Endogenous/Exogenous Nanovaccines Synergistically Enhance Dendritic Cell-Mediated Tumor Immunotherapy

Yu Zhang, Qiang Li, Meng Ding, Weijun Xiu, Jingyang Shan, Lihui Yuwen, Dongliang Yang, Xuejiao Song, Guangwen Yang, Xiaodan Su, Yongbin Mou, Zhaogang Teng, Heng Dong

Research output: Contribution to journalArticlepeer-review

22 Scopus citations

Abstract

Traditional dendritic cell (DC)-mediated immunotherapy is usually suppressed by weak immunogenicity in tumors and generally leads to unsatisfactory outcomes. Synergistic exogenous/endogenous immunogenic activation can provide an alternative strategy for evoking a robust immune response by promoting DC activation. Herein, Ti3C2 MXene-based nanoplatforms (termed MXP) are prepared with high-efficiency near-infrared photothermal conversion and immunocompetent loading capacity to form endogenous/exogenous nanovaccines. Specifically, the immunogenic cell death of tumor cells induced by the photothermal effects of the MXP can generate endogenous danger signals and antigens release to boost vaccination for DC maturation and antigen cross-presentation. In addition, MXP can deliver model antigen ovalbumin (OVA) and agonists (CpG-ODN) as an exogenous nanovaccine (MXP@OC), which further enhances DC activation. Importantly, the synergistic strategy of photothermal therapy and DC-mediated immunotherapy by MXP significantly eradicates tumors and enhances adaptive immunity. Hence, the present work provides a two-pronged strategy for improving immunogenicity and killing tumor cells to achieve a favorable outcome in tumor patients.

Original languageEnglish
Article number2203028
JournalAdvanced Healthcare Materials
Volume12
Issue number17
DOIs
StatePublished - 6 Jul 2023

Keywords

  • antigen presentation
  • dendritic cells
  • endogenous nanovaccines
  • exogenous nanovaccines
  • photothermal therapy

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