49 The Effect of Pesticide Exposure on Immunological Responses in Children against SARS-CoV-2

D. Werthmann, Elizabeth Norton, Felicia Rabito
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Abstract

OBJECTIVES/GOALS: The objective is to assess the effect of pesticide exposure (individually and pesticide mixtures) on the immune response to COVID-19 in children. The goal is to improve scientific knowledge on factors affecting COVID-19 and identify a potentially modifiable factor to reduce disparities in COVID-19 morbidity. METHODS/STUDY POPULATION: Blood samples will be obtained from 50 children with asthma two time points; baseline and 12 months later. SARS-CoV-2 infection or vaccination will be determined with blood exposome RNA analyses.. Immunological response will be measured using neutralizing, phagocytizing, and NK-activating anti-body responses biomarkers. Pesticide exposure will be measured via urinary pesticide metabolites (UPMs). For individual metabolites multivariable analyses for each pesticide will be conducted using generalized estimating equation (GEE) models with compound symmetry correlation to account for the repeated measures design. To assess the pesticide mixture, weighted quantile sum regression (WQS) will be used. RESULTS/ANTICIPATED RESULTS: The main hypothesis is that increased pesticide exposure results in a reduction in the immunological response to SARS-CoV-2 infection and the COVID-19 vaccine. Therefore, we anticipate that increasing concentrations of individual UPMs as well as the increasing index will result in reductions in markers of the immune response to SARS-CoV-2 infection and the COVID-19 vaccine. DISCUSSION/SIGNIFICANCE: Exposure to pesticides is a modifiable environmental factor. If pesticides are found to alter the immune response to COVID-19 infection and vaccination, these data will provide an evidence base for efforts to reduce pesticide exposure in children.
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49 暴露于杀虫剂对儿童 SARS-CoV-2 免疫反应的影响
目的/目标:目的是评估农药接触(单独接触和混合接触)对儿童 COVID-19 免疫反应的影响。目标是提高对影响 COVID-19 的因素的科学认识,并确定一个潜在的可调整因素,以减少 COVID-19 发病率的差异。方法/研究人群:将从 50 名患有哮喘的儿童中采集两个时间点(基线和 12 个月后)的血液样本。将通过血液暴露组 RNA 分析确定是否感染了 SARS-CoV-2 或接种了疫苗。免疫反应将通过中和、吞噬和 NK 激活抗体反应生物标志物进行测量。农药暴露将通过尿液农药代谢物(UPMs)来测量。对于单个代谢物,将使用具有复合对称相关性的广义估计方程(GEE)模型对每种农药进行多变量分析,以考虑重复测量设计。为了评估农药混合物,将使用加权量子总和回归法(WQS)。结果/预期结果:主要假设是,农药暴露量的增加会导致对 SARS-CoV-2 感染和 COVID-19 疫苗的免疫反应降低。因此,我们预计单个 UPMs 浓度的增加以及指数的增加将导致对 SARS-CoV-2 感染和 COVID-19 疫苗的免疫反应标志物的减少。讨论/意义:接触杀虫剂是一种可改变的环境因素。如果发现杀虫剂会改变对 COVID-19 感染和接种疫苗的免疫反应,这些数据将为减少儿童接触杀虫剂的努力提供证据基础。
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