4.5 Article

Protein Adsorption, Desorption, and Aggregation Mediated by Solid-Liquid Interfaces

期刊

JOURNAL OF PHARMACEUTICAL SCIENCES
卷 104, 期 6, 页码 1946-1959

出版社

WILEY
DOI: 10.1002/jps.24429

关键词

adsorption; desorption; neutron reflectivity; scattering; stability; protein aggregation; particle sizing

资金

  1. National Institutes of Health [R01 EB006006]
  2. National Institute of Standards and Technology [NIST 70NANB12H239]

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Adsorption of proteins to solid-fluid interfaces is often empirically found to promote formation of soluble aggregates and larger, subvisible, and visible particles, but key stages in this process are often difficult to probe directly. Aggregation mediated by adsorption to water-silicon oxide (SiOx) interfaces, akin to hydrated glass surfaces, was characterized as a function of pH and ionic strength for alpha-chymotrypsinogen (aCgn) and for a monoclonal antibody (IgG1). A flow cell permitted neutron reflectivity for protein layers adsorbed to clean SiOx surfaces, as well as after successive rinse steps. Aggregates recovered in solution after gently rinsing the surface were characterized by neutron scattering, microscopy, and fluorescence spectroscopy. IgG1 molecules oriented primarily flat against the SiOx surface, with the primary protein layer desorbed to a minimal extent, whereas a diffuse overlayer was easily rinsed off. aCgn molecules were resistant to desorption when they appeared to be unfolded at the interface, but were otherwise easily removed. For cases where strong binding occurred, protein that did desorb was a mixture of monomer and small amounts of HMW aggregates (for aCgn) or subvisible particles (for IgG1). Changes in adsorption and/or unfolding with pH indicated that electrostatic interactions were important in all cases. (c) 2015 Wiley Periodicals, Inc. and the American Pharmacists Association J Pharm Sci 104:1946-1959, 2015

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