Octadecyl Gallate and Lipid-Modified MnSe<sub>2</sub> Nanoparticles Enhance Radiosensitivity in Esophageal Squamous Cell Carcinoma and Promote Radioprotection in Normal Tissues.
basic_science · Level V
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- Record sourced from PubMed, PMID 38408154.
- Also identified by DOI 10.1002/adma.202311291.
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Abstract
Radiotherapy, a widely used therapeutic strategy for esophageal squamous cell carcinoma (ESCC), is always limited by radioresistance of tumor tissues and side-effects on normal tissues. Herein, a signature based on four core genes of cyclic GMP-AMP synthase-stimulator of interferon genes (cGAS-STING) pathway, is developed to predict prognosis and assess immune cell infiltration, indicating that the cGAS-STING pathway and radiotherapy efficacy are closely intertwined in ESCC. A novel lipid-modified manganese diselenide nanoparticle (MnSe<sub>2</sub>-lipid) with extraordinarily uniform sphere morphology and tumor microenvironment (TME) responsiveness is developed to simultaneously overcome radioresistance and reduce side-effects of radiation. The uniform MnSe<sub>2</sub> encapsulated lipid effectively achieves tumor accumulation. Octadecyl gallate on surface of MnSe<sub>2</sub> forming pH-responsive metal-phenolic covalent realizes rapid degradation in TME. The released Mn<sup>2+</sup> promotes radiosensitivity by generating reactive oxygen species induced by Fenton-like reaction and activating cGAS-STING pathway. Spontaneously, selenium strengthens immune response by promoting secretion of cytokines and increasing white blood cells, and performs antioxidant activity to reduce side-effects of radiotherapy. Overall, this multifunctional remedy which is responsive to TME is capable of providing radiosensitivity by cGAS-STING pathway-mediated immunostimulation and chemodynamic therapy, and radioprotection of normal tissues, is highlighted here to optimize ESCC treatment.
Medical subject headings
- Esophageal Squamous Cell Carcinoma
- Esophageal Neoplasms
- Radiation Tolerance
- Nanoparticles