• Title of article

    Adsorption of Candida rugosa lipase at water-polymer interface: The case of poly(dl)lactide

  • Author/Authors

    Kamel، نويسنده , , Gihan and Bordi، نويسنده , , Federico and Chronopoulou، نويسنده , , Laura and Lupi، نويسنده , , Stefano and Palocci، نويسنده , , Cleofe and Sennato، نويسنده , , Simona and Verdes، نويسنده , , Pedro V.، نويسنده ,

  • Issue Information
    هفته نامه با شماره پیاپی سال 2011
  • Pages
    8
  • From page
    2017
  • To page
    2024
  • Abstract
    Insights into the interactions between biological macromolecules and polymeric surfaces are of great interest because of potential uses in developing biotechnologies. In this study we focused on the adsorption of a model lipolytic enzyme, Candida rugosa lipase (CRL), on poly-(d,l)-lactic acid (PDLLA) polymer with the aim to gain deeper insights into the interactions between the enzyme and the carrier. Such studies are of particular relevance in order to establish the optimal conditions for enzyme immobilization and its applications. We employed two different approaches; by analyzing the influence of adsorbed CRL molecules on the thermodynamic behavior of Langmuir films of PDLLA deposited at air–water interface, we gained interesting information on the molecular interactions between the protein and the polymer. Successively, by a systematic analysis of the adsorption of CRL on PDLLA nanoparticles, we showed that the adsorption of a model lipase, CRL, on PDLLA is described in terms of a Langmuir-type adsorption behavior. In this model, only monomolecular adsorption takes place (i.e. only a single layer of the protein adsorbs on the support) and the interactions between adsorbed molecules and surface are short ranged. Moreover, both the adsorption and desorption are activated processes, and the heat of adsorption (the difference between the activation energy for adsorption and desorption) is independent from the surface coverage of the adsorbing species. Finally, we obtained an estimate of the number of molecules of the protein adsorbed per surface unit on the particles, a parameter of a practical relevance for applications in biocatalysis, and a semi-quantitative estimate of the energies (heat of adsorption) involved in the adsorption process.
  • Keywords
    protein adsorption , Nanostructured polymers , Langmuir films
  • Journal title
    Surface Science
  • Serial Year
    2011
  • Journal title
    Surface Science
  • Record number

    1686219