Related Experiment Video
Updated: Mar 11, 2026

Author Spotlight: Advancements in Hypoxia-Sensitive CAR-T Therapy for Enhanced Cancer Immunotherapy
Published on: June 14, 2024
Targeting endosomal trafficking-mediated antigen escape to resensitize myeloma to CAR-T therapy
Zhuning Wang1, Guanli Wang1, Yujie Liu1
1Department of Hematology, Shanghai East Hospital, Tongji University School of Medicine, Shanghai, Shanghai, China.
Background:
Antigen escape is one of the leading causes of relapse following chimeric antigen receptor (CAR)-T therapy, particularly in multiple myeloma. A critical gap persists in understanding the tumor-intrinsic pathways that trigger antigen loss, insight essential for devising strategies to resensitize tumors to immune attack. We identify a previously uncharacterized post-translational mechanism centered on the metabolic enzyme ribonucleotide reductase subunit M2 (RRM2), termed trafficking-mediated antigen escape, to enhance cellular therapy efficacy.
Methods:
We combined single-cell RNA sequencing analysis with multiplex immunofluorescence to identify a clinically relevant RRM2+ myeloma subpopulation exhibiting low MICA/B abundance. Functional validation included induced pluripotent stem cell-derived myeloma organoids monitored by real-time imaging and disseminated xenograft models to assess the effect of subtoxic osalmid treatment on NKG2D CAR-T cell activity. Co-immunoprecipitation, guanosine 5'-triphosphate pulldown, and confocal microscopy were used to investigate the underlying trafficking mechanism.
Results:
Single-cell analysis uncovered a clinically prevalent RRM2+ myeloma subpopulation with profoundly reduced MICA/B surface abundance, which established tumor-intrinsic heterogeneity as one of fundamental causes of NKG2D CAR-T resistance. We further demonstrated RRM2's non-canonical role as a trafficking regulator that actively shuttles MICA/B toward lysosomal degradation via RAB7A activation while simultaneously blocking RAB11-mediated recycling. Therapeutic intervention using subtoxic osalmid, a clinically approved drug and previously characterized as an RRM2 inhibitor, successfully reversed this trafficking defect, restored MICA/B membrane presentation and synergized with NKG2D CAR-T cells to enhance their expansion, polyfunctional cytokine secretion, and stem-like properties. This combination strategy achieved durable tumor remission in vivo by sustaining T-cell fitness while reducing exhaustion, offering an immediately actionable solution to clinical antigen escape.
Conclusions:
Our study establishes RRM2-driven trafficking as a novel and targetable mechanism of antigen escape in CAR-T therapy. By repurposing osalmid to restore MICA/B surface presentation, we provide a clinically translatable strategy that specifically potentiates NKG2D CAR-T cell efficacy in multiple myeloma and could potentially enhance the efficacy of CAR-T across diverse antigens. This work highlights the therapeutic potential of modulating intracellular trafficking to overcome resistance in cellular immunotherapy.
Insights
Antigen escape in CAR-T therapy is driven by RRM2-mediated MICA/B trafficking. Repurposing osalmid restores MICA/B presentation, enhancing CAR-T efficacy against multiple myeloma.
Area of Science:
- Immunology
- Oncology
- Cell Biology
Background:
- Antigen escape is a major cause of relapse in chimeric antigen receptor (CAR)-T therapy, especially in multiple myeloma.
- Understanding tumor-intrinsic pathways driving antigen loss is crucial for resensitizing tumors to CAR-T cell attack.
- A novel post-translational mechanism involving ribonucleotide reductase subunit M2 (RRM2) has been identified as a driver of antigen escape.
Purpose of the Study:
- To investigate the role of RRM2 in antigen escape in multiple myeloma.
- To identify strategies to overcome resistance to NKG2D CAR-T cell therapy.
- To evaluate the therapeutic potential of osalmid in combination with CAR-T therapy.
Main Methods:
- Single-cell RNA sequencing and multiplex immunofluorescence identified RRM2+ myeloma subpopulations with low MICA/B.
- Functional validation used myeloma organoids and xenograft models to assess osalmid's effect on CAR-T activity.
- Co-immunoprecipitation, GTP pulldown, and confocal microscopy elucidated the trafficking mechanism.
Main Results:
- A RRM2+ myeloma subpopulation with reduced MICA/B was identified, contributing to NKG2D CAR-T resistance.
- RRM2 was shown to regulate MICA/B trafficking, promoting lysosomal degradation and inhibiting recycling.
- Subtoxic osalmid treatment restored MICA/B presentation and synergized with NKG2D CAR-T cells, leading to durable tumor remission.
Conclusions:
- RRM2-driven trafficking is a novel, targetable mechanism of antigen escape in CAR-T therapy.
- Repurposing osalmid to restore MICA/B surface presentation offers a clinically translatable strategy for multiple myeloma.
- Modulating intracellular trafficking presents a promising approach to overcome resistance in cellular immunotherapy.
More Related Videos
09:34Dynamic Imaging of Chimeric Antigen Receptor T Cells with [18F]Tetrafluoroborate Positron Emission Tomography/Computed Tomography
Published on: February 17, 2022
09:56A Nonviral Approach to Generate Transient Chimeric Antigen Receptor T Cells Using mRNA for Cancer Immunotherapy
Published on: February 21, 2025
Related Concept Videos
Targeted Cancer Therapies
There are several types of targeted therapies against...
Tumor Immunotherapy
Treatment Resistant Cancers