What Drives Microplastic Exposure in Human Blood and Feces? Machine Learning Reveals Potential Key Influencing Factors

微塑料 生物监测 人类血液 环境科学 环境卫生 人类健康 环境化学 暴露评估 粪便 钥匙(锁) 风险评估 样品(材料) 人体微生物群 人体测量学 人命
作者
Pengcheng Tu,Junhao Xie,Xueqing Li,Xue Ma,Mingluan Xing,Huixia Niu,Lizhi Wu,Zhe Mo,Xin Gong,Xiaoming Lou,Z P Chen,Bei Gao,Jun-Li Xu
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:60 (1): 1040-1050 被引量:3
标识
DOI:10.1021/acs.est.5c07946
摘要

Microplastics are pervasive environmental pollutants, making human exposure unavoidable. Although previous studies have detected microplastics in human blood and feces, these investigations were limited by small sample sizes and key contributors to microplastic biomonitoring remain underexplored. In this study, we analyzed 229 blood and 227 fecal samples using pyrolysis-gas chromatography-mass spectrometry to quantify microplastic exposure and identify key influencing factors through machine learning modeling. Seven polymer types were detected in both biological matrices, including polyethylene, poly(vinyl chloride) (PVC), polypropylene, polystyrene, polyamide 66, poly(ethylene terephthalate), and poly(methyl methacrylate), with polyethylene, PVC, and polystyrene being the most prevalent. A significant negative correlation was observed between blood and fecal PVC levels, while other polymers showed no significant intermatrix association. Demographic, lifestyle, socioeconomic, and dietary information were collected via questionnaires. Age, sex, geographic, and indoor environmental variations in microplastic levels were observed. Machine learning models were developed to predict microplastic levels from anthropometric measurements and questionnaire data. Explainable AI tools revealed that the drinking water source was the strongest predictor of blood PVC levels. Socioeconomic factors, including income and education, were also significant predictors, with lower-income individuals showing higher microplastic burdens. This approach provides a framework for understanding and mitigating microplastic exposure.
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