纳米和微塑料颗粒的人体健康风险评估暴露情景。

Microplastics and nanoplastics Pub Date : 2025-01-01 Epub Date: 2025-07-14 DOI:10.1186/s43591-025-00134-9
Taylor Lane, Ira Wardani, Albert A Koelmans
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引用次数: 0

摘要

近年来,关于纳米和微塑料颗粒存在于人体内的证据有所增加,但由于接触和危害评估方面的局限性,尚无可接受的方法对这些颗粒进行人体健康风险评估。暴露评估可以通过以下方式得到改进:为已定义的暴露人群建立全面和合理的暴露情景,彻底描述相关的暴露途径,并进行多维数据校准,从而促进纳米和微塑料颗粒暴露的概率估计。概述了暴露情景的一般考虑因素,以及关于9个人口群体的复杂性和优先次序的具体细节:成人;女性;老年人;患病个人;从事高危职业的个人;儿童人口统计,包括早期婴儿,学步儿童,学童和青少年。报告还提出了关于提前进行暴露评估和情景的建议,其中建议:i)对人口统计数据使用定义明确的暴露情景,并根据其复杂程度和关注程度进行优先排序;Ii)对所选人群的相关活动因素(生理参数、行为特征)和暴露因素(持续时间、频率、媒体特征)的全面描述;Iii)通过摄入和吸入接触的详细描述,在早期婴儿的情况下,包括通过母体转移接触;Iv)多维数据对齐和概率方法,以实现跨研究暴露数据的可信比较,并为基于生理学的毒物动力学模型提供信息,以估计内部暴露。补充信息:在线版本包含补充资料,下载地址:10.1186/s43591-025-00134-9。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Exposure scenarios for human health risk assessment of nano- and microplastic particles.

Exposure scenarios for human health risk assessment of nano- and microplastic particles.

Exposure scenarios for human health risk assessment of nano- and microplastic particles.

Evidence of nano- and microplastic particles being present in the human body has increased in recent years, yet there is no acceptable methodology to perform a human health risk assessment for these particles because of limitations in the exposure and hazard assessments. Exposure assessment can be improved by establishing comprehensive and justifiable exposure scenarios for a defined exposure demographic, thoroughly describing the relevant exposure pathways, and performing multidimensional data alignment, thereby facilitating probabilistic estimates of nano- and microplastic particle exposure. General considerations of exposure scenarios are outlined, along with specifics details on the complexity and prioritization for nine demographic groups: adults; women; the elderly; individuals with disease; individuals employed in high-hazard occupations; and children demographics, including early infants, toddlers, school children, and teenagers. Recommendations to advance exposure assessments and scenarios are also provided which suggest: i) the use of well-defined exposure scenarios for demographics that are prioritized according to their level of complexity and concern; ii) a thorough description of relevant activity factors (physiological parameters, behavioural traits) and exposure factors (duration, frequency, media characterization) for the chosen demographic; iii) thorough descriptions of exposure via ingestion and inhalation, and in the case of early infants, including exposure via maternal transfer; iv) multidimensional data alignment and probabilistic methods to enable credible comparisons of exposure data across studies and inform physiologically based toxicokinetic models to estimate internal exposure.

Supplementary information: The online version contains supplementary material available at 10.1186/s43591-025-00134-9.

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