Search Results - "Kasálková, N."

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  1. 1

    Biocompatibility of plasma nanostructured biopolymers by Slepičková Kasálková, N., Slepička, P., Bačáková, L., Sajdl, P., Švorčík, V.

    “…Many areas of medicine such as tissue engineering requires not only mastery of modification techniques but also thorough knowledge of the interaction of cells…”
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    Journal Article
  2. 2

    Carbon coatings on polymers and their biocompatibility by Hubáček, T., Siegel, J., Khalili, R., Slepičková-Kasálková, N., Švorčík, V.

    Published in Applied surface science (15-06-2013)
    “…► Surface properties of PTFE and PET were modified by flash evaporation of C-layers. ► Adhesion and proliferation of vascular smooth muscle cells were studied…”
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    Journal Article Conference Proceeding
  3. 3

    Plasma-modified and polyethylene glycol-grafted polymers for potential tissue engineering applications by Svorcík, V, Makajová, Z, Kasálková-Slepicková, N, Kolská, Z, Bacáková, L

    Published in Journal of nanoscience and nanotechnology (01-08-2012)
    “…Modified and grafted polymers may serve as building blocks for creating artificial bioinspired nanostructured surfaces for tissue engineering. Polyethylene…”
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    Journal Article
  4. 4

    Growth of muscle cells on plasma-treated and gold nanoparticles-grafted polytetrafluoroethylene by Řezníčková, A., Makajová, Z., Slepičková Kasálková, N., Kolská, Z., Bačáková, L., Švorčík, V.

    Published in Iranian polymer journal (01-03-2014)
    “…Polytetrafluoroethylene (PTFE) was modified by Ar plasma with different exposure times. The plasma-activated surface was immersed in biphenyldithiol and…”
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    Journal Article
  5. 5

    Surface characterization of plasma treated polymers for applications as biocompatible carriers by Slepicka, P., Slepickova Kasalkova, N., Stranska, E., Bacakova, L., Svorcik, V.

    Published in Express polymer letters (01-06-2013)
    “…The objective of this work was to determine surface properties of polymer surfaces after plasma treatment with the aim of further cytocompatibility tests…”
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    Journal Article
  6. 6

    Regular pattern formation on surface of aromatic polymers and its cytocompatibility by Michaljanicova, I, Slepicka, P, Rimpelova, S, Slepickova Kasalkova, N, Svorcik, V

    Published in Applied surface science (01-05-2016)
    “…[Display omitted] •The nanopatterning technique of PES, PEI and PEEK with KrF laser was described.•Both nanodots and ripples on aromatic polymers were…”
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    Journal Article
  7. 7

    Carbon-gold nanocomposite induced by unique high energy laser single-shot annealing by Slepička, P., Hurtuková, K., Fajstavr, D., Slepičková Kasálková, N., Lyutakov, O., Švorčík, V.

    Published in Materials letters (15-10-2021)
    “…[Display omitted] In this article, we present an application of single shot technique realized with high energy excimer laser on gold-carbon nanolayer…”
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    Journal Article
  8. 8

    Plasma induced cytocompatibility of stabilized poly-L-lactic acid doped with graphene nanoplatelets by Slepička, P., Slepičková Kasálková, N., Pinkner, A., Sajdl, P., Kolská, Z., Švorčík, V.

    Published in Reactive & functional polymers (01-10-2018)
    “…The process of preparation, optimization and volume doping of thin poly-L-lactide acid foils is described in this paper. The goal of the doping is to improve…”
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    Journal Article
  9. 9

    Cytocompatibility of polymers grafted by activated carbon nano-particles by Švorčík, V., Makajová, Z., Slepičková Kasálková, N., Kolská, Z., Žáková, P., Karpíšková, J., Stibor, I., Slepička, P.

    Published in Carbon (New York) (01-04-2014)
    “…Carbon nano-structures find their application in bio-medicine. In this work we functionalized carbon nano-particles (CNPs) with nitrogen (amine) groups. The…”
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    Journal Article
  10. 10

    Poly-l-lactic acid modified by etching and grafting with gold nanoparticles by Slepička, P., Michaljaničová, I., Slepičková Kasálková, N., Kolská, Z., Rimpelová, S., Ruml, T., Švorčík, V.

    Published in Journal of materials science (01-09-2013)
    “…This work is focused on characterization of plasma treated and consequently etched and grafted biocompatible polymer poly( l -lactide acid) (PLLA). The…”
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    Journal Article
  11. 11
  12. 12

    Plasma treatment of the surface of poly(hydroxybutyrate) foil and non-woven fabric and assessment of the biological properties by Slepicka, P, Mala, Z, Rimpelova, S, Kasalkova, N Slepickova, Svorcik, V

    Published in Reactive & functional polymers (01-10-2015)
    “…This paper deals with the poly(hydroxybutyrate) (PHB, foil and fabric) surface modification, characterization and the view of its possible application. The…”
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    Journal Article
  13. 13

    Antibacterial properties of angle-dependent nanopatterns on polystyrene by Neděla, O., Slepička, P., Slepickova Kasalkova, N., Sajdl, P., Kolská, Z., Rimpelová, S., Švorčík, V.

    Published in Reactive & functional polymers (01-03-2019)
    “…Surface modification of polystyrene by a KrF pulse excimer UV laser under the angles of incidence of the laser beam of 0, 22.5 and 45° was proposed in this…”
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    Journal Article
  14. 14

    Cytocompatibility of polyhydroxybutyrate modified by plasma discharge by SLEPICKA, P, STYBLOVA, S, SLEPICKOVA KASALKOVA, N, RIMPELOVA, S, SVORCIK, V

    Published in Polymer engineering and science (01-06-2014)
    “…Properties of pristine and Ar plasma‐treated polyhydroxybutyrate (PHB) was studied by different methods as a function of the plasma discharge power and the…”
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    Journal Article
  15. 15

    Surface changes of biopolymers PHB and PLLA induced by Ar+ plasma treatment and wet etching by Slepičková Kasálková, N., Slepička, P., Sajdl, P., Švorčík, V.

    “…Polymers, especially group of biopolymers find potential application in a wide range of disciplines due to their biodegradability. In biomedical applications…”
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    Journal Article
  16. 16

    Plasma activated perfluoroethylenepropylene for cytocompatibility enhancement by Slepička, P., Peterková, L., Rimpelová, S., Pinkner, A., Slepičková Kasálková, N., Kolská, Z., Ruml, T., Švorčík, V.

    Published in Polymer degradation and stability (01-08-2016)
    “…The paper is focused on perfluoroethylenepropylene (FEP) plasma activation and cytocompatibility enhancement. Our main focus was on enhancement of one side of…”
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    Journal Article
  17. 17

    Cell Adhesion and Proliferation on Plasma-Treated and Poly(ethylene glycol)-Grafted Polyethylene by Kasálková, N., Makajová, Z., Pařízek, M., Slepička, P., Kolářová, K., Bačáková, L., Hnatowicz, V., Švorčík, V.

    Published in Journal of adhesion science and technology (01-01-2010)
    “…Polyethylene (PE) was modified by an Ar plasma. The plasma-activated PE surface was grafted with poly(ethylene glycol) (PEG, molecular weight 300 and 20 000)…”
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    Journal Article
  18. 18

    Functionalized polyethylene naphthalate for cytocompatibility improvement by Neděla, O., Slepička, P., Kolská, Z., Slepičková Kasálková, N., Sajdl, P., Veselý, M., Švorčík, V.

    Published in Reactive & functional polymers (01-03-2016)
    “…This work is focused on the characterization of functionalized polyethylene naphthalate (PEN) with Ar plasma treatment. The changes of the surface contact…”
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    Journal Article
  19. 19

    Plasma and laser treatment of PMP for biocompatibility improvement by Michaljaničová, I., Slepička, P., Slepičková Kasálková, N., Sajdl, P., Švorčík, V.

    Published in Vacuum (01-09-2014)
    “…This paper is focused on characterization of surface properties of PMP (poly-4-methyl-1-pentene) after the modification of its upper layer. PMP is a…”
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    Journal Article
  20. 20

    Cell adhesion and proliferation on polyethylene grafted with Au nanoparticles by Kasálková, N. Slepičková, Slepička, P., Kolská, Z., Sajdl, P., Bačáková, L., Rimpelová, S., Švorčík, V.

    “…Plasma treatment and subsequent Au nano-particles grafting of polyethylene (PE) lead to changes in surface morphology, roughness and wettability, significantly…”
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    Journal Article