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Analyzing Tumor and Tissue Distribution of Target Antigen Specific Therapeutic Antibody
Published on: May 16, 2020
Characterization of a surrogate murine antibody to model anti-human CD3 therapies
Fabien Dépis1, Eric Hatterer, Romain Ballet
1NovImmune SA, Plan-Les-Ouates, Switzerland.
Abstract:
Fc-modified anti-human CD3ε monoclonal antibodies (mAbs) are in clinical development for the treatment of autoimmune diseases. These next generation mAbs have completed clinical trials in patients with type-1 diabetes and inflammatory bowel disease demonstrating a narrow therapeutic window. Lowered doses are ineffective, yet higher pharmacologically-active doses cause an undesirable level of adverse events. Thus, there is a critical need for a return to bench research to explore ways of improving clinical outcomes. Indeed, we recently reported that a short course of treatment affords synergy, providing long-term disease amelioration when combining anti-mouse CD3 and anti-mouse tumor necrosis factor mAbs in experimental arthritis. Such strategies may widen the window between risk and benefit; however, to more accurately assess experimentally the biology and pharmacology, reagents that mimic the current development candidates were required. Consequently, we engineered an Fc-modified anti-mouse CD3ε mAb, 2C11-Novi. Here, we report the functional characterization of 2C11-Novi demonstrating that it does not bind FcγR in vitro and elicits little cytokine release in vivo, while maintaining classical pharmacodynamic effects (CD3-TCR downregulation and T cell killing). Furthermore, we observed that oral administration of 2C11-Novi ameliorated progression of remitting-relapsing experimental autoimmune encephalitis in mice, significantly reducing the primary acute and subsequent relapse phase of the disease. With innovative approaches validated in two experimental models of human disease, 2C11-Novi represents a meaningful tool to conduct further mechanistic studies aiming at exploiting the immunoregulatory properties of Fc-modified anti-CD3 therapies via combination therapy using parenteral or oral routes of administration.
Insights
Engineered Fc-modified anti-mouse CD3ε mAb, 2C11-Novi, shows promise for autoimmune disease treatment. This novel reagent maintains therapeutic effects while reducing adverse events, potentially widening the therapeutic window for combination therapies.
Area of Science:
- Immunology
- Pharmacology
- Autoimmune Disease Research
Background:
- Fc-modified anti-human CD3ε monoclonal antibodies (mAbs) are under clinical investigation for autoimmune diseases.
- Current therapies exhibit a narrow therapeutic window, with low doses being ineffective and high doses causing adverse events.
- There is a need for improved reagents to study and enhance clinical outcomes of these immunotherapies.
Purpose of the Study:
- To engineer and functionally characterize an Fc-modified anti-mouse CD3ε mAb (2C11-Novi) that mimics clinical development candidates.
- To assess the in vitro and in vivo properties of 2C11-Novi, including FcγR binding, cytokine release, and pharmacodynamic effects.
- To evaluate the therapeutic efficacy of 2C11-Novi in experimental models of autoimmune diseases.
Main Methods:
- Engineering of an Fc-modified anti-mouse CD3ε mAb, 2C11-Novi.
- In vitro assessment of FcγR binding and cytokine release.
- In vivo pharmacodynamic studies including CD3-TCR downregulation and T cell killing.
- Administration of 2C11-Novi in a mouse model of experimental autoimmune encephalitis (EAE).
Main Results:
- 2C11-Novi demonstrated no FcγR binding in vitro and minimal cytokine release in vivo.
- The mAb retained classical pharmacodynamic effects, such as CD3-TCR downregulation and T cell killing.
- Oral administration of 2C11-Novi significantly ameliorated the progression of experimental autoimmune encephalitis, including acute and relapse phases.
Conclusions:
- 2C11-Novi is a valuable tool for studying Fc-modified anti-CD3 therapies.
- This engineered mAb maintains therapeutic efficacy while reducing adverse effects, suggesting a wider therapeutic window.
- The findings support further investigation of combination therapies using parenteral or oral administration of anti-CD3 mAbs for autoimmune diseases.

