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影响加利福尼亚州农业社区成员尿有机磷农药代谢物水平的因素。

Factors affecting urinary organophosphate pesticide metabolite levels among Californian agricultural community members.

机构信息

Department of Environmental and Radiological Health Sciences, Colorado State University, Fort Collins, CO, USA.

Central California Environmental Justice Network, Fresno, CA, USA.

出版信息

Sci Total Environ. 2023 Jul 10;881:163362. doi: 10.1016/j.scitotenv.2023.163362. Epub 2023 Apr 12.

Abstract

Organophosphate (OP) pesticides are widely used in California for agricultural pest and weed control despite their well-documented adverse health effects among infants, children, and adults. We sought to identify factors affecting urinary OP metabolites among families living in high-exposure communities. Our study included 80 children and adults who lived within 61 m (200 ft) of agricultural fields in the Central Valley of California in January and June 2019, which are pesticide non-spraying and spraying seasons, respectively. We collected one urine sample per participant during each visit to measure dialkyl phosphate (DAP) metabolites; these were coupled with in-person surveys to identify health, household, sociodemographic, pesticide exposure, and occupational risk factors. We used a data-driven, best subsets regression approach to identify key factors that influenced urinary DAPs. Participants were mostly Hispanic/Latino(a) (97.5 %), over half were female (57.5 %), and most households reported having a member who worked in agriculture (70.6 %). Among the 149 urine samples suitable for analysis, DAP metabolites were detected in 48.0 % and 40.5 % of samples during January and June, respectively. Total diethyl alkylphosphates (EDE) were only detected in 4.7 % (n = 7) of samples, but total dimethyl alkylphosphates (EDM) were detected in 41.6 % (n = 62) of samples. No differences were observed in urinary DAP levels by visit month or by occupational exposure to pesticides. Best subsets regression identified several individual- and household-level variables that influenced both urinary EDM and total DAPs: the number of years spent living at the current address, household use of chemical products to control mice/rodents, and seasonal employment status. Among adults only, we identified educational attainment (for total DAPs) and age category (for EDM) as significant factors. Our study found consistent urinary DAP metabolites among participants, regardless of spraying season, and identified potential mitigating factors that members of vulnerable populations can implement to protect their health against OP exposure.

摘要

有机磷 (OP) 农药在加利福尼亚州被广泛用于农业害虫和杂草控制,尽管它们在婴儿、儿童和成人中的不良健康影响已有充分记录。我们试图确定影响生活在高暴露社区的家庭的尿有机磷代谢物的因素。我们的研究包括 80 名儿童和成年人,他们分别于 2019 年 1 月和 6 月生活在加利福尼亚州中央山谷的农业田 61 米(200 英尺)范围内,这分别是农药喷洒和非喷洒季节。我们在每次访问时为每位参与者收集一份尿液样本,以测量二烷基磷酸酯 (DAP) 代谢物;这些与面对面调查相结合,以确定健康、家庭、社会人口统计学、农药暴露和职业风险因素。我们使用数据驱动的最佳子集回归方法来确定影响尿 DAP 的关键因素。参与者主要是西班牙裔/拉丁裔(97.5%),超过一半是女性(57.5%),大多数家庭报告有成员在农业工作(70.6%)。在 149 份适合分析的尿液样本中,分别在 1 月和 6 月检测到 48.0%和 40.5%的样本中存在 DAP 代谢物。仅在 4.7%(n=7)的样本中检测到总二乙基烷基磷酸酯(EDE),但在 41.6%(n=62)的样本中检测到总二甲基烷基磷酸酯(EDM)。根据访问月份或职业性农药暴露情况,尿液 DAP 水平无差异。最佳子集回归确定了一些个体和家庭层面的变量,这些变量影响尿 EDM 和总 DAP:在当前地址居住的年数、家庭使用化学产品控制老鼠/啮齿动物以及季节性就业状况。仅在成年人中,我们确定了教育程度(总 DAP)和年龄类别(EDM)是重要因素。我们的研究发现,无论喷洒季节如何,参与者的尿 DAP 代谢物都一致,并确定了弱势人群可以实施的潜在缓解因素,以保护他们的健康免受 OP 暴露。

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