Search Results - "Matesanz, M C"

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  1. 1

    In vitro evaluation of graphene oxide nanosheets on immune function by Feito, M.J., Vila, M., Matesanz, M.C., Linares, J., Gonçalves, G., Marques, P.A.A.P., Vallet-Regí, M., Rojo, J.M., Portolés, M.T.

    Published in Journal of colloid and interface science (15-10-2014)
    “…[Display omitted] •Macrophage/lymphocyte response to graphene oxide nanosheets (GOs) was evaluated.•GOs localized on F-actin filaments of RAW macrophages…”
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    Journal Article
  2. 2

    Response of macrophages and neural cells in contact with reduced graphene oxide microfibers by Serrano, M C, Feito, M J, González-Mayorga, A, Diez-Orejas, R, Matesanz, M C, Portolés, M T

    Published in Biomaterials science (01-11-2018)
    “…Graphene-based materials are revealing a great promise for biomedical applications and demonstrating attractiveness for neural repair. In the context of neural…”
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    Journal Article
  3. 3

    Triggering cell death by nanographene oxide mediated hyperthermia by Vila, M, Matesanz, M C, Gonçalves, G, Feito, M J, Linares, J, Marques, P A A P, Portolés, M T, Vallet-Regi, M

    Published in Nanotechnology (24-01-2014)
    “…Graphene oxide (GO) has been proposed as an hyperthermia agent for anticancer therapies due to its near-infrared (NIR) optical absorption ability which, with…”
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    Journal Article
  4. 4

    Design of tunable protein-releasing nanoapatite/hydrogel scaffolds for hard tissue engineering by Cabañas, M.V., Peña, J., Román, J., Ramírez-Santillán, C., Matesanz, M.C., Feito, M.J., Portolés, M.T., Vallet-Regí, M.

    Published in Materials chemistry and physics (15-04-2014)
    “…Hierarchically structured porous scaffolds based on nanocrystalline carbonated hydroxyapatite reinforced hydrogels (Gellan or Agarose) have been tested as…”
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    Journal Article
  5. 5

    Cell uptake survey of pegylated nanographene oxide by Vila, M, Portolés, M T, Marques, P A A P, Feito, M J, Matesanz, M C, Ramírez-Santillán, C, Gonçalves, G, Cruz, S M A, Nieto, A, Vallet-Regi, M

    Published in Nanotechnology (23-11-2012)
    “…Graphene and more specifically, nanographene oxide (GO) has been proposed as a highly efficient antitumoral therapy agent. Nevertheless, its cell uptake…”
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    Journal Article