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Femtosecond laser multi-patterning of zirconia for screening of cell-surface interactions
Authors:Ana-Maria Stanciuc  Quentin Flamant  Christoph Martin Sprecher  Mauro Alini  Marc Anglada  Marianna Peroglio
Affiliation:1. AO Research Institute Davos, Clavadelerstrasse 8, 7270 Davos Platz, Switzerland;2. Université de Lyon, INSA-Lyon, MATEIS UMR 5510, Villeurbanne Cedex, France;3. Universitat Politècnica de Catalunya, Campus Diagonal Besòs–Edif. DBI, CIEFMA, Av. d’Eduard Maristany, 10-14, 08019 Barcelona, Spain;4. Universitat Politècnica de Catalunya, Campus Diagonal Besòs–Edif. DBC, Research Center in Multiscale Science and Engineering, Av. d’Eduard Maristany, 10-14, 08019 Barcelona, Spain
Abstract:Yttria-stabilised tetragonal zirconia polycrystals (3Y-TZP) bioinert ceramics combine excellent strength and toughness, good aesthetics, high resistance to corrosion and absence of allergic reaction. However, improved osseointegration is needed as higher marginal bone loss was sometimes reported. In the present work, 3Y-TZP multi-patterned samples for rapid screening of cell-surface interactions were fabricated by femtosecond laser micromachining. Pits with well-defined edges and micrometric precision in pit diameter, depth and spacing were produced, as determined by white light interferometry. Pits showed a nanometric granular texture on the sidewalls and ripples at pit bottom, as attested by scanning electron microscopy. Focused ion beam analyses indicated limited laser-induced damage. Micropatterns impacted human mesenchymal stem cell (hMSC) size and morphology. Cell area and aspect ratio were mainly influenced by pit diameter, while solidity and circularity were affected by both pit diameter and depth. The pattern 30 μm diameter/10 μm depth induced the strongest osteoblastic hMSC commitment.
Keywords:hMSC  Human Mesenchymal Stem Cells  FIB  Focused Ion Beam  FC  large flat cells  RS  spindle shaped rapid self-renewing cells  LTD  low temperature degradation  SEM  Scanning Electron Microscopy  WLI  white light interferometry  3Y-TZP  Zirconia  Laser  Surface  Topography  Pattern  Human Mesenchymal Stem Cells
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