Dawei Dai, Shuo Han, Guangming Wang, Yongming Qiu, Ang Li
Background: Glioblastoma (GBM) is a primary malignant tumor of the central nervous system and has a high lethal rate despite therapeutic advances. Although immunotherapies have achieved great success in solid tumors, the highly immunosuppressive tumor microenvironment and the blood-brain barrier (BBB) obstruction hinder the development of immunotherapies for GBM. In this study, we innovatively developed a nanohydrogel composite vaccine (nanoCOM-GEL) for GBM immunotherapy via intranasal immunization. Methods: The nanoCOM-GEL used GelMA as the hydrogel matrix and was co-formulated with antigenic peptides, the BBB-penetrating peptide (peptide 22), as well as immune cell stimulants and chemokines. The efficiency of this vaccine in bypassing the BBB and its capacity to induce anti-GBM immune responses were evaluated in vitro and in vivo. Results: The nanoCOM-GEL vaccine demonstrated superior BBB-bypassing and BBTB-penetrating capabilities, potent immunostimulatory activity, and effective GBM-targeting efficacy, as validated in both cellular and animal models. In an orthotopic GBM mouse model (n = 8 per group), intranasal immunization with nanoCOM-GEL significantly extended median survival from 21 days (control group) to more than 60 days (nanoCOM-GEL group), representing a 2.8-fold increase (p < 0.001). The vaccine markedly inhibited tumor growth, as evidenced by an 82.5% reduction in tumor tissue at day 21 compared to controls (p < 0.01). Mechanistically, nanoCOM-GEL increased intratumoral CD8+ T cell infiltration by 9.5-fold and upregulated DCs by 6.4-fold, while simultaneously reducing intratumoral M2-type tumor-associated macrophages by 79.3% (p < 0.001), effectively reshaping the immunosuppressive tumor microenvironment. Conclusions: This innovative nanoCOM-GEL vaccine achieved potent anti-GBM therapeutic efficacy and provided a promising strategy for effective GBM immunotherapies.