartz particles. Data show that changes in physiological reactions of A549 cells in ALI culture were rather caused by change of surface properties than by increased expression of surfactant proteins.
Copyright © 2019 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  3D culture; Air-liquid interface; Cytotoxicity; Respiratory toxicity; Surface morphology

Year:  2019        PMID: 31233786     DOI: 10.1016/j.tiv.2019.06.014

Source DB:  PubMed          Journal:  Toxicol In Vitro        ISSN: 0887-2333            Impact factor:   3.500


  11 in total

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Journal:  Front Toxicol       Date:  2022-06-17

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Journal:  Int J Mol Sci       Date:  2022-06-08       Impact factor: 6.208

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6.  Air-Liquid Interface Culture Model to Study Lung Cancer-Associated Cellular and Molecular Changes.

Authors:  Hina Agraval; Jiten R Sharma; Neeraj Dholia; Umesh C S Yadav
Journal:  Methods Mol Biol       Date:  2022

7.  Screening for Effects of Inhaled Nanoparticles in Cell Culture Models for Prolonged Exposure.

Authors:  Claudia Meindl; Kristin Öhlinger; Verena Zrim; Thomas Steinkogler; Eleonore Fröhlich
Journal:  Nanomaterials (Basel)       Date:  2021-02-28       Impact factor: 5.076

8.  A Barrier to Defend - Models of Pulmonary Barrier to Study Acute Inflammatory Diseases.

Authors:  Anna Herminghaus; Andrey V Kozlov; Andrea Szabó; Zoltán Hantos; Severin Gylstorff; Anne Kuebart; Mahyar Aghapour; Bianka Wissuwa; Thorsten Walles; Heike Walles; Sina M Coldewey; Borna Relja
Journal:  Front Immunol       Date:  2022-07-07       Impact factor: 8.786

9.  Gene Expression Profiling of Mono- and Co-Culture Models of the Respiratory Tract Exposed to Crystalline Quartz under Submerged and Air-Liquid Interface Conditions.

Authors:  Alexandra Friesen; Susanne Fritsch-Decker; Matthias Hufnagel; Sonja Mülhopt; Dieter Stapf; Carsten Weiss; Andrea Hartwig
Journal:  Int J Mol Sci       Date:  2022-07-14       Impact factor: 6.208

10.  Cytotoxicity and Genotoxicity of Polystyrene Micro- and Nanoplastics with Different Size and Surface Modification in A549 Cells.

Authors:  Xiaorui Shi; Xinan Wang; Rong Huang; Chu Tang; Chong Hu; Pengbo Ning; Fu Wang
Journal:  Int J Nanomedicine       Date:  2022-09-24
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