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      Procoagulant properties of bare and highly PEGylated vinyl-modified silica nanoparticles.

      Nanomedicine (London, England)
      Coagulants, Humans, Nanoparticles, Polyethylene Glycols, Silicon Dioxide

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          Abstract

          Undesired alterations of the blood clotting balance may follow the intravascular injection of nanotherapeutics/diagnostics. Here, we tested the procoagulant activity of synthetic amorphous silica (SAS) and organically modified silica (ORMOSIL) nanoparticles (NPs) and whether a high-density polyethylene glycol coating minimizes these effects. Hageman factor- and tissue factor-dependent activation of human blood/plasma coagulation, and binding to human monocytes, endothelial cells and platelets were quantified in vitro using naked and PEGylated ORMOSIL-NPs. Their effects were compared with those of SAS-NPs, present in many industrial products, and of poly(lactic-co-glycolic acid)- and small unilamellar vesicles-NPs, already approved for use in humans. Both SAS-NPs and ORMOSIL-NPS presented a significant procoagulant activity. However, highly PEGylated ORMOSIL-NPs were particularly averse to the interaction with the soluble factors and cellular elements that may lead to intravascular blood coagulation. Stealth, highly PEGylated ORMOSIL-NPs with a poor procoagulant activity can be used as starting blocks to design hemocompatible nanomedical-devices.

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          Author and article information

          Journal
          20735224
          10.2217/nnm.10.65

          Chemistry
          Coagulants,Humans,Nanoparticles,Polyethylene Glycols,Silicon Dioxide
          Chemistry
          Coagulants, Humans, Nanoparticles, Polyethylene Glycols, Silicon Dioxide

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