Chemotherapy-Sensitized <i>In Situ</i> Vaccination for Malignant Osteosarcoma Enabled by Bioinspired Calcium Phosphonate Nanoagents.

Wang, Yangyun; Wu, Yanxian; Li, Liubing; Ma, Chunjie; Zhang, Shaodian; Lin, Subin; Zhang, Leshuai W; Wang, Yong et al. · ACS Nano · 2023

basic_science · Level V

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Abstract

How to effectively treat malignant osteosarcoma remains clinically challenging. Programmed delivery of chemotherapeutic agents and immunostimulants may offer a universal strategy for killing osteosarcoma cells while simultaneously eliciting <i>in situ</i> antitumor immunity. However, targeted chemoimmunotherapy lacks a reliable delivery system. To address this issue, we herein developed a bioinspired calcium phosphonate nanoagent that was synthesized by chemical reactions between Ca<sup>2+</sup> and phosphonate residue from zoledronic acid using bovine serum albumin as a scaffold. In addition, methotrexate combination with a phosphorothioate CpG immunomodulator was also loaded for pH-responsive delivery to enable synergistic chemoimmunotherapy of osteosarcoma. The calcium phosphonate nanoagents were found to effectively accumulate in osteosarcoma for nearly 1 week, which is favorable for exerting the vaccination effects <i>in situ</i> by maturing dendritic cells and priming CD8<sup>+</sup> T cells to suppress the osteosarcoma progression and pulmonary metastasis through controlled release of the three loaded agents in the acidic tumor microenvironment. The current study may thus offer a reliable delivery platform for achieving targeted chemotherapy-induced <i>in situ</i> antitumor immunity.

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