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Browsing Publikasjoner fra CRIStin by Subject "nanomedicine"

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    • Asymmetric-flow field-flow fractionation for measuring particle size, drug loading and (in)stability of nanopharmaceuticals. The joint view of European Union Nanomedicine Characterization Laboratory and National Cancer Institute - Nanotechnology Characterization Laboratory 

      Caputo, Fanny; Mehn, Dora; Clogston, Jeffrey; Rösslein, Matthias; Prina-Mello, Adriele; Borgos, Sven Even F.; Gioria, Sabrina; Calzolai, Luigi (Peer reviewed; Journal article, 2020)
      Asymmetric-flow field-flow fractionation (AF4) has been recognized as an invaluable tool for the characterisation of particle size, polydispersity, drug loading and stability of nanopharmaceuticals. However, the application ...
    • Asymmetric-flow field-flow fractionation for measuring particle size, drug loading and (in)stability of nanopharmaceuticals. The joint view of European Union Nanomedicine Characterization Laboratory and National Cancer Institute - Nanotechnology Characterization Laboratory 

      Caputo, Fanny; Mehn, Dora; Clogston, Jeffrey; Rösslein, Matthias; Prina-Mello, Adriele; Borgos, Sven Even F.; Gioria, Sabrina; Calzolai, Luigi (Peer reviewed; Journal article, 2021)
      Asymmetric-flow field-flow fractionation (AF4) has been recognized as an invaluable tool for the characterisation of particle size, polydispersity, drug loading and stability of nanopharmaceuticals. However, the application ...
    • Sonoporation using nanoparticle-loaded microbubbles increases cellular uptake of nanoparticles compared to co-incubation of nanoparticles and microbubbles 

      Snipstad, Sofie; Hanstad, Sigurd; Bjørkøy, Astrid; Mørch, Ýrr Asbjørg; Davies, Catharina de Lange (Peer reviewed; Journal article, 2021)
      Therapeutic agents can benefit from encapsulation in nanoparticles, due to improved pharmacokinetics and biodistribution, protection from degradation, increased cellular uptake and sustained release. Microbubbles in ...

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