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Microplastic ingestion induces changes in coelomocyte composition of Eisenia fetida

Title data

Fritsche, Johanna ; Döring, Max V. R. ; Mauel, Anika ; Senker, Jürgen ; Feldhaar, Heike ; Freitag, Ruth ; Jérôme, Valérie:
Microplastic ingestion induces changes in coelomocyte composition of Eisenia fetida.
EcoEvoRixv , 2026
DOI: https://doi.org/10.32942/X2FT19

Official URL: Volltext

Project information

Project title:
Project's official title
Project's id
SFB 1357: MIKROPLASTIK – Gesetzmäßigkeiten der Bildung, des Transports, des physikalisch-chemischen Verhaltens sowie der biologischen Effekte: Von Modell- zu komplexen Systemen als Grundlage neuer Lösungsansätze
391977956

Project financing: Deutsche Forschungsgemeinschaft

Abstract in another language

The earthworm Eisenia fetida is a widely used model organism for environmental toxicity assessment, including microplastic particles (MPP). Impacts of MPP at the organismic level have been extensively documented. Effects on the cellular level and in particular the immune system of E. fetida are less well understood. Here we exposed earthworms outside soil for six days to food pellets containing 10% (w/w) pure polystyrene (PS) MPP (25 – 75 µm) or PS MPP supplemented with 0.5% (w/w) of the antioxidant Irgafos (PSIrgafos). Immune cells (coelomocytes) were isolated from E. fetida using a non-invasive extrusion method, and their number, viability, and subpopulation distribution (amoebocytes and eleocytes) were assessed by flow cytometry.
Husbandry outside soil was found to generally increase propensity for apoptosis in particular of amoebocytes with little difference between experimental setups. The total number of extruded cells was not affected by MPP, while coelomocyte viability was significantly reduced. PSIrgafos ingestion further decreased the number of living cells per mg fresh weight. Ex vivo analysis of coelomocyte viability confirmed an enhanced toxicity of PSIrgafos compared to PS. Our findings show that MPP and their additives cause physiological changes and alter immune cell distribution, posing potential risks to soil invertebrates.

Further data

Item Type: Preprint, postprint
Keywords: Annelida; Polystyrene; Irgafos; Additive; Coelomocytes; Flow Cytometer
Institutions of the University: Faculties > Faculty of Biology, Chemistry and Earth Sciences > Department of Biology > Professor Animal Population Ecology > Professor Animal Population Ecology - Univ.-Prof. Dr. Heike Feldhaar
Faculties > Faculty of Biology, Chemistry and Earth Sciences > Department of Chemistry > Chair Inorganic Chemistry III > Chair Inorganic Chemistry III - Univ.-Prof. Dr. Jürgen Senker
Faculties > Faculty of Engineering Science > Chair Process Biotechnology > Chair Process Biotechnology - Univ.-Prof. Dr. Ruth Freitag
Research Institutions > Central research institutes > Bayreuth Center for Molecular Biosciences - BZMB
Research Institutions > Central research institutes > Bayreuth Center of Ecology and Environmental Research- BayCEER
Research Institutions > Central research institutes > Nordbayerisches Zentrum für NMR-Spektroskopie - NMR-Zentrum
Research Institutions > Collaborative Research Centers, Research Unit > SFB 1357 - MIKROPLASTIK
Result of work at the UBT: Yes
DDC Subjects: 500 Science > 570 Life sciences, biology
500 Science > 590 Animals (Zoology)
Date Deposited: 08 Jun 2026 05:03
Last Modified: 08 Jun 2026 11:14
URI: https://eref.uni-bayreuth.de/id/eprint/97869