Adsorption and covalent binding of fibrinogen as a method for probing the chemical composition of poly(styrene/α-tert-butoxy-ω-vinylbenzyl-polyglycidol) microsphere surfaces

Colloids Surf B Biointerfaces. 2017 Dec 1:160:438-445. doi: 10.1016/j.colsurfb.2017.09.054. Epub 2017 Sep 25.

Abstract

We investigated the distribution of polyglycidol and polystyrene on the surface of poly(styrene/α-tert-butoxy-ω-vinylbenzyl-polyglycidol) microspheres (random distribution or segregated into hydrophilic and hydrophobic patches), using fibrinogen (Fb) as a macromolecular probe. The fibrinogen was adsorbed or covalently attached to the surface of the poly(styrene-co-α-tert-butoxy-ω-vinylbenzyl-polyglycidol) (P(S/PGLy)) microspheres. The P(S/PGLy) particles were prepared by emulsion copolymerization of styrene and α-tert-butoxy-ω-vinylbenzyl-polyglycidol (PGLy) macromonomer initiated with potassium persulfate. The polymerizations yielded P(S/PGLy) particles with various surface fractions of polyglycidol, depending on the amount of added macromonomer and the addition process. In some syntheses, the entire macromonomer amount was added once at the beginning of the polymerization, while in others, the macromonomer was added gradually after the formation of particle seeds from pure polystyrene. XPS studies revealed that the fraction of polyglycidol in the interfacial layer of the microspheres was larger when the entire amount of macromonomer was added at the beginning of the polymerization than when it was added after formation of the polystyrene seeds. Studies of fibrinogen adsorption provided the first evidence of segregation of the hydrophobic (polystyrene) and hydrophilic (polyglycidol) components at the surface of the composite P(S/PGLy) microspheres into patches. The hydrophobic patches are composed mainly of polystyrene. However, they also contain a small amount of polyglycidol chains, making the adsorption of fibrinogen weaker than the adsorption onto the pure polystyrene. Studies of covalent immobilization of fibrinogen on the microspheres via 1,3,5-trichlorotriazine confirmed these findings.

Keywords: Core-shell particles; Fibrinogen adsorption; Hydrophilic/hydrophobic surface; Polyglycidol; Polymer patches; Protein covalent attachment.

MeSH terms

  • Adsorption
  • Biophysical Phenomena
  • Emulsions / chemistry
  • Fibrinogen / chemistry*
  • Fibrinogen / metabolism
  • Hydrophobic and Hydrophilic Interactions
  • Macromolecular Substances / chemistry
  • Macromolecular Substances / metabolism
  • Microscopy, Atomic Force
  • Microspheres*
  • Particle Size
  • Photoelectron Spectroscopy
  • Polymerization
  • Polystyrenes / chemistry*
  • Propylene Glycols / chemistry*
  • Protein Binding
  • Surface Properties

Substances

  • Emulsions
  • Macromolecular Substances
  • Polystyrenes
  • Propylene Glycols
  • poly(styrene-alpha-tert-butoxy-omega-vinylbenzyl-polyglycidol)
  • Fibrinogen