• Title of article

    Changes in silver nanoparticles exposed to human synthetic stomach fluid: Effects of particle size and surface chemistry Original Research Article

  • Author/Authors

    Samuel K. Mwilu، نويسنده , , Amro M. El Badawy، نويسنده , , Karen Bradham، نويسنده , , Clay Nelson، نويسنده , , David Thomas، نويسنده , , Kirk G. Scheckel، نويسنده , , Thabet Tolaymat، نويسنده , , Longzhou Ma، نويسنده , , Kim R. Rogers، نويسنده ,

  • Issue Information
    دوهفته نامه با شماره پیاپی سال 2013
  • Pages
    9
  • From page
    90
  • To page
    98
  • Abstract
    The significant rise in consumer products and applications utilizing the antibacterial properties of silver nanoparticles (AgNPs) has increased the possibility of human exposure. The mobility and bioavailability of AgNPs through the ingestion pathway will depend, in part, on properties such as particle size and the surface chemistries that will influence their physical and chemical reactivities during transit through the gastrointestinal tract. This study investigates the interactions between synthetic stomach fluid and AgNPs of different sizes and with different capping agents. Changes in morphology, size and chemical composition were determined during a 30 min exposure to synthetic human stomach fluid (SSF) using Absorbance Spectroscopy, High Resolution Transmission Electron and Scanning Electron Microscopy (TEM/SEM), Dynamic Light Scattering (DLS), and Nanoparticle Tracking Analysis (NTA). AgNPs exposed to SSF were found to aggregate significantly and also released ionic silver which physically associated with the particle aggregates as silver chloride. Generally, the smaller sized AgNPs (< 10 nm) showed higher rates of aggregation and physical transformation than larger particles (75 nm). Polyvinylpyrrolidone (pvp)-stabilized AgNPs prepared in house behaved differently in SSF than particles obtained from a commercial source despite having similar surface coating and size distribution characteristics.
  • Keywords
    Synthetic stomach fluid , Surface chemistry , Human exposure , Silver nanoparticles
  • Journal title
    Science of the Total Environment
  • Serial Year
    2013
  • Journal title
    Science of the Total Environment
  • Record number

    988856