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Published on: August 1, 2025
Immune Reprogramming of Tumor Microenvironments by Cytotoxic Antibody-Drug Conjugate Payloads
Srishti Chakravorty1, Yulia Zybina2, Eunseon Ahn1
1Discovery Oncology, Merck & Co., Inc., Rahway, New Jersey.
Abstract:
Antibody-drug conjugates (ADC) have recently emerged as an effective treatment option for cancer. Although the fundamental mechanisms of direct tumor cell killing by various ADC payloads have been established, their impact on the tumor microenvironment (TME) remains underexplored. To investigate this fundamental question, we generated an immunocompetent murine tumor model that maintains the expression of a clinically validated tumor-associated antigen, human HER2. We evaluated two ADCs with a shared antibody framework: trastuzumab linked to the microtubule inhibitor monomethyl auristatin E (T-MMAE) and the topoisomerase inhibitor deruxtecan (T-DXd). Treatment with T-MMAE led to a significant increase in immune cell infiltration, whereas T-DXd-treated tumors had fewer immune cells albeit comparable tumor cytotoxicity. When combined with anti-PD-1 immunotherapy, similar additive effects on the primary antitumor response were observed for both ADCs. A key qualitative difference between the two ADCs was observed in the phenotypes of myeloid APCs; T-MMAE treatment resulted in greater immune cell infiltration within the tumor, including macrophages that showed increased gene expression of F4/80, CD206, and IL10RA. In contrast, tumors treated with T-DXd exhibited a lower proportion of macrophages, but APCs in these tumors displayed heightened levels of the CD80 costimulatory molecule. The secondary antitumor response mediated by memory CD8+ T cells was crucial for the formation of immunologic memory induced by both ADCs. Therefore, our findings reveal that, after ADC-mediated tumor cytotoxicity, different ADC payloads elicit distinct immunologic responses characterized by varying levels of myeloid cell activation within the TME.
Insights
Different antibody-drug conjugates (ADCs) impact the tumor microenvironment (TME) uniquely. While both T-MMAE and T-DXd showed anti-tumor effects, they elicited distinct immune cell responses within the TME.
Area of Science:
- Oncology
- Immunology
- Pharmacology
Background:
- Antibody-drug conjugates (ADCs) are effective cancer treatments, but their effects on the tumor microenvironment (TME) are not fully understood.
- Understanding ADC-induced TME changes is crucial for optimizing cancer therapy.
Purpose of the Study:
- To investigate the distinct impacts of two HER2-targeting ADCs, T-MMAE and T-DXd, on the TME.
- To compare the immunomodulatory effects of different ADC payloads on tumor-infiltrating immune cells.
Main Methods:
- Utilized an immunocompetent murine model expressing human HER2.
- Evaluated T-MMAE and T-DXd, assessing immune cell infiltration, myeloid cell phenotypes, and anti-tumor responses.
- Combined ADCs with anti-PD-1 immunotherapy.
Main Results:
- T-MMAE increased immune cell infiltration, particularly macrophages with specific gene expression profiles.
- T-DXd reduced immune cell infiltration but enhanced CD80 expression on antigen-presenting cells (APCs).
- Both ADCs, when combined with anti-PD-1, showed additive anti-tumor effects and induced immunological memory via CD8+ T cells.
Conclusions:
- Different ADC payloads induce distinct immunological responses within the TME, influencing myeloid cell activation.
- These findings highlight the importance of considering payload-specific TME modulation for ADC-based cancer therapy.
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