Počet záznamů: 1  

Magnetic poly(.epsilon.-caprolactone)-based nanocomposite membranes for bone cell engineering

  1. 1.
    0562259 - ÚMCH 2023 RIV NL eng J - Článek v odborném periodiku
    Swietek, Malgorzata Anna - Brož, Antonín - Kolodziej, A. - Hodan, Jiří - Tokarz, W. - Hlukhaniuk, Anna - Weselucha-Birczynska, A. - Bačáková, Lucie - Horák, Daniel
    Magnetic poly(.epsilon.-caprolactone)-based nanocomposite membranes for bone cell engineering.
    Journal of Magnetism and Magnetic Materials. Roč. 563, 1 December (2022), č. článku 169967. ISSN 0304-8853. E-ISSN 1873-4766
    Grant CEP: GA ČR(CZ) GA20-07015S
    Institucionální podpora: RVO:61389013 ; RVO:67985823
    Klíčová slova: magnetic nanoparticles * poly(ε-caprolactone) * composite
    Obor OECD: Polymer science; Cell biology (FGU-C)
    Impakt faktor: 2.7, rok: 2022
    Způsob publikování: Omezený přístup
    https://www.sciencedirect.com/science/article/pii/S0304885322008526?via%3Dihub

    Magnetic polymer nanocomposites manipulatable by an external magnetic field have a great potential for bone tissue regeneration. Various strategies have been proposed for their fabrication, as uniform distribution of magnetic nanoparticles (MNPs) within the polymer matrix remains to be the main challenge. The aim of this study was to design poly(ε-caprolactone) (PCL) matrix containing iron oxide nanoparticles stabilized by saturated fatty acids with the increasing number of carbon atoms, i.e., caprylic (CA), palmitic (PA), and stearic acids (SA). We investigated the effect of the type of fatty acid and the content of particles in nanocomposite membranes on their physicochemical properties and biological response toward the SAOS-2 cells. The incorporation of the MNPs in PCL matrix resulted in a gradual increase of Young’s modulus, a slight decrease of tensile strength, and a significant decrease of stress and strain at break. The addition of SA-stabilized MNPs (1 wt%) in the PCL matrix increased its strength. The membranes containing CA-stabilized MNPs remained non-toxic towards SAOS-2 cells, while the cytotoxicity of other nanocomposites increased with the enhanced length of carbon chains of fatty acids stabilizing MNPs, as well as with their increasing content in membranes.
    Trvalý link: https://hdl.handle.net/11104/0334625

     
     
Počet záznamů: 1  

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