Radiotherapy and Oncology · 2019 · 109 citations · 16 references
EngineeringRadiation EffectMolecular BiologyHafnium Oxide NanoparticlesNanomedicineOncologyRadiopharmaceutical TherapyRadiotherapy-activated HafniumRadiation OncologyNuclear MedicineCancer ResearchRadiation TherapyDna Damage EnhancementTumor TargetingCell BiologyTumor MicroenvironmentCgas-sting PathwayCgas-sting Pathway ActivationMedicine
The cGAS-STING pathway can be activated by radiation induced DNA damage and because of its important role in anti-cancer immunity activation, methods to increase its activation in cancer cells could provide significant therapeutic benefits for patients. We explored the impact of hafnium oxide nanoparticles (NBTXR3) activated by radiotherapy on cell death, DNA damage, and activation of the cGAS-STING pathway. We demonstrate that NBTXR3 activated by radiotherapy enhances cell destruction, DNA double strand breaks, micronuclei formation and cGAS-STING pathway activation in a human colorectal cancer model, compared to radiotherapy alone.
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DNA exonuclease Trex1 regulates radiotherapy-induced tumour immunogenicity
Claire Vanpouille‐Box, Amandine Alard, Molykutty J. Aryankalayil et al. · Nature Communications · 2017 · 1.6K citations · Full text
cGAS surveillance of micronuclei links genome instability to innate immunity
Karen J. Mackenzie, Paula Carroll, Carol-Anne Martin et al. · Nature · 2017 · 1.6K citations · Full text