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PMID: 24962174 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Review

Modeling the lung: Design and development of tissue engineered macro- and micro-physiologic lung models for research use.

Experimental biology and medicine (Maywood, N.J.) ·Vol. 239 ·No. 9 ·2014-09-00 ·Pages 1135-69

Nichols JE, Niles JA, Vega SP, Argueta LB, Eastaway A, Cortiella J

Abstract

Respiratory tract specific cell populations, or tissue engineered in vitro grown human lung, have the potential to be used as research tools to mimic physiology, toxicology, pathology, as well as infectious diseases responses of cells or tissues. Studies related to respiratory tract pathogenesis or drug toxicity testing in the past made use of basic systems where single cell populations were exposed to test agents followed by evaluations of simple cellular responses. Although these simple single-cell-type systems provided good basic information related to cellular responses, much more can be learned from cells grown in fabricated microenvironments which mimic in vivo conditions in specialized microfabricated chambers or by human tissue engineered three-dimensional (3D) models which allow for more natural interactions between cells. Recent advances in microengineering technology, microfluidics, and tissue engineering have provided a new approach to the development of 2D and 3D cell culture models which enable production of more robust human in vitro respiratory tract models. Complex models containing multiple cell phenotypes also provide a more reasonable approximation of what occurs in vivo without the confounding elements in the dynamic in vivo environment. The goal of engineering good 3D human models is the formation of physiologically functional respiratory tissue surrogates which can be used as pathogenesis models or in the case of 2D screening systems for drug therapy evaluation as well as human toxicity testing. We hope that this manuscript will serve as a guide for development of future respiratory tract model systems as well as a review of conventional models.

Keywords
3D lung models Engineered lung models engineered organ models micro-physiologic lung physiologic lung as a model upper respiratory tract models
MeSH Terms
Animals Humans Lung/cytology,metabolism Models, Biological Tissue Culture Techniques/instrumentation,methods Tissue Engineering/instrumentation,methods
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Nichols Joan E
University of Texas Medical Branch, Department of Internal Medicine, Division of Infectious Diseases, Galveston, TX 77555-0435, USA University of Texas Medical Branch, Department of Microbiology and Immunology, Galveston, TX 77555-0435, USA University of Texas Medical Branch, School of Medicine, Galveston, TX 77555-0435, USA [email protected].
Niles Jean A
University of Texas Medical Branch, Department of Internal Medicine, Division of Infectious Diseases, Galveston, TX 77555-0435, USA.
Vega Stephanie P
University of Texas Medical Branch, Department of Internal Medicine, Division of Infectious Diseases, Galveston, TX 77555-0435, USA University of Texas Medical Branch, Department of Microbiology and Immunology, Galveston, TX 77555-0435, USA.
Argueta Lissenya B
University of Texas Medical Branch, Department of Internal Medicine, Division of Infectious Diseases, Galveston, TX 77555-0435, USA University of Texas Medical Branch, Department of Microbiology and Immunology, Galveston, TX 77555-0435, USA.
Eastaway Adriene
University of Texas Medical Branch, Department of Internal Medicine, Division of Infectious Diseases, Galveston, TX 77555-0435, USA University of Texas Medical Branch, School of Medicine, Galveston, TX 77555-0435, USA.
Cortiella Joaquin
University of Texas Medical Branch, Department of Anesthesiology, Galveston, TX 77555-0435, USA.
Article Info
Journal
Experimental biology and medicine (Maywood, N.J.)
Abbr.
Exp Biol Med (Maywood)
ISSN
1535-3699
Published
2014-09-00
Epub
2014-00-24
Pages
1135-69
Language
English
Region
England
NLM ID
100973463
Subset
IM
Grants
NCATS NIH HHS · 1-U18-TR-000560 · United States
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