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Biological signalling supports biotechnology – Pulsed electric fields extract a cell-death inducing factor from Chlorella vulgaris

Damaris Krust, Christian Gusbeth, Alexander S.K. Müller, Daniel Scherer, Georg Müller, Wolfgang Frey, Peter Nick

2021Bioelectrochemistry15 citationsDOIOpen Access PDF

Abstract

Compared to mechanical extraction methods, pulsed electric field (PEF) treatment provides an energy-efficient and gentle alternative. However, the biological processes involved are poorly understood. The unicellular green microalga Chlorella vulgaris was used as model organism to investigate the effect of PEF treatment on biological cells. A viability assay using fluorescein diacetate measured by flow cytometry was established. The influence of developmental stage on viability could be shown in synchronised cultures when applying PEF treatment with very low specific energies where one part of cells undergoes cell death, and the other part stays viable after treatment. Reactive oxygen species generation after similar low-energy PEF treatment could be shown, indicating that PEFs could act as abiotic stress signal. Most importantly, a cell-death inducing factor could be extracted. A water-soluble extract derived from microalgae suspensions incubated for 24 h after PEF treatment caused the recipient microalgae to die, even though the recipient cells had not been subjected to PEF treatment directly. The working model assumes that low-energy PEF treatment induces programmed cell death in C.vulgaris while specifically releasing a cell-death inducing factor. Low-energy PEF treatment with subsequent incubation period could be a novel biotechnological strategy to extract soluble proteins and lipids in cascade process.

Topics & Concepts

Chlorella vulgarisFlow cytometryProgrammed cell deathViability assayIncubationBiologyCellCell biologyChemistryBiochemistryFood scienceBotanyApoptosisMolecular biologyAlgaeMicrobial Inactivation Methods3D Printing in Biomedical ResearchPhotoreceptor and optogenetics research
Biological signalling supports biotechnology – Pulsed electric fields extract a cell-death inducing factor from Chlorella vulgaris | Litcius