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Meta Analysis ? AI-assigned paper type based on the abstract. Classification may not be perfect — flag errors using the feedback button. Tier 1 ? Systematic review or meta-analysis. Synthesizes findings across many studies. Strongest evidence. Nanoplastics Sign in to save

Micro- and nanoplastics interact with conventional pollutants on microalgae: Synthesis through meta-analysis

Environmental Pollution 2023 22 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 55 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Jingke Ge, Jingke Ge, Guang Gao Peng Jin, Shuyu Xie, Shuyu Xie, Peng Jin, John Beardall, Feng Yuan, Feng Yuan, Feng Yuan, John Beardall, John Beardall, Zengling Ma, Can Guo, Zengling Ma, Zengling Ma, Guang Gao Zengling Ma, Guang Gao Guang Gao Feng Yuan, Guang Gao Guang Gao Zengling Ma, Guang Gao

Summary

This meta-analysis of 933 experimental assessments found that micro- and nanoplastics interact with conventional pollutants like heavy metals and pesticides on microalgae in predominantly antagonistic ways, meaning the combined toxicity was often less than expected. This occurs because plastic particles adsorb pollutants from the water, reducing their bioavailability, though the effect varies by plastic size, charge, and aging.

Study Type Review

Micro- and nanoplastics (MNPs) have been found to occur intensively in aquatic environments, along with other conventional pollutants (Po) such as heavy metals, pesticides, pharmaceuticals, etc. However, our understanding of how MNPs and Po interact on aquatic primary producers is fragmented. We performed a quantitative meta-analysis based on 933 published experimental assessments from 44 studies to examine the coupled effects of MNPs and Po on microalgae. Although the results based on interaction type frequency (the proportion of each interaction type in all results) revealed dominantly additive interactions (56%) for overall physiological performance, an overall antagonistic effect was observed based on the mean interaction effect sizes. A higher proportion of antagonistic interaction type frequency was found in marine species compared to fresh species. The antagonistic effects were particularly significant for growth, oxidative responses, and photosynthesis, which could be attributed to the adsorption effect of MNPs on Po and thus the decreasing concentrations of pollutants in the medium. Larger-sized, negatively charged or uncharged and aged MNPs had higher proportions of antagonistic effects compared to smaller-sized, positively charged and virgin MNPs, due to their stronger adsorption capacity to Po. This study provides a comprehensive insight into the interactive effects of MNPs and Po on microalgae.

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