Antibody phage libraries for the next generation of tumor targeting radioimmunotherapeutics

S J DeNardo1, G L DeNardo, D G DeNardo

  • 1Department of Internal Medicine, University of California Davis Medical Center, Sacramento 95816, USA.

Insights

Antibody phage libraries enable diverse single-chain antibody fragments (scFvs) for cancer radioimmunotherapy pretargeting. This research demonstrates creating novel diabody formats for improved tumor targeting and therapeutic efficacy.

Area of Science:

  • Biotechnology and Molecular Biology
  • Immunology and Cancer Research

Background:

  • Pretargeting techniques enhance radioimmunotherapy's therapeutic index for cancer.
  • Developing and comparing antibody configurations for optimal pretargeting has been challenging.
  • Antibody gene diversity and malleability offer new avenues for constructing pretargeting molecules.

Purpose of the Study:

  • To explore the potential of antibody phage libraries for generating diverse single-chain antibody fragments (scFvs).
  • To demonstrate the creation of novel diabody formats for improved tumor targeting and pretargeting applications.
  • To facilitate the comparative study and development of new radioimmunotherapy agents.

Main Methods:

  • Selection of scFvs from human naive and mouse hybridoma-derived phage antibody libraries against various antigens (TETA, DOTA, Lym-1).
  • DNA fingerprinting and sequencing to confirm scFv diversity and gene families.
  • Cloning of antibody heavy (V(H)) and light (V(L)) genes into diabody modules using a PCR primer system and pCANTAB 5E vector.
  • Expression of diabodies in Escherichia coli and purification via affinity chromatography.

Main Results:

  • Diverse scFvs were successfully selected against metal chelates (TETA, DOTA) and a tumor antigen (Lym-1).
  • DNA sequence analysis confirmed the diversity of selected anti-TETA scFvs.
  • Engineered diabodies incorporating anti-DOTA and anti-Lym-1 scFvs were constructed and expressed.

Conclusions:

  • Antibody phage libraries provide a powerful platform for generating diverse scFvs.
  • The malleability of antibody genes allows for the creation of novel, simple molecular formats like diabodies.
  • These engineered diabodies hold promise for developing advanced tumor targeting and pretargeting strategies in cancer therapy.

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