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Interactions of nanoparticles with pulmonary structures and cellular responses

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Publisher DOI
10.1152/ajplung.00442.2007
PubMed ID
18263666
Description
Combustion-derived and synthetic nano-sized particles (NSP) have gained considerable interest among pulmonary researchers and clinicians for two main reasons: 1) Inhalation exposure to combustion-derived NSP was associated with increased pulmonary and cardiovascular morbidity and mortality as suggested by epidemiological studies. Experimental evidence has provided a mechanistic picture of the adverse health effects associated with inhalation of combustion-derived and synthetic NSP. 2) The toxicological potential of NSP contrasts with the potential application of synthetic NSP in technological as well as medicinal settings with the latter including the use of NSP as diagnostics or therapeutics. In order to shed light on this paradox, this article aims to highlight recent findings about the interaction of inhaled NSP with the structures of the respiratory tract including surfactant and alveolar macrophages and epithelial cells. Cellular responses to NSP exposure include the generation of reactive oxygen species and the induction of an inflammatory response. Furthermore, this review places special emphasis on methodological differences between experimental studies and the caveats associated with the dose metrics and points out ways to overcome inherent methodological problems. Key words: electron tomography, surfactant, translocation, oxidative stress, inflammation.
Date of Publication
2008
Publication Type
Article
Language(s)
en
Contributor(s)
Mühlfeld, Christian
Institut für Anatomie, Topographische und Klinische Anatomie
Rothen-Rutishauser, Barbara
Blank, Fabian
Institut für Anatomie
Vanhecke, Dimitri
Institut für Anatomie
Ochs, Matthias
Institut für Anatomie
Gehr, Peter
Institut für Anatomie
Additional Credits
Institut für Anatomie, Topographische und Klinische Anatomie
Institut für Anatomie
Series
American journal of physiology - lung cellular and molecular physiology
Publisher
American Physiological Society
ISSN
1040-0605
ISBN
18263666
Access(Rights)
metadata.only
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