Surface characterisation reveals substrate suitability for cyanobacterial phototaxis

Abstract: Cyanobacteria respond to light stimulation, activating localised assembly of type IV pili for motility. The resulting phototactic response is highly dependent on the nature of the incoming light stimulus, and the final motility parameters depend on the surface properties. Conventionally, phototaxis studies are carried out on hydrogel surfaces, such as agarose, with surface properties that vary in time due to experimental conditions. This study considers five substrates, widely utilized in microfluidic technology, to identify the most suitable alternative for performing reliable and repeatable phototaxis assays. The surfaces are characterised via a contact angle goniometer to determine the surface energy, white light interferometry for roughness, zeta-potentials and AFM force distance curves for charge patterns, and XPS for surface composition. Cell motility assays showed 1.25 times increment on surfaces with a water contact angle of 80° compared to a reference glass surface. To prove that motility can be enhanced, polydimethylsiloxane (PDMS) surfaces were plasma treated to alter their surface wettability. The motility on the plasma-treated PDMS showed similar performance as for glass surfaces. In contrast, untreated PDMS surfaces displayed close to zero motility. We also describe the force interactions of cells with the test surfaces using DLVO (Derjaguin-Landau-Verwey-Overbeek) and XDLVO (extended DLVO) theories. The computed DLVO/XDLVO force-distance curves are compared with those obtained using atomic force microscopy. Our findings show that twitching motility on tested surfaces can be described mainly from adhesive forces and hydrophobicity/hydrophilicity surface properties

Location
Deutsche Nationalbibliothek Frankfurt am Main
Extent
Online-Ressource
Language
Englisch
Notes
Acta biomaterialia. - 155 (2023) , 386-399, ISSN: 1878-7568

Event
Veröffentlichung
(where)
Freiburg
(who)
Universität
(when)
2024
Creator
Julius, Lourdes Albina Nirupa
Matter, Lukas
Schürgers, Nils
Lützenkirchen, Johannes
Trouillet, Vanessa
Gil-Díaz, Teba
Mamleyev, Emil R.
Wilde, Annegret
Badilita, Vlad
Korvink, Jan G.

DOI
10.1016/j.actbio.2022.10.035
URN
urn:nbn:de:bsz:25-freidok-2536324
Rights
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Last update
25.03.2025, 1:55 PM CET

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Associated

Time of origin

  • 2024

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