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Targeting the tumor-draining lymph node with adjuvanted nanoparticles reshapes the anti-tumor immune response.
Matrix-binding checkpoint immunotherapies enhance antitumor efficacy and reduce adverse events.
Carbon monoxide-releasing micelles for immunotherapy.
6-Thioguanine-loaded polymeric micelles deplete myeloid-derived suppressor cells and enhance the efficacy of T cell immunotherapy in tumor-bearing mice.
TLR-3 stimulation improves anti-tumor immunity elicited by dendritic cell exosome-based vaccines in a murine model of melanoma.
Engineering approaches to immunotherapy.
Trojan horses for immunotherapy.
Targeted antibody and cytokine cancer immunotherapies through collagen affinity.
Recruitment of CD103+ dendritic cells via tumor-targeted chemokine delivery enhances efficacy of checkpoint inhibitor immunotherapy.
Immunoengineering approaches for cytokine therapy.
Overcoming transport barriers to immunotherapy.
Masking the immunotoxicity of interleukin-12 by fusing it with a domain of its receptor via a tumour-protease-cleavable linker.
Immunostimulatory Polymers as Adjuvants, Immunotherapies, and Delivery Systems.
Membrane-localized neoantigens predict the efficacy of cancer immunotherapy.
Engineered IL-7 synergizes with IL-12 immunotherapy to prevent T cell exhaustion and promote memory without exacerbating toxicity.
Immunoengineering a Future of Molecular, Material, and Cellular Therapeutics.
Inducing Tumor Neoantigens Through RNA Editing for Cancer Immunotherapy