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DOI10.3109/08958378.2014.954167
Whole body plethysmography reveals differential ventilatory responses to ozone in rat models of cardiovascular disease
Dye, Janice A.1; Ledbetter, Allen D.1; Schladweiler, Mette C.1; Costa, Daniel L.2; Kodavanti, Urmila P.1
发表日期2015-03-20
ISSN0895-8378
卷号27页码:14-25
英文摘要

To elucidate key factors of host susceptibility to air pollution, healthy and cardiovascular (CV)-compromised rats were exposed to air or ozone (O-3) at 0.25, 0.5, or 1.0ppm for 4h. We hypothesized that rat strains with the least cardiac reserve would be most prone to develop significant health effects. Using flow whole body plethysmography (FWBP), ventilatory responses in healthy 3-month-old male rats [i.e. Wistar-Kyoto (WKY), Wistar (WIS), and Sprague-Dawley (SD) strains] were compared with hypertensive [i.e. spontaneously hypertensive (SH), fawn-hooded-hypertensive (FHH), and SH-stroke-prone (SHSP)] strains and obese [i.e. SH-heart failure-prone (SHHF) and JCR:LA-cp, atherosclerosis-prone (JCR)] strains. SH were slower to acclimate to the FWBP chambers. At 0-h post-air-exposure, SHSP and SHHF exhibited hyperpnea, indicative of cardiopulmonary insufficiency. At 0-h-post-O-3, all but one strain showed significant concentration-dependent decreases in minute volume [MV=tidal volume (TV)xbreathing frequency]. Comparing air with 1.0ppm responses, MV declined 20-27% in healthy, 21-42% in hypertensive, and 33% in JCR rats, but was unchanged in SHHF rats. Penh increased significantly in all strains, with disproportionate increases in responder WKY and FHH strains. By 20h, most changes had resolved, although Penh remained elevated in WKY, SH, and SHSP. Based on the effective dose estimates (O(3)ppmxhxMV), the most CV-compromised (SHSP and SHHF) strains received significantly greater O-3 lung deposition (25% and 40%, respectively). Data support epidemiologic associations that individuals with cardiopulmonary insufficiency are at greater risk for urban pollutant exposure due, in part, to enhanced lung deposition and exacerbation of hypoxia and pathophysiologic processes of heart failure.


英文关键词Cardiovascular disease models;ozone;rat;ventilatory parameters;whole body plethysmography
语种英语
WOS记录号WOS:000366601900003
来源期刊INHALATION TOXICOLOGY
来源机构美国环保署
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/56478
作者单位1.US EPA, Environm Publ Hlth Div, NHEERL, Res Triangle Pk, NC 27709 USA;
2.US EPA, Natl Program Air Climate & Energy Res, Off Res & Dev, Res Triangle Pk, NC 27709 USA
推荐引用方式
GB/T 7714
Dye, Janice A.,Ledbetter, Allen D.,Schladweiler, Mette C.,et al. Whole body plethysmography reveals differential ventilatory responses to ozone in rat models of cardiovascular disease[J]. 美国环保署,2015,27:14-25.
APA Dye, Janice A.,Ledbetter, Allen D.,Schladweiler, Mette C.,Costa, Daniel L.,&Kodavanti, Urmila P..(2015).Whole body plethysmography reveals differential ventilatory responses to ozone in rat models of cardiovascular disease.INHALATION TOXICOLOGY,27,14-25.
MLA Dye, Janice A.,et al."Whole body plethysmography reveals differential ventilatory responses to ozone in rat models of cardiovascular disease".INHALATION TOXICOLOGY 27(2015):14-25.
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