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April 16, 2026Marine Pollution Bulletin0 citationsOpen Access

Investigating the effects of PLA microplastics on Pocillopora damicornis (cnidaria, scleractinia)

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GFGiorgia FerrariItalian Institute of TechnologyEMEnrico MontalbettiMarine Research CentreDSDavide SevesoMarine Research Centre

Key Points

  • Examine the short-term effects of PLA microplastics on the physiology of Pocillopora damicornis.
  • Analyzed size distribution and chemical properties of polylactic acid microplastics.
  • Exposed coral colonies to three concentrations of microplastics for 72 hours.
  • Assessed the activity of antioxidant enzymes and cellular oxidative state.
  • No mortality or bleaching observed in corals after exposure to PLA microplastics.
  • Higher microplastic concentration increased glutathione reductase activity.
  • Lipid peroxidation analysis indicated no significant oxidative damage to corals.

Abstract

While the harmful effects of synthetic microplastics on reef-building corals are well documented, the impacts of their bio-based counterparts remain largely understudied. In this study, we investigate the chemical and physical properties of mechanically grounded polylactic acid microplastics and assess their short-term effects on the physiology and cellular oxidative state of the scleractinian coral Pocillopora damicornis . The microplastics, obtained by mechanical grinding, exhibit a wide size distribution, with 90% of particles ≤370 μm and 50% ≤ 192 μm. They display irregular size and rough surface, along with reduced crystallinity and molecular weight compared to the original pellets. Coral colonies were exposed to three microplastic concentrations (5 mg/L, 15 mg/L, and 50 mg/L) for 72 h, and no mortality or signs of bleaching were observed in all cases. Although colonies exposed to the higher concentration exhibited an increase in the activity of the antioxidant enzyme glutathione reductase, no significant cellular oxidative damage was caused by the microplastics, as the lipid peroxidation analysis indicated. This study provides a preliminary assessment of the physiological effects of polylactic acid microplastics on stony corals, emphasizing the need for further research on bio-based contaminants and their impact on marine benthic organisms. • The fabricated PLA microplastics have broad size, irregular shape and rough surface. • Exposure of corals to PLA MPs for 72 h did not result in mortality or bleaching. • PLA MPs did not cause oxidative damage to corals as lipid peroxidation was unchanged.

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Cite This Study

Ferrari et al. (2026) studied this question.

synapsesocial.com/papers/69e07c1e2f7e8953b7cbd811https://doi.org/10.1016/j.marpolbul.2026.119685
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