• Title of article

    Interaction and enrichment of protein on cationic polysaccharide surfaces

  • Author/Authors

    Mohan، نويسنده , , Tamilselvan and Findenig، نويسنده , , Gerald and H?llbacher، نويسنده , , Stefan and Cerny، نويسنده , , Christoph and Risti?، نويسنده , , Tijana and Kargl، نويسنده , , Rupert and Spirk، نويسنده , , Stefan and Maver، نويسنده , , Uros and Stana-Kleinschek، نويسنده , , Karin and Ribitsch، نويسنده , , Volker، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2014
  • Pages
    9
  • From page
    533
  • To page
    541
  • Abstract
    In this study, the interaction of fluorescein isothiocyanate functionalized bovine serum albumin (FITC-BSA) with cellulose surfaces decorated with trimethyl chitosan (TMC) is investigated. Two types of TMC, one exhibiting a lower and one with a higher degree of cationization are used for protein adsorption. The adsorption is carried out at different pH values and concentrations of the protein solution. The amount, morphology and wettability of FITC-BSA coating on TMC/cellulose films are determined using quartz crystal microbalance with dissipation (QCM-D), atomic force microscopy, fluorescence microscopy and contact angle measurements. A lower pH and higher concentration of protein solution resulted in a greater amount of irreversibly adsorbed material owing to the reduced solubility and minimized electrostatic repulsion. A maximum adsorption of protein is observed on cellulose surfaces functionalized with TMC carrying a higher degree of cationization compared to TMC with a lower degree of cationization and pure cellulose surfaces at all applied concentrations and pH values. BSA is a commonly used model protein and is applied in this study to better understand its interaction with cationically rendered cellulose surfaces. Such knowledge is essential for creation of multifunctional polysaccharide-based biomaterials.
  • Keywords
    protein adsorption , QCM-D , AFM , Trimethyl chitosan , fluorescence microscope , Cellulose surface
  • Journal title
    Colloids and Surfaces B Biointerfaces
  • Serial Year
    2014
  • Journal title
    Colloids and Surfaces B Biointerfaces
  • Record number

    1979144