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Laser Direct Writing via Two-Photon Polymerization of 3D Hierarchical Structures with Cells-Antiadhesive Properties

We report the design and fabrication by laser direct writing via two photons polymerization of innovative hierarchical structures with cell-repellency capability. The structures were designed in the shape of “mushrooms”, consisting of an underside (mushroom’s leg) acting as a support structure and a...

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Autores principales: Paun, Irina A., Calin, Bogdan S., Mustaciosu, Cosmin C., Tanasa, Eugenia, Moldovan, Antoniu, Niemczyk, Agata, Dinescu, Maria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8198338/
https://www.ncbi.nlm.nih.gov/pubmed/34073424
http://dx.doi.org/10.3390/ijms22115653
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author Paun, Irina A.
Calin, Bogdan S.
Mustaciosu, Cosmin C.
Tanasa, Eugenia
Moldovan, Antoniu
Niemczyk, Agata
Dinescu, Maria
author_facet Paun, Irina A.
Calin, Bogdan S.
Mustaciosu, Cosmin C.
Tanasa, Eugenia
Moldovan, Antoniu
Niemczyk, Agata
Dinescu, Maria
author_sort Paun, Irina A.
collection PubMed
description We report the design and fabrication by laser direct writing via two photons polymerization of innovative hierarchical structures with cell-repellency capability. The structures were designed in the shape of “mushrooms”, consisting of an underside (mushroom’s leg) acting as a support structure and a top side (mushroom’s hat) decorated with micro- and nanostructures. A ripple-like pattern was created on top of the mushrooms, over length scales ranging from several µm (microstructured mushroom-like pillars, MMP) to tens of nm (nanostructured mushroom-like pillars, NMP). The MMP and NMP structures were hydrophobic, with contact angles of (127 ± 2)° and (128 ± 4)°, respectively, whereas flat polymer surfaces were hydrophilic, with a contact angle of (43 ± 1)°. The cell attachment on NMP structures was reduced by 55% as compared to the controls, whereas for the MMP, a reduction of only 21% was observed. Moreover, the MMP structures preserved the native spindle-like with phyllopodia cellular shape, whereas the cells from NMP structures showed a round shape and absence of phyllopodia. Overall, the NMP structures were more effective in impeding the cellular attachment and affected the cell shape to a greater extent than the MMP structures. The influence of the wettability on cell adhesion and shape was less important, the cellular behavior being mainly governed by structures’ topography.
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spelling pubmed-81983382021-06-14 Laser Direct Writing via Two-Photon Polymerization of 3D Hierarchical Structures with Cells-Antiadhesive Properties Paun, Irina A. Calin, Bogdan S. Mustaciosu, Cosmin C. Tanasa, Eugenia Moldovan, Antoniu Niemczyk, Agata Dinescu, Maria Int J Mol Sci Article We report the design and fabrication by laser direct writing via two photons polymerization of innovative hierarchical structures with cell-repellency capability. The structures were designed in the shape of “mushrooms”, consisting of an underside (mushroom’s leg) acting as a support structure and a top side (mushroom’s hat) decorated with micro- and nanostructures. A ripple-like pattern was created on top of the mushrooms, over length scales ranging from several µm (microstructured mushroom-like pillars, MMP) to tens of nm (nanostructured mushroom-like pillars, NMP). The MMP and NMP structures were hydrophobic, with contact angles of (127 ± 2)° and (128 ± 4)°, respectively, whereas flat polymer surfaces were hydrophilic, with a contact angle of (43 ± 1)°. The cell attachment on NMP structures was reduced by 55% as compared to the controls, whereas for the MMP, a reduction of only 21% was observed. Moreover, the MMP structures preserved the native spindle-like with phyllopodia cellular shape, whereas the cells from NMP structures showed a round shape and absence of phyllopodia. Overall, the NMP structures were more effective in impeding the cellular attachment and affected the cell shape to a greater extent than the MMP structures. The influence of the wettability on cell adhesion and shape was less important, the cellular behavior being mainly governed by structures’ topography. MDPI 2021-05-26 /pmc/articles/PMC8198338/ /pubmed/34073424 http://dx.doi.org/10.3390/ijms22115653 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Paun, Irina A.
Calin, Bogdan S.
Mustaciosu, Cosmin C.
Tanasa, Eugenia
Moldovan, Antoniu
Niemczyk, Agata
Dinescu, Maria
Laser Direct Writing via Two-Photon Polymerization of 3D Hierarchical Structures with Cells-Antiadhesive Properties
title Laser Direct Writing via Two-Photon Polymerization of 3D Hierarchical Structures with Cells-Antiadhesive Properties
title_full Laser Direct Writing via Two-Photon Polymerization of 3D Hierarchical Structures with Cells-Antiadhesive Properties
title_fullStr Laser Direct Writing via Two-Photon Polymerization of 3D Hierarchical Structures with Cells-Antiadhesive Properties
title_full_unstemmed Laser Direct Writing via Two-Photon Polymerization of 3D Hierarchical Structures with Cells-Antiadhesive Properties
title_short Laser Direct Writing via Two-Photon Polymerization of 3D Hierarchical Structures with Cells-Antiadhesive Properties
title_sort laser direct writing via two-photon polymerization of 3d hierarchical structures with cells-antiadhesive properties
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8198338/
https://www.ncbi.nlm.nih.gov/pubmed/34073424
http://dx.doi.org/10.3390/ijms22115653
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