It’s a matter of microbes: a perspective on the microbiological aspects of micro- and nanoplastics in human health

IF 4.1 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Melissa Stunnenberg, A. M. de Roda Husman
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Abstract

Micro- and nanoplastics (MNPs) are everywhere: in the air we breathe, in our food and in virtually every type of water. Currently, it is unknown whether, and to what extent, these MNPs are hazardous to human health. Identifying risks of physical and chemical aspects of MNPs has gained a lot of attention over the last few years, and efforts have been made to quantify these risks. In our opinion, the momentum delivered by these efforts should be used to highlight the relevance of including another important aspect of MNPs: their associated microbes. Although more and more studies describe MNP-associated microbes, the interplay between physical, chemical and microbiological aspects are lacking. Hazard identification parameters describing this interplay are crucial to risk assessment strategies, yet the majority of effort has been directed towards optimizing human exposure parameters. Here, we address the importance of including microbiological aspects of MNPs in the risk assessment of MNPs. Physical and chemical aspects of MNPs impact the diversity and abundance of microbes and antibiotic resistance genes (ARGs). In turn, environmental factors (e.g., UV radiation, antibiotics) may impact the microbial composition directly, or indirectly by impacting physical or chemical MNP aspects. Future efforts should be directed towards investigating this interplay in order to determine the effects of these dynamic outcomes on human health. We believe that elucidating these pieces of the puzzle is needed to ultimately perform a more holistic risk assessment of MNPs on human health.
微生物问题:从微生物角度看微塑料和纳米塑料对人类健康的影响
微塑料和纳米塑料(MNPs)无处不在:在我们呼吸的空气中,在我们的食物中,在几乎所有类型的水中。目前,人们还不知道这些 MNPs 是否会危害人类健康以及危害程度如何。在过去几年中,识别 MNPs 物理和化学方面的风险受到了广泛关注,人们也在努力量化这些风险。我们认为,应利用这些努力所带来的势头,强调将 MNPs 的另一个重要方面(其相关微生物)包括在内的相关性。虽然越来越多的研究描述了与 MNP 相关的微生物,但缺乏物理、化学和微生物方面的相互作用。描述这种相互作用的危害识别参数对风险评估策略至关重要,但大部分工作都是针对优化人类暴露参数。在此,我们探讨了将 MNP 的微生物方面纳入 MNP 风险评估的重要性。MNPs 的物理和化学方面会影响微生物和抗生素耐药基因 (ARG) 的多样性和丰度。反过来,环境因素(如紫外线辐射、抗生素)可能会直接影响微生物组成,或通过影响 MNP 的物理或化学方面而间接影响微生物组成。未来应致力于研究这种相互作用,以确定这些动态结果对人类健康的影响。我们认为,要最终对 MNP 对人类健康的影响进行更全面的风险评估,就必须阐明这些难题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Frontiers in Nanotechnology
Frontiers in Nanotechnology Engineering-Electrical and Electronic Engineering
CiteScore
7.10
自引率
0.00%
发文量
96
审稿时长
13 weeks
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