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PMID: 9385395 Published · ppublish English Journal Article

Correlation of regional formaldehyde flux predictions with the distribution of formaldehyde-induced squamous metaplasia in F344 rat nasal passages.

Mutation research ·Vol. 380 ·No. 1-2 ·1997-10-31 ·页码 143-54

Kimbell JS, Gross EA, Richardson RB, Conolly RB, Morgan KT

Abstract

Squamous epithelium lines the nasal vestibule of the rat, rhesus monkey, and human. Respiratory, transitional, and olfactory epithelia line most areas posterior to the nasal vestibule. Inhaled formaldehyde gas induces squamous metaplasia posterior to the nasal vestibule and does not induce lesions in the nasal vestibule in rats and rhesus monkeys, indicating that squamous epithelium is resistant to irritant effects of formaldehyde and that squamous metaplasia may be an adaptive response. If squamous metaplasia is determined by formaldehyde dosimetry rather than by tissue-specific factors, squamous epithelium may be protective by absorbing less formaldehyde than other epithelial types. In a previous study, a three-dimensional, anatomically accurate computational fluid dynamics (CFD) model of the anterior F344 rat nasal passages was used to simulate inspiratory airflow and inhaled formaldehyde transport. The present study consisted of two related parts. First, the rat CFD model was used to test the hypothesis that the distribution of formaldehyde-induced squamous metaplasia is related to the location of high-flux regions posterior to squamous epithelium. Regional formaldehyde flux into nonsquamous epithelium predicted by the CFD model correlated with regional incidence of formaldehyde-induced squamous metaplasia on the airway perimeter of one cross-sectional level of the noses of F344 rats exposed to 10 and 15 ppm formaldehyde gas for 6 months. Formaldehyde flux into nonsquamous epithelium was estimated to vary by an order of magnitude depending on the degree of formaldehyde absorption by squamous epithelium. These results indicate that the degree to which squamous epithelium absorbs formaldehyde strongly affects the rate and extent of the progression of squamous metaplasia with continued exposure to formaldehyde. In the second part of this study, the CFD model was used to predict squamous metaplasia progression. Data needs for verification of this model prediction are considered. These results indicate that information on the permeability of squamous epithelium in rats, monkeys, and humans is important for accurate prediction of uptake in regions posterior to the nasal vestibule.

MeSH 主题词
Administration, Inhalation Animals Computer Simulation Disease Progression Formaldehyde/administration & dosage,metabolism,toxicity Metaplasia/chemically induced Nasal Cavity/drug effects,metabolism,pathology Rats Rats, Inbred F344
化学物质
Formaldehyde
作者与单位
共 5 位作者,点击展开单位 / ORCID
Kimbell J S
Chemical Industry Institute of Toxicology, Research Triangle Park, NC 27709-2137, USA. [email protected]
Gross E A
Richardson R B
Conolly R B
Morgan K T
Article Info
Journal
Mutation research
Abbr.
Mutat Res
ISSN
0027-5107
Corresponding email
Published
1997-10-31
页码
143-54
Language
English
Country/Region
Netherlands
NLM ID
0400763
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