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Updated: Jan 23, 2026

A Versatile Automated Platform for Micro-scale Cell Stimulation Experiments
Published on: August 6, 2013
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.
Abstract:
Redirection of immune cells to efficiently eliminate tumor cells holds great promise. Natural killer cells (NK), macrophages, or T cells are specifically engaged with target cells expressing markers after infection or neoplastic transformation, resulting in their activation and subsequent killing of those targets. Multiple strategies to redirect immunity have been developed in the past two decades, but they have technical hurdles or cause undesirable side-effects, as exemplified by the T cell-based chimeric antigen receptor approaches (CAR-T therapies) or bispecific T cell engager platforms. Our first-in-class bispecific antibody redirecting innate immune cells to tumors (AFM13, a CD30/CD16A-specific innate immune cell engager) has shown signs of clinical efficacy in CD30-positive lymphomas and the potential to be safely administered, indicating a wider therapeutic window compared to T cell engaging therapies. AFM13 is the most advanced candidate from our fit-for-purpose redirected optimized cell killing (ROCK®) antibody platform, which comprises a plethora of CD16A-binding innate immune cell engagers with unique properties. Here, we discuss aspects of this modular platform, including the advantages of innate immune cell engagement over classical monoclonal antibodies and other engager concepts. We also present details on its potential to engineer a fit-for-purpose innate immune cell engager format that can be equipped with unique CD16A domains, modules that influence pharmacokinetic properties and molecular architectures that influence the activation of immune effectors, as well as tumor targeting. The ROCK® platform is aimed at the activation of innate immunity for the effective lysis of tumor cells and holds the promise of overcoming limitations of other approaches that redirect immune cells by widening the therapeutic window.
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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