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Updated: Aug 13, 2026

Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
Vitamin B2 Derivative-Enabled Sonochemical Thioketal Cleavage for Ultrasound-Activated In Situ Tumor Vaccination
Xitong Ren1,2,3, Jiali Sun4, Linjie Cui1,3
1State Key Laboratory of Polymer Science and Technology, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, Jilin130022, China.
Abstract:
Toll-like receptor (TLR) agonists are promising for in situ tumor vaccination but suffer from poor tumor selectivity and systemic toxicity. Here, we establish a sonochemical activation strategy using a vitamin B2-derived sonosensitizer for spatiotemporally controlled immunotherapy. Riboflavin tetrabutyrate (TBR) was identified as an efficient sonosensitizer for thioketal (TK) cleavage under low-intensity ultrasound (US) and coformulated with a TK-masked TLR7/8 agonist (R848) to construct sonosensitive nanoparticles (R848/TBR NPs). Upon US irradiation, TBR generated singlet oxygen to induce immunogenic cell death and trigger R848 release through an oxidation-hydrolysis pathway, resulting in a 6.0-fold increase in intratumoral active R848. The activated in situ vaccine elicited robust antitumor immunity with >150-fold enhancement of tumor-specific T-cell responses, achieving tumor inhibition rates of 98.1% in CT26 and 95.7% in highly metastatic 4T1 models while markedly suppressing metastasis and recurrence. This work establishes a mechanistically defined and biocompatible sonochemical framework for controllable drug activation and cancer immunotherapy.
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