STING activation improves T-cell-engaging immunotherapy for acute myeloid leukemia

A Andreas Linder (1Gene Center and Department of Biochemistry, Ludwig Maximilian University of Munich, Munich, Germany) D Daniel Nixdorf (3Laboratory for Translational Cancer Immunology, Gene Center, Ludwig Maximilian University of Munich, Munich, Germany) N Niklas Kuhl (1Gene Center and Department of Biochemistry, Ludwig Maximilian University of Munich, Munich, Germany) I Ignazio Piseddu T TengTeng Xu (3Laboratory for Translational Cancer Immunology, Gene Center, Ludwig Maximilian University of Munich, Munich, Germany) A Anne V. Holtermann (5Division of Clinical Pharmacology, Department of Medicine IV, University Hospital, Ludwig Maximilian University of Munich, Munich, Germany, Member of the German Center for Lung Research) G Gunnar Kuut (1Gene Center and Department of Biochemistry, Ludwig Maximilian University of Munich, Munich, Germany) R Rebekka Endres (1Gene Center and Department of Biochemistry, Ludwig Maximilian University of Munich, Munich, Germany) N Nora Philipp (3Laboratory for Translational Cancer Immunology, Gene Center, Ludwig Maximilian University of Munich, Munich, Germany) V Veit Bücklein (Ludwig Maximilian University Hospital, Munich, Germany) J Johann de Graaff (6Department of Chemistry and Center for NanoScience, Ludwig Maximilian University of Munich, Munich, Germany) T Thomas Carell S Sebastian Kobold R Roman Kischel (9Amgen Research Munich GmbH, Munich, Germany) V Veit Hornung M Marion Subklewe (Ludwig Maximilian University Hospital, Munich, Germany)

Abstract

Abstract T-cell–recruiting bispecific antibodies (BsAbs) are in clinical development for relapsed/refractory acute myeloid leukemia (AML). Despite promising results, early clinical trials have failed to demonstrate durable responses. We investigated whether activation of the innate immune system through stimulator of interferon (IFN) genes (STING) can enhance target cell killing by a BsAb targeting CD33 (CD33 bispecific T-cell engager molecule; AMG 330). Indeed, we show that cytotoxicity against AML mediated by AMG 330 can be greatly enhanced when combined with the STING agonist 2′,3′-cyclic guanosine monophosphate–adenosine monophosphate (cGAMP) or diamidobenzimidazole (diABZI). We used in vitro cytotoxicity assays, immunoblotting, transcriptomic analyses, and extensive CRISPR-Cas9 knockout experiments to investigate the enhancing effect of a STING agonist on the cytotoxicity of AMG 330 against AML. Importantly, we validated our findings with primary AML cells and in a xenograft AML model. Mechanistically, in addition to direct cytotoxic effects of STING activation on AML cells, activated T cells render AML cells more susceptible to STING activation through their effector cytokines, IFN-γ and tumor necrosis factor, resulting in enhanced type I IFN production and induction of IFN-stimulated genes. This feeds back to the T cells, leading to a further increase in effector cytokines and an overall cytotoxic T-cell phenotype, contributing to the beneficial effect of cGAMP/diABZI in enhancing AMG 330–mediated lysis. We established a key role for IFN-γ in AMG 330–mediated cytotoxicity against AML cells and in rendering AML cells responsive to STING agonism. Here, we propose to improve the efficacy of CD33-targeting BsAbs by combining them with a STING agonist.

Article Details

Journal Blood
Volume / Issue Vol. 145, Issue 19
Published May 08, 2025
Pages 2149-2160
ISSN 0006-4971
Publisher Elsevier BV

Journal Info

Blood

Elsevier BV

ISSN: 0006-4971 Health Sciences

Authors (16)

A

Andreas Linder

1Gene Center and Department of Biochemistry, Ludwig Maximilian University of Munich, Munich, Germany

D

Daniel Nixdorf

3Laboratory for Translational Cancer Immunology, Gene Center, Ludwig Maximilian University of Munich, Munich, Germany

N

Niklas Kuhl

1Gene Center and Department of Biochemistry, Ludwig Maximilian University of Munich, Munich, Germany

I

Ignazio Piseddu

T

TengTeng Xu

3Laboratory for Translational Cancer Immunology, Gene Center, Ludwig Maximilian University of Munich, Munich, Germany

A

Anne V. Holtermann

5Division of Clinical Pharmacology, Department of Medicine IV, University Hospital, Ludwig Maximilian University of Munich, Munich, Germany, Member of the German Center for Lung Research

G

Gunnar Kuut

1Gene Center and Department of Biochemistry, Ludwig Maximilian University of Munich, Munich, Germany

R

Rebekka Endres

1Gene Center and Department of Biochemistry, Ludwig Maximilian University of Munich, Munich, Germany

N

Nora Philipp

3Laboratory for Translational Cancer Immunology, Gene Center, Ludwig Maximilian University of Munich, Munich, Germany

V

Veit Bücklein

Ludwig Maximilian University Hospital, Munich, Germany

J

Johann de Graaff

6Department of Chemistry and Center for NanoScience, Ludwig Maximilian University of Munich, Munich, Germany

T

Thomas Carell

S

Sebastian Kobold

R

Roman Kischel

9Amgen Research Munich GmbH, Munich, Germany

V

Veit Hornung

M

Marion Subklewe

Ludwig Maximilian University Hospital, Munich, Germany