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April 10, 2026OncoImmunology0 citationsOpen Access

Telomere damage enhances immunogenicity of neuroblastoma and accelerates response to anti-PD-L1 treatment

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SHStefanie HöppnerLWLisa WerrBSBeata Szilagyi

Key Points

  • This research aims to determine if telomere dysfunction increases the effectiveness of anti-PD-L1 treatment in neuroblastoma.
  • Induced telomere dysfunction using 6-thio-2'-deoxyguanosine (6-thio-dG) in murine neuroblastoma cells.
  • Examined the activation of the cGAS-STING pathway and PD-L1 expression in vitro.
  • Used a MYCN;ALKF1174L transgenic mouse model to assess tumor growth and survival.
  • Analyzed immune cell infiltration in tumors following treatment.
  • 6-thio-dG treatment led to cGAS-STING pathway activation and increased PD-L1 expression.
  • Significantly delayed tumor growth and prolonged survival in treated mice.
  • Combined treatment with anti-PD-L1 improved anti-tumor effects and overcame initial treatment delays.
  • Promoted immune cell infiltration in tumors following 6-thio-dG and anti-PD-L1 combination treatment.

Abstract

Telomerase is active in the majority of high-risk neuroblastomas, a pediatric tumor associated with poor patient outcomes. In other cancer types, resistance to immune checkpoint blockade was overcome by induction of telomere dysfunction using the telomerase substrate precursor 6-thio-2'-deoxyguanosine (6-thio-dG). Here, we explored whether induction of telomere dysfunction improves the anti-tumor efficacy of immune checkpoint inhibition in neuroblastoma. 6-thio-dG treatment induced the cyclic GMP-AMP synthase-stimulator of interferon genes (cGAS-STING) pathway and programmed cell death ligand-1 (PD-L1) expression in murine neuroblastoma cells in vitro. In a MYCN;ALKF1174L-driven transgenic neuroblastoma mouse model, 6-thio-dG treatment delayed tumor growth and prolonged survival. Treatment with anti-PD-L1 also led to growth delay and improved survival, which occurred; however, only after an initial lag phase. Combination with anti-PD-L1 improved the anti-tumor effects of 6-thio-dG and overcame the initial lag phase of anti-PD-L1 treatment. Mechanistically, 6-thio-dG combined with anti-PD-L1 treatment induced cGAS and PD-L1 expression and promoted immune cell infiltration in the tumors. Our findings suggest that 6-thio-dG treatment activates the cGAS-STING pathway in neuroblastoma and that induction of telomere dysfunction in combination with immune checkpoint blockade boosts intratumoral immune cell infiltration and improves survival in a high-risk neuroblastoma mouse model.

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Cite This Study

Höppner et al. (2026) studied this question.

synapsesocial.com/papers/69d8955f6c1944d70ce064bbhttps://doi.org/10.1080/2162402x.2026.2653918
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1DMG-22. Induced telomere damage and cell cycle checkpoint blockade: a novel approach for radiosensitization and immunomodulation to treat diffuse midline glioma2025
  2. 2Abstract 7191: 6-thio-dG enhances standard-of-care radiation therapy by reprogramming the tumor microenvironment in glioblastoma multiforme2026
  3. 3Abstract 5108: Immunomodulatory and anti-tumor effect of radiation and induced telomere damage to treat pediatric high-grade gliomas2024
  4. 4Evaluation of a Combinatorial Immunotherapy Regimen That Can Cure Mice Bearing MYCN-Driven High-Risk Neuroblastoma That Resists Current Clinical Therapy2024 · 2 citations
  5. 5Abstract 5122: Modulating anti-GD2 immunotherapy via dual DFMO and TGF-β inhibition in neuroblastoma2024