Redirected optimized cell killing (ROCK®): A highly versatile multispecific fit-for-purpose antibody platform for

Kristina Ellwanger1, Uwe Reusch1, Ivica Fucek1

  • 1a Affimed GmbH, Research Department , Heidelberg , Germany.

Mabs
|June 8, 2019
PubMed

Insights

This study introduces the ROCK® platform and its bispecific antibody AFM13, which redirects innate immune cells to target and kill cancer cells. AFM13 shows clinical promise for lymphomas with a potentially wider therapeutic window than T cell therapies.

Area of Science:

  • Immunology
  • Oncology
  • Biotechnology

Background:

  • Immune cell redirection shows promise for tumor elimination but faces challenges with existing therapies like CAR-T.
  • Current strategies often have technical hurdles or undesirable side effects, limiting their therapeutic window.

Purpose of the Study:

  • To introduce the Redirected Optimized Cell Killing (ROCK®) antibody platform for engaging innate immune cells against tumors.
  • To highlight the advantages of innate immune cell engagement and the potential of AFM13, a CD30/CD16A-specific engager.

Main Methods:

  • Development of a modular antibody platform (ROCK®) for innate immune cell engagers.
  • Engineering of bispecific antibodies, exemplified by AFM13, with specific CD16A binding domains and tailored properties.
  • Evaluation of clinical efficacy and safety profiles of AFM13 in CD30-positive lymphomas.

Main Results:

  • AFM13 demonstrates clinical efficacy in CD30-positive lymphomas.
  • AFM13 exhibits a potentially wider therapeutic window compared to T cell engaging therapies.
  • The ROCK® platform offers a modular approach to engineer innate immune cell engagers with tunable properties.

Conclusions:

  • The ROCK® platform provides a promising strategy for activating innate immunity to eliminate tumor cells.
  • AFM13 represents a first-in-class innate immune cell engager with significant therapeutic potential.
  • This approach may overcome limitations of existing immune cell redirection therapies by widening the therapeutic window.

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