Fouling of virus filtration membranes by monoclonal antibody feeds with low aggregate content

Yair Kaufman1, K C Hunt1, Gabriel Hale1

  • 1TeraPore Technologies, South San Francisco, California, USA.

Insights

Monoclonal antibody (mAb) membrane fouling in virus filtration is primarily driven by hydrophobic interactions, not just aggregates. Understanding these forces can help engineer better filtration membranes.

Area of Science:

  • Biotechnology
  • Chemical Engineering
  • Materials Science

Background:

  • Membrane fouling by monoclonal antibodies (mAbs) significantly challenges virus-filtration efficiency.
  • While mAb aggregates were thought to cause fouling, some mAbs foul membranes severely even after aggregate removal.

Purpose of the Study:

  • To investigate the underlying mechanisms of severe membrane fouling by specific monoclonal antibodies (mAbs).
  • To elucidate the roles of mAb hydrophobicity and charge in fouling chemically modified Isoprene-Styrene-4-vinylpyridine (ISV) membranes.

Main Methods:

  • Studied fouling of Isoprene-Styrene-4-vinylpyridine (ISV) membranes using eight different monoclonal antibodies (mAbs).
  • Analyzed the impact of mAb hydrophobicity and charge on membrane fouling and permeability reduction.

Main Results:

  • Monoclonal antibody (mAb) solutions with low aggregate concentrations foul ISV membranes through adsorption.
  • Hydrophobic interactions between mAbs and the ISV membrane surface are the primary drivers of fouling.
  • mAb charge plays a secondary role in the observed membrane fouling.

Conclusions:

  • Membrane fouling by mAbs on ISV membranes is mainly an adsorptive process driven by hydrophobicity.
  • These findings offer insights for developing new surface chemistries to mitigate fouling in virus-filtration and ultrafiltration membranes.