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  4. Air-liquid interface in vitro models for respiratory toxicology research: Consensus workshop and recommendations
 
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2018
Journal Article
Title

Air-liquid interface in vitro models for respiratory toxicology research: Consensus workshop and recommendations

Abstract
In vitro air-liquid interface (ALI) cell culture models can potentially be used to assess inhalation toxicology endpoints and are usually considered, in terms of relevancy, between classic (i.e., submerged) in vitro models and animal-based models. In some situations that need to be clearly defined, ALI methods may represent a complement or an alternative option to in vivo experimentations or classic in vitro methods. However, it is clear that many different approaches exist and that only very limited validation studies have been carried out to date. This means comparison of data from different methods is difficult and available methods are currently not suitable for use in regulatory assessments. This is despite inhalation toxicology being a priority area for many governmental organizations. In this setting, a 1-day workshop on ALI in vitro models for respiratory toxicology research was organized in Paris in March 2016 to assess the situation and to discuss what might be possible in terms of validation studies. The workshop was attended by major parties in Europe and brought together more than 60 representatives from various academic, commercial, and regulatory organizations. Following plenary, oral, and poster presentations, an expert panel was convened to lead a discussion on possible approaches to validation studies for ALI inhalation models. A series of recommendations were made and the outcomes of the workshop are reported.
Author(s)
Lacroix, Ghislaine
Koch, Wolfgang  
Ritter, Detlef  
Gutleb, Arno C.
Larsen, Søren Thor
Loret, Thomas
Zanetti, Filippo
Constant, Samuel
Chortarea, Savvina
Rothen-Rutishauser, Barbara M.
Hiemstra, Pieter S.
Frejafon, Emeric
Hubert, Philippe
Gribaldo, Laura
Kearns, Peter
Aublant, Jean-Marc
Diabaté, Silvia
Weiss, Carsten
Groot, Antoinette de
Kooter, Ingeborg
Journal
Applied in vitro toxicology  
Open Access
File(s)
Download (538.71 KB)
Rights
CC BY 4.0: Creative Commons Attribution
DOI
10.24406/publica-r-255294
10.1089/aivt.2017.0034
Language
English
Fraunhofer-Institut für Toxikologie und Experimentelle Medizin ITEM  
Keyword(s)
  • air-liquid interface

  • in vitro

  • Inhalation

  • lung cell model

  • toxicology

  • validation

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