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January 18, 20260 citationsOpen Access

Potential planetary health impacts of the airborne plastisphere

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LJLing JinLJLing N. JinMBMichael S. Bank

Key Points

  • The aim is to investigate the role of airborne microplastics as habitats for microorganisms and their potential health impacts on the planet.
  • Comprehensive review of existing literature on microplastics and airborne particulate matter.
  • Analysis of microbial communities associated with microplastics in various ecosystems.
  • Identification of potential health risks linked to the dispersal of microorganisms via airborne microplastics.
  • Airborne microplastics can transport microorganisms over extensive distances and timescales.
  • Potential dispersal of pathogens and antibiotic-resistance genes through airborne microplastics is highlighted.
  • Interactions between microplastics and microorganisms may disrupt ecological processes on a planetary scale.

Abstract

Microplastics are a ubiquitous yet long-overlooked component of airborne particulate matter. The surface of these plastic particles provides a unique niche for microorganisms, collectively known as the plastisphere. The plastisphere in aquatic and terrestrial ecosystems harbors microbial communities with distinct compositions, structures, and functional profiles, posing potential planetary health risks. The characteristics, fate, and impacts of the microbiome associated with airborne microplastics, however, remain largely unknown. In this review, we fill the knowledge gaps by exploring how airborne microplastics serve as key habitats for microorganisms and the potential planetary health implications. We show that microplastics are expected to carry and sustain microorganisms over long distances and timescales in air, potentially dispersing pathogens, antibiotic-resistance genes, and other bioactive agents across ecosystems. These interactions may perturb ecological processes and biological health on a planetary scale. Interdisciplinary research and innovative methodologies are urgently required to better understand and mitigate the airborne plastisphere risks.

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Cite This Study

Jin et al. (2025) studied this question.

synapsesocial.com/papers/696c7791eb60fb80d1395c29https://doi.org/10.17169/refubium-50887
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