Identification and toxicity towards aquatic primary producers of the smallest fractions released from hydrolytic degradation of polycaprolactone microplastics
Chemosphere2022
54 citations
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Miguel González-Pleiter
Miguel González-Pleiter
Miguel Tamayo-Belda,
Miguel González-Pleiter
Miguel González-Pleiter
Miguel Tamayo-Belda,
Miguel González-Pleiter
Miguel González-Pleiter
Miguel Tamayo-Belda,
Miguel González-Pleiter
Miguel González-Pleiter
Miguel González-Pleiter
Miguel González-Pleiter
Gerardo Pulido‐Reyes,
Gerardo Pulido‐Reyes,
Roberto Rosal,
Gerardo Pulido‐Reyes,
Miguel Tamayo-Belda,
Miguel Tamayo-Belda,
Gerardo Pulido‐Reyes,
Gerardo Pulido‐Reyes,
Francisca Fernández‐Piñas,
Francisca Fernández‐Piñas,
Gerardo Pulido‐Reyes,
Gerardo Pulido‐Reyes,
Miguel Tamayo-Belda,
Miguel Tamayo-Belda,
Miguel Tamayo-Belda,
Miguel González-Pleiter
Miguel González-Pleiter
Miguel González-Pleiter
Miguel González-Pleiter
Miguel González-Pleiter
Miguel Tamayo-Belda,
Miguel Tamayo-Belda,
Miguel González-Pleiter
Roberto Rosal,
Francisca Fernández‐Piñas,
Francisca Fernández‐Piñas,
Francisca Fernández‐Piñas,
Miguel González-Pleiter
Miguel González-Pleiter
Miguel González-Pleiter
Miguel González-Pleiter
Miguel González-Pleiter
Miguel González-Pleiter
Miguel González-Pleiter
Miguel González-Pleiter
Miguel González-Pleiter
Miguel González-Pleiter
Miguel González-Pleiter
Miguel Tamayo-Belda,
Miguel Tamayo-Belda,
Miguel Tamayo-Belda,
Miguel Tamayo-Belda,
Gerardo Pulido‐Reyes,
Gerardo Pulido‐Reyes,
Gerardo Pulido‐Reyes,
Gerardo Pulido‐Reyes,
Francisca Fernández‐Piñas,
Francisca Fernández‐Piñas,
Francisca Fernández‐Piñas,
Francisca Fernández‐Piñas,
Francisca Fernández‐Piñas,
Francisca Fernández‐Piñas,
Francisca Fernández‐Piñas,
Roberto Rosal,
Roberto Rosal,
Roberto Rosal,
Roberto Rosal,
Roberto Rosal,
Roberto Rosal,
Francisco Leganés,
Francisco Leganés,
Francisco Leganés,
Keila Martín-Betancor,
Keila Martín-Betancor,
Roberto Rosal,
Keila Martín-Betancor,
Roberto Rosal,
Francisco Leganés,
Roberto Rosal,
Roberto Rosal,
Francisca Fernández‐Piñas,
Miguel González-Pleiter
Roberto Rosal,
Francisca Fernández‐Piñas,
Miguel Tamayo-Belda,
Miguel González-Pleiter
Keila Martín-Betancor,
Keila Martín-Betancor,
Francisca Fernández‐Piñas,
Keila Martín-Betancor,
Miguel Tamayo-Belda,
Francisca Fernández‐Piñas,
Miguel González-Pleiter
Keila Martín-Betancor,
Keila Martín-Betancor,
Francisca Fernández‐Piñas,
Miguel González-Pleiter
Francisca Fernández‐Piñas,
Gerardo Pulido‐Reyes,
Miguel González-Pleiter
Roberto Rosal,
Francisco Leganés,
Francisco Leganés,
Francisca Fernández‐Piñas,
Francisco Leganés,
Francisco Leganés,
Francisca Fernández‐Piñas,
Miguel González-Pleiter
Roberto Rosal,
Roberto Rosal,
Francisca Fernández‐Piñas,
Francisco Leganés,
Roberto Rosal,
Francisca Fernández‐Piñas,
Roberto Rosal,
Francisco Leganés,
Francisco Leganés,
Miguel González-Pleiter
Roberto Rosal,
Roberto Rosal,
Miguel González-Pleiter
Gerardo Pulido‐Reyes,
Miguel González-Pleiter
Miguel González-Pleiter
Miguel González-Pleiter
Miguel González-Pleiter
Miguel González-Pleiter
Francisco Leganés,
Francisco Leganés,
Miguel González-Pleiter
Francisco Leganés,
Miguel González-Pleiter
Miguel González-Pleiter
Francisco Leganés,
Francisco Leganés,
Miguel González-Pleiter
Francisco Leganés,
Francisco Leganés,
Roberto Rosal,
Gerardo Pulido‐Reyes,
Francisco Leganés,
Francisco Leganés,
Francisca Fernández‐Piñas,
Francisco Leganés,
Francisca Fernández‐Piñas,
Francisca Fernández‐Piñas,
Francisca Fernández‐Piñas,
Francisco Leganés,
Roberto Rosal,
Roberto Rosal,
Roberto Rosal,
Roberto Rosal,
Roberto Rosal,
Roberto Rosal,
Roberto Rosal,
Francisco Leganés,
Roberto Rosal,
Roberto Rosal,
Roberto Rosal,
Francisco Leganés,
Miguel González-Pleiter
Francisco Leganés,
Francisco Leganés,
Roberto Rosal,
Francisca Fernández‐Piñas,
Francisca Fernández‐Piñas,
Francisca Fernández‐Piñas,
Francisca Fernández‐Piñas,
Roberto Rosal,
Francisca Fernández‐Piñas,
Roberto Rosal,
Roberto Rosal,
Roberto Rosal,
Roberto Rosal,
Roberto Rosal,
Roberto Rosal,
Francisca Fernández‐Piñas,
Francisca Fernández‐Piñas,
Miguel González-Pleiter
Miguel González-Pleiter
Roberto Rosal,
Roberto Rosal,
Roberto Rosal,
Francisca Fernández‐Piñas,
Roberto Rosal,
Francisca Fernández‐Piñas,
Francisca Fernández‐Piñas,
Roberto Rosal,
Roberto Rosal,
Roberto Rosal,
Francisco Leganés,
Francisca Fernández‐Piñas,
Francisca Fernández‐Piñas,
Miguel González-Pleiter
Miguel González-Pleiter
Miguel González-Pleiter
Miguel González-Pleiter
Miguel González-Pleiter
Miguel González-Pleiter
Miguel González-Pleiter
Miguel González-Pleiter
Francisca Fernández‐Piñas,
Francisco Leganés,
Roberto Rosal,
Francisca Fernández‐Piñas,
Francisca Fernández‐Piñas,
Francisco Leganés,
Francisco Leganés,
Francisca Fernández‐Piñas,
Francisca Fernández‐Piñas,
Francisca Fernández‐Piñas,
Francisca Fernández‐Piñas,
Roberto Rosal,
Roberto Rosal,
Roberto Rosal,
Roberto Rosal,
Roberto Rosal,
Francisca Fernández‐Piñas,
Roberto Rosal,
Roberto Rosal,
Roberto Rosal,
Roberto Rosal,
Miguel González-Pleiter
Summary
Researchers tracked the hydrolytic degradation of polycaprolactone, a biodegradable plastic, over 132 days and identified the smallest breakdown fractions produced. They found that the degradation generated both nanoplastic-sized particles and soluble oligomers, and tested their toxicity on aquatic primary producers including algae. The study suggests that even biodegradable plastics can release potentially harmful nano-sized fragments as they break down in the environment.
Bioplastics are thought as a safe substitute of non-biodegradable polymers. However, once released in the environment, biodegradation may be very slow, and they also suffer abiotic fragmentation processes, which may give rise to different fractions of polymer sizes. We present novel data on abiotic hydrolytic degradation of polycaprolactone (PCL), tracking the presence of by-products during 132 days by combining different physicochemical techniques. During the study a considerable amount of two small size plastic fractions were found (up to ∼ 6 mg of PCL by-product/g of PCL beads after 132 days of degradation); and classified as submicron-plastics (sMPs) from 1 μm to 100 nm and nanoplastics (NPs, <100 nm) as well as oligomers. The potential toxicity of the smallest fractions, PCL by-products < 100 nm (PCL-NPs + PCL oligomers) and the PCL oligomers single fraction, was tested on two ecologically relevant aquatic primary producers: the heterocystous filamentous nitrogen-fixing cyanobacterium Anabaena sp. PCC 7120, and the unicellular cyanobacterium Synechococcus sp. PCC 7942. Upon exposure to both, single and combined fractions, Reactive Oxygen Species (ROS) overproduction, intracellular pH and metabolic activity alterations were observed in both organisms, whilst membrane potential and morphological damages were only observed upon PCL-NPs + PCL oligomers exposure. Notably both PCL by-products fractions inhibited nitrogen fixation in Anabaena, which may be clearly detrimental for the aquatic trophic chain. As conclusion, fragmentation of bioplastics may render a continuous production of secondary nanoplastics as well as oligomers that might be toxic to the surrounding biota; both PCL-NPs and PCL oligomers, but largely the nanoparticulate fraction, were harmful for the two aquatic primary producers. Efforts should be made to thoroughly understand the fragmentation of bioplastics and the toxicity of the smallest fractions resulting from that degradation.