A Kinetic Analysis of DNA-Deoxy Guanine Adducts in the Nasal Epithelium Produced by Inhaled Formaldehyde in Rats-Assessing Contributions to Adduct Production From Both Endogenous and Exogenous Sources of Formaldehyde

被引:7
作者
Campbell, Jerry L., Jr. [1 ]
Gentry, P. Robinan [2 ]
Clewell, Harvey J., III [1 ]
Andersen, Melvin E. [3 ]
机构
[1] Ramboll US Corp, Dept Hlth & Safety, Raleigh, NC 27612 USA
[2] Ramboll US Corp, Dept Hlth & Safety, Monroe, LA 71201 USA
[3] Andersen ToxConsulting LLC, Denver, NC 28037 USA
关键词
biotransformation; toxicokinetics; pharmacokinetics; PROTEIN CROSS-LINKS; CARCINOGENICITY; DISPOSITION; MODEL;
D O I
10.1093/toxsci/kfaa122
中图分类号
R99 [毒物学(毒理学)];
学科分类号
100405 ;
摘要
Although formaldehyde is a normal constituent of tissues, lifetime inhalation exposures at 6 h/day, 5 days/week at concentrations >= 6 ppm caused a nonlinear increase in nasal tumors in rats with incidence reaching close to 50% at 15 ppm. Studies with heavy isotope labeled [(CD2)-C-13]-formaldehyde permit quantification of both the mass-labeled exogenous and endogenous DNA-formaldehyde reaction products. An existing pharmacokinetic model developed initially to describe C-14-DNA-protein crosslinks (DPX) provided a template for describing the time course of mass-labeled adducts. Published datasets included both DPX and N-2-(HOCD2)-C-13-dG adducts measured after a single 6-h exposure to 0.7, 2, 6, 9, 10, or 15 ppm formaldehyde, after multi-day exposures to 2 ppm for 6 h/day, 7 days/week with interim sacrifices up to 28 days, and after 28-day exposures for 6 h/day, 7 days/week to 0.3, 0.03, or 0.001 ppm. The existing kinetic model overpredicted endogenous adducts in the nasal epithelium after 1-day [(CD2)-C-13]-formaldehyde exposure, requiring adjustment of parameters for rates of tissue metabolism and background formaldehyde. After refining tissue formaldehyde parameters, we fit the model to both forms of adducts by varying key parameters and optimizing against all 3 studies. Fitting to all these studies required 2 nonlinear pathways-one for high-exposure saturation of clearance in the nasal epithelial tissues and another for extracellular clearance that restricts uptake into the epithelial tissue for inhaled concentrations below 0.7 ppm. This refined pharmacokinetic model for endogenous and exogenous formaldehyde acetal adducts can assist in updating biologically based dose-response models for formaldehyde carcinogenicity.
引用
收藏
页码:325 / 333
页数:9
相关论文
共 19 条
[1]   Formaldehyde: Integrating Dosimetry, Cytotoxicity, and Genomics to Understand Dose-Dependent Transitions for an Endogenous Compound [J].
Andersen, Melvin E. ;
Clewell, Harvey J., III ;
Bermudez, Edilberto ;
Dodd, Darol E. ;
Willson, Gabrielle A. ;
Campbell, Jerry L. ;
Thomas, Russell S. .
TOXICOLOGICAL SCIENCES, 2010, 118 (02) :716-731
[2]  
[Anonymous], 2010, DESOLVE GEN SOLVERS
[3]   Simulation modeling of the tissue disposition of formaldehyde to predict nasal DNA-protein cross-links in fischer 344 rats, rhesus monkeys, and humans [J].
Conolly, RB ;
Lilly, PD ;
Kimbell, JS .
ENVIRONMENTAL HEALTH PERSPECTIVES, 2000, 108 :919-924
[4]   Biologically motivated computational modeling of formaldehyde carcinogenicity in the F344 rat [J].
Conolly, RB ;
Kimbell, JS ;
Janszen, D ;
Schlosser, PM ;
Kalisak, D ;
Preston, J ;
Miller, FJ .
TOXICOLOGICAL SCIENCES, 2003, 75 (02) :432-447
[5]   A distributed-parameter model for formaldehyde uptake and disposition in the rat nasal lining [J].
Georgieva, AV ;
Kimbell, JS ;
Schlosser, PM .
INHALATION TOXICOLOGY, 2003, 15 (14) :1435-1463
[6]  
GROSS EA, 1982, J ANAT, V135, P83
[7]   Pharmacodynamics of formaldehyde: Applications of a model for the arrest of DNA replication by DNA-protein cross-links [J].
Heck, HD ;
Casanova, M .
TOXICOLOGY AND APPLIED PHARMACOLOGY, 1999, 160 (01) :86-100
[8]  
HECK HD, 1982, BIOMED MASS SPECTROM, V9, P347
[9]  
KERNS WD, 1983, CANCER RES, V43, P4382
[10]   Evaluation of inhaled low-dose formaldehyde-induced DNA adducts and DNA-protein cross-links by liquid chromatography-tandem mass spectrometry [J].
Leng, Jiapeng ;
Liu, Chih-Wei ;
Hartwell, Hadley J. ;
Yu, Rui ;
Lai, Yongquan ;
Bodnar, Wanda M. ;
Lu, Kun ;
Swenberg, James A. .
ARCHIVES OF TOXICOLOGY, 2019, 93 (03) :763-773