戊二醛吸入暴露的初步定量风险评估。

IF 2.7 4区 医学 Q3 TOXICOLOGY
Sudha P. Pandalai, David A. Dankovic
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引用次数: 0

摘要

戊二醛(CAS登记号111-30-8)具有多种职业用途,并与不良健康影响相关,包括呼吸道刺激、哮喘和慢性阻塞性肺病。进行了定量风险评估,以评估与不同水平的戊二醛职业吸入接触有关的不良健康影响的可能性。剂量-反应模型与国家毒理学计划进行的为期2年的戊二醛吸入暴露生物测定数据相吻合。基准浓度下限为32和44 ppb (ppb),分别基于发生鳞状上皮炎症和呼吸道上皮鳞状化生的雌性大鼠和小鼠的生物测定数据。这些值被用作确定与职业环境相关的暴露水平的起点。从啮齿动物到人类的外推假设每周工作40小时,考虑到物种间和个体间的差异,不确定性因素为8倍。利用在大鼠和小鼠模型中观察到的终点,计算吸入暴露于戊二醛的调整基准下限浓度为3和4.1 ppb。由于推导结果时使用的外推参数,这些发现适用于职业环境中戊二醛的暴露。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Preliminary Quantitative Risk Assessment for Inhalation Exposure to Glutaraldehyde

Glutaraldehyde (Chemical Abstracts Service [CAS] registry number 111-30-8) has various occupational uses and is associated with adverse health effects including respiratory tract irritation, asthma, and chronic obstructive pulmonary disease. A quantitative risk assessment was conducted to evaluate the likelihood of adverse health effects associated with differing levels of occupational inhalation exposure to glutaraldehyde. Dose–response models were fit to data from a 2-year glutaraldehyde inhalation exposure bioassay conducted by the National Toxicology Program. The benchmark concentration lower bound values of 32 and 44 parts per billion (ppb) were based on bioassay data for female rats and mice that developed squamous epithelium inflammation and respiratory epithelium squamous metaplasia, respectively. These values were used as a point of departure to determine exposure levels relevant to the occupational setting. Extrapolation from rodents to humans assumed a 40-h workweek and an 8-fold uncertainty factor to account for interspecies and interindividual variability. Adjusted benchmark lower bound concentrations of 3 and 4.1 ppb were calculated for inhalation exposure to glutaraldehyde using the endpoints observed in rat and mouse models. Due to the extrapolation parameters used in deriving this result, these findings have applicability for exposure to glutaraldehyde in the occupational setting.

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来源期刊
CiteScore
7.00
自引率
6.10%
发文量
145
审稿时长
1 months
期刊介绍: Journal of Applied Toxicology publishes peer-reviewed original reviews and hypothesis-driven research articles on mechanistic, fundamental and applied research relating to the toxicity of drugs and chemicals at the molecular, cellular, tissue, target organ and whole body level in vivo (by all relevant routes of exposure) and in vitro / ex vivo. All aspects of toxicology are covered (including but not limited to nanotoxicology, genomics and proteomics, teratogenesis, carcinogenesis, mutagenesis, reproductive and endocrine toxicology, toxicopathology, target organ toxicity, systems toxicity (eg immunotoxicity), neurobehavioral toxicology, mechanistic studies, biochemical and molecular toxicology, novel biomarkers, pharmacokinetics/PBPK, risk assessment and environmental health studies) and emphasis is given to papers of clear application to human health, and/or advance mechanistic understanding and/or provide significant contributions and impact to their field.
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