Influence of relative binding affinity on efficacy in a panel of anti-CD3 scFv immunotoxins

J M Hexham1, D Dudas, R Hugo

  • 1Transplantation Research, Novartis Pharmaceuticals, 556 Morris Avenue, Summit, NJ 07901, USA. mark.hexham@pharma.novartis.com

Molecular Immunology
|October 31, 2001
PubMed

Insights

Immunotoxin potency is influenced by antigen binding affinity, internalization, and toxin activity. This study found a correlation between binding affinity and cell-killing potency for immunotoxins using the same toxin but different antibodies, though not when using different toxins with the same antibody.

Area of Science:

  • Biochemistry
  • Immunology
  • Molecular Biology

Background:

  • Immunotoxins combine antibody fragments with cytotoxic payloads to target specific cells.
  • The efficacy of immunotoxins depends on multiple factors, including antigen binding, internalization, and toxin activity.

Purpose of the Study:

  • To investigate the impact of antigen binding affinity on the in vitro cell-killing potency of immunotoxins.
  • To compare the potency of immunotoxins with varying antibody variable fragments and toxin domains.

Main Methods:

  • Generated and tested scFv-based immunotoxins fused to Pseudomonas aeruginosa exotoxin A (PE38) or Corynebacterium diphtheriae toxin (DT389).
  • Assessed antigen binding affinity and in vitro cell-killing potency of different immunotoxin constructs.
  • Compared N-terminal and C-terminal fusion orientations of scFv domains relative to toxin payloads.

Main Results:

  • A correlation between antigen binding affinity and cell-killing potency was observed for scFv-PE38 immunotoxins derived from different anti-CD3 antibodies, with one exception.
  • The orientation of the scFv-UCHT1 domain (N-terminal vs. C-terminal) relative to the toxin significantly impacted binding affinity and potency.
  • A divalent scFv construct showed a proportional increase in both binding activity and potency.

Conclusions:

  • Antigen binding affinity is a key determinant of immunotoxin potency when comparing constructs with the same toxin domain but different antibody fragments.
  • The relationship between affinity and potency is complex and can be influenced by toxin type and fusion orientation.
  • Further optimization of immunotoxin design requires consideration of both binding affinity and intrinsic toxin activity.