Figueiredo Daniel M, Lô Serigne, Krop Esmeralda, Meijer Jeroen, Beeltje Henry, Lamoree Marja H, Vermeulen Roel
Institute for Risk Assessment Sciences (IRAS), Utrecht University, Yalelaan 2, 3584 CM, Utrecht, the Netherlands.
Institute for Risk Assessment Sciences (IRAS), Utrecht University, Yalelaan 2, 3584 CM, Utrecht, the Netherlands.
Environ Res. 2023 Apr 1;222:115412. doi: 10.1016/j.envres.2023.115412. Epub 2023 Feb 1.
It has been suggested that domestic animals can serve as sentinels for human exposures. In this study our objectives were to demonstrate that i) silicone collars can be used to measure environmental exposures of (domestic) animals, and that ii) domestic animals can be used as sentinels for human residential exposure. For this, we simultaneously measured polycyclic aromatic hydrocarbons (PAHs) using silicone bands worn by 30 pet cats (collar) and their owner (wristband). Collars and wristbands were worn for 7 days and analyzed via targeted Gas Chromatography-Mass Spectrometry (GC-MS). Demographics and daily routines were collected for humans and cats. Out of 16 PAHs, 9 were frequently detected (>50% of samples) in both wristbands and collars, of which Phenanthrene and Fluorene were detected in all samples. Concentrations of wristbands and collars were moderately correlated for these 9 PAHs (Median Spearman's r = 0.51 (range 0.16-0.68)). Determinants of PAH concentrations of cats and humans showed considerable overlap, with vacuum cleaning resulting in higher exposures and frequent changing of bed sheets in lower exposures. This study adds proof-of-principle data for the use of silicone collars to measure (domestic) animal exposure and shows that cats can be used as sentinels for human residential exposure.
有人提出,家畜可作为人类接触情况的哨兵。在本研究中,我们的目标是证明:i)硅胶项圈可用于测量(家养)动物的环境接触情况,以及ii)家畜可作为人类居住环境接触情况的哨兵。为此,我们使用30只宠物猫佩戴的硅胶项圈及其主人佩戴的腕带同时测量多环芳烃(PAHs)。项圈和腕带佩戴7天,并通过靶向气相色谱 - 质谱联用仪(GC - MS)进行分析。收集了人类和猫的人口统计学信息及日常活动情况。在16种多环芳烃中,有9种在腕带和项圈中均频繁检出(>50%的样本),其中菲和芴在所有样本中均被检测到。这9种多环芳烃在腕带和项圈中的浓度呈中度相关(中位数斯皮尔曼相关系数r = 0.51(范围0.16 - 0.68))。猫和人类多环芳烃浓度的决定因素显示出相当大的重叠,吸尘会导致接触量增加,而频繁更换床单则会使接触量降低。本研究为使用硅胶项圈测量(家养)动物接触情况增加了原理验证数据,并表明猫可作为人类居住环境接触情况的哨兵。