XMT-2056, a HER2-Directed STING Agonist Antibody-Drug Conjugate, Induces Innate Antitumor Immune Responses by Acting on Cancer Cells and Tumor-Resident Immune Cells

  • Clin Cancer Res. 2025 May 1;31(9):1766-1782. doi: 10.1158/1078-0432.CCR-24-2449.
Raghida A Bukhalid  #  1 ,  Jeremy R Duvall  #  1 ,  Kelly Lancaster  1 ,  Kalli C Catcott  1 ,  Naniye Malli Cetinbas  1 ,  Travis Monnell  1 ,  Caitlin Routhier  1 ,  Joshua D Thomas  1 ,  Keith W Bentley  1 ,  Scott D Collins  1 ,  Elizabeth Ditty  1 ,  Timothy K Eitas  1 ,  Eugene W Kelleher  1 ,  Pamela Shaw  1 ,  Jahna Soomer-James  1 ,  Elena Ter-Ovanesyan  1 ,  Ling Xu  1 ,  Jeffrey Zurita  1 ,  Dorin Toader  1 ,  Marc Damelin  1 ,  Timothy B Lowinger  1
Affiliations
  • 1. Mersana Therapeutics, Inc., Cambridge, Massachusetts.
  • # Contributed equally.
Abstract

Purpose: Targeted tumor delivery may be required to potentiate the clinical benefit of innate immune modulators. The objective of the study was to apply an antibody-drug conjugate (ADC) approach to STING agonism and develop a clinical candidate.

Experimental design: XMT-2056, a HER2-directed STING agonist ADC, was designed, synthesized, and tested in pharmacology and toxicology studies. The ADC was compared with a clinical benchmark intravenously administered a STING agonist.

Results: XMT-2056 achieved tumor-targeted delivery of the STING agonist upon systemic administration in mice and induced innate antitumor immune responses; single dose administration of XMT-2056 induced tumor regression in a variety of tumor models with high and low HER2 expressions. Notably, XMT-2056 demonstrated superior efficacy and reduced systemic inflammation compared with a free STING agonist. XMT-2056 exhibited concomitant immune-mediated killing of HER2-negative cells specifically in the presence of HER2-positive Cancer cells, supporting the potential for activity against Tumors with heterogeneous HER2 expression. The antibody does not compete for binding with trastuzumab or pertuzumab, and a benefit was observed when combining XMT-2056 with each of these therapies as well as with trastuzumab deruxtecan ADC. The combination of XMT-2056 with anti-PD-1 conferred benefit on antitumor activity and induced immunologic memory. XMT-2056 was well tolerated in nonclinical toxicology studies.

Conclusions: These data provide a robust preclinical characterization of XMT-2056 and provide rationale and strategy for its clinical evaluation.

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