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Updated: Jun 23, 2025

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Published on: December 26, 2017
NOD2 activation enhances macrophage Fcγ receptor function and may increase the efficacy of antibody therapy
Giovanna Merchand-Reyes1, Mikayla F Bull2, Ramasamy Santhanam1
1Division of Hematology, Department of Internal Medicine, College of Medicine, The Ohio State University, Columbus, OH, United States.
Introduction:
Therapeutic antibodies have become a major strategy to treat oncologic diseases. For chronic lymphocytic leukemia, antibodies against CD20 are used to target and elicit cytotoxic responses against malignant B cells. However, efficacy is often compromised due to a suppressive microenvironment that interferes with cellular immune responses. To overcome this suppression, agonists of pattern recognition receptors have been studied which promote direct cytotoxicity or elicit anti-tumoral immune responses. NOD2 is an intracellular pattern recognition receptor that participates in the detection of peptidoglycan, a key component of bacterial cell walls. This detection then mediates the activation of multiple signaling pathways in myeloid cells. Although several NOD2 agonists are being used worldwide, the potential benefit of these agents in the context of antibody therapy has not been explored.
Methods:
Primary cells from healthy-donor volunteers (PBMCs, monocytes) or CLL patients (monocytes) were treated with versus without the NOD2 agonist L18-MDP, then antibody-mediated responses were assessed. In vivo, the Eµ-TCL1 mouse model of CLL was used to test the effects of L18-MDP treatment alone and in combination with anti-CD20 antibody.
Results:
Treatment of peripheral blood mononuclear cells with L18-MDP led to activation of monocytes from both healthy donors and CLL patients. In addition, there was an upregulation of activating FcγR in monocytes and a subsequent increase in antibody-mediated phagocytosis. This effect required the NF-κB and p38 signaling pathways. Treatment with L18-MDP plus anti-CD20 antibody in the Eµ-TCL model of CLL led to a significant reduction of CLL load, as well as to phenotypic changes in splenic monocytes and macrophages.
Conclusions:
Taken together, these results suggest that NOD2 agonists help overturn the suppression of myeloid cells, and may improve the efficacy of antibody therapy for CLL.
Insights
NOD2 agonists, like L18-MDP, activate myeloid cells and enhance anti-CD20 antibody therapy for chronic lymphocytic leukemia (CLL). This combination therapy significantly reduces CLL tumor burden in mice.
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- Therapeutic antibodies are crucial for treating cancers like chronic lymphocytic leukemia (CLL).
- The efficacy of anti-CD20 antibodies in CLL is often limited by a suppressive tumor microenvironment.
- Pattern recognition receptor agonists are being explored to enhance anti-tumor immune responses.
Purpose of the Study:
- To investigate the potential of NOD2 agonists to improve antibody therapy for CLL.
- To assess the effects of NOD2 activation on myeloid cell function in CLL.
Main Methods:
- Primary human monocytes and a mouse model of CLL (Eµ-TCL1) were treated with the NOD2 agonist L18-MDP.
- Antibody-mediated responses, including phagocytosis, were assessed in vitro.
- The combination of L18-MDP and anti-CD20 antibody was evaluated in vivo for its effect on CLL load.
Main Results:
- L18-MDP activated monocytes from healthy donors and CLL patients, upregulating FcγR and enhancing antibody-mediated phagocytosis.
- These effects were dependent on NF-κB and p38 signaling pathways.
- In vivo, L18-MDP combined with anti-CD20 antibody significantly reduced CLL tumor burden and altered splenic myeloid cell phenotypes.
Conclusions:
- NOD2 agonists can overcome myeloid cell suppression in the CLL microenvironment.
- NOD2 agonists hold promise for enhancing the efficacy of antibody-based therapies for CLL.
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