Published February 11, 2024 | Version v3

Data for publication: "Surface activation of Hastalex by vacuum argon plasma for cytocompatibility enhancement"

  • 1. Department of Solid State Engineering, University of Chemistry and Technology Prague, 166 28 Prague, Czech Republic
  • 2. Department of Biochemistry and Microbiology, University of Chemistry and Technology Prague, 166 28 Prague, Czech Republic
  • 3. Department of Power Engineering, University of Chemistry and Technology Prague, 166 28 Prague, Czech Republic

Description

Abstract:

Here, we present surface analysis and biocompatibility evaluation of novel composite material based on graphene oxide traded as Hastalex. First, the surface morphology and elemental analysis of the pristine material were examined by atomic force and scanning electron microscopies, and by energy-dispersive and X-ray photoelectron spectroscopies, respectively. The Hastalex surface was then modified by plasma (3 and 8 W with exposure times up to 240 s), the impact of which on the material surface wettability and morphology was further evaluated. In addition, the material aging was studied at room and elevated temperatures. Significant changes in surface roughness, morphology, and area were detected at the nanometre scale after plasma exposure. An increase in oxygen content due to the plasma exposure was observed both for 3 and 8 W. The plasma treatment had an outstanding effect on the cytocompatibility of Hastalex foil treated at both input powers of 3 and 8 W. The cell number of human MRC-5 fibroblasts on Hastalex foils exposed to plasma increased significantly compared to pristine Hastalex and even to tissue culture polystyrene. The plasma exposure also affected the fibroblasts’ cell growth and shape.

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Additional details

Funding

Czech Science Foundation
Organized polymer nanopatterns constructed by replication and wrinkle formation 22-04006S
European Union
Project OP JAK EXRegmed CZ.02.01.01/00/22_008/0004562