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| <article> | | <article> |
| <h2><i><u>References</u></i></h2> | | <h2><i><u>References</u></i></h2> |
− | <ol> | + | <ul> |
− | <li id="Wolfel1995">Wolfel, Thomas, et al. "A p16INK4a-insensitive CDK4 mutant targeted by cytolytic T lymphocytes in a human melanoma." <i>Science</i>, 269.5228 (1995): 1281-1284.</li> | + | <li id="Alexandrov2013">Alexandrov, Ludmil B., et al. "Signatures of mutational processes in human cancer." <i>Nature</i>, 500.7463 (2013): 415.</li> |
| + | <li id="Amigorena2010">Amigorena, Sebastian, and Ariel Savina. "Intracellular mechanisms of antigen cross presentation in dendritic cells." <i>Current opinion in immunology</i>, 22.1 (2010): 109-117.</li> |
| + | <li id="Choi2016">Choi, Bongseo, et al. "Effective delivery of antigen–encapsulin nanoparticle fusions to dendritic cells leads to antigen-specific cytotoxic T cell activation and tumor rejection." <i>ACS nano</i>, 10.8 (2016): 7339-7350.</li> |
| + | <li id="Fifis2004">Fifis, Theodora, et al. "Size-dependent immunogenicity: therapeutic and protective properties of nano-vaccines against tumors." <i>The Journal of Immunology</i>, 173.5 (2004): 3148-3154.</li> |
| + | <li id="Janssen2005">Janssen, Edith M., et al. "CD4+ T-cell help controls CD8+ T-cell memory via TRAIL-mediated activation-induced cell death." <i>Nature</i>, 434.7029 (2005): 88.</li> |
| + | <li id="Liu2014">Liu, Haipeng, et al. "Structure-based programming of lymph-node targeting in molecular vaccines." <i>Nature</i>, 507.7493 (2014): 519.</li> |
| <li id="Matsushita2012">Matsushita, Hirokazu, et al. "Cancer exome analysis reveals a T-cell-dependent mechanism of cancer immunoediting." <i>Nature</i>, 482.7385 (2012): 400.</li> | | <li id="Matsushita2012">Matsushita, Hirokazu, et al. "Cancer exome analysis reveals a T-cell-dependent mechanism of cancer immunoediting." <i>Nature</i>, 482.7385 (2012): 400.</li> |
| + | <li id="Sutter2008">Sutter, Markus, et al. "Structural basis of enzyme encapsulation into a bacterial nanocompartment." <i>Nature structural & molecular biology</i>, 15.9 (2008): 939.</li> |
| <li id="Tran2014">Tran, Eric, et al. "Cancer immunotherapy based on mutation-specific CD4+ T cells in a patient with epithelial cancer." <i>Science</i>, 344.6184 (2014): 641-645.</li> | | <li id="Tran2014">Tran, Eric, et al. "Cancer immunotherapy based on mutation-specific CD4+ T cells in a patient with epithelial cancer." <i>Science</i>, 344.6184 (2014): 641-645.</li> |
| <li id="Tran2016">Tran, Eric, et al. "T-cell transfer therapy targeting mutant KRAS in cancer." <i>New England Journal of Medicine</i>, 375.23 (2016): 2255-2262.</li> | | <li id="Tran2016">Tran, Eric, et al. "T-cell transfer therapy targeting mutant KRAS in cancer." <i>New England Journal of Medicine</i>, 375.23 (2016): 2255-2262.</li> |
| <li id="Tran2017">Tran, Eric, Paul F. Robbins, and Steven A. Rosenberg. "'Final common pathway'of human cancer immunotherapy: targeting random somatic mutations." <i>Nature immunology</i>, 18.3 (2017): 255.</li> | | <li id="Tran2017">Tran, Eric, Paul F. Robbins, and Steven A. Rosenberg. "'Final common pathway'of human cancer immunotherapy: targeting random somatic mutations." <i>Nature immunology</i>, 18.3 (2017): 255.</li> |
− | <li id="Alexandrov2013">Alexandrov, Ludmil B., et al. "Signatures of mutational processes in human cancer." <i>Nature</i>, 500.7463 (2013): 415.</li> | + | <li id="Wolfel1995">Wolfel, Thomas, et al. "A p16INK4a-insensitive CDK4 mutant targeted by cytolytic T lymphocytes in a human melanoma." <i>Science</i>, 269.5228 (1995): 1281-1284.</li> |
| <li id="Zhu2017">Zhu, Guizhi, et al. "Efficient nanovaccine delivery in cancer immunotherapy." <i>ACS nano</i>, 11.3 (2017): 2387-2392.</li> | | <li id="Zhu2017">Zhu, Guizhi, et al. "Efficient nanovaccine delivery in cancer immunotherapy." <i>ACS nano</i>, 11.3 (2017): 2387-2392.</li> |
− |
| + | </ul> |
− | <li id="Liu2014">Liu, Haipeng, et al. "Structure-based programming of lymph-node targeting in molecular vaccines." <i>Nature</i>, 507.7493 (2014): 519.</li>
| + | |
− | <li id="Fifis2004">Fifis, Theodora, et al. "Size-dependent immunogenicity: therapeutic and protective properties of nano-vaccines against tumors." <i>The Journal of Immunology</i>, 173.5 (2004): 3148-3154.</li>
| + | |
− | <li id="Janssen2005">Janssen, Edith M., et al. "CD4+ T-cell help controls CD8+ T-cell memory via TRAIL-mediated activation-induced cell death." <i>Nature</i>, 434.7029 (2005): 88.</li>
| + | |
− | <li id="Amigorena2010">Amigorena, Sebastian, and Ariel Savina. "Intracellular mechanisms of antigen cross presentation in dendritic cells." <i>Current opinion in immunology</i>, 22.1 (2010): 109-117.</li>
| + | |
− | <li id="Choi2016">Choi, Bongseo, et al. "Effective delivery of antigen–encapsulin nanoparticle fusions to dendritic cells leads to antigen-specific cytotoxic T cell activation and tumor rejection." <i>ACS nano</i>, 10.8 (2016): 7339-7350.</li>
| + | |
− |
| + | |
− | <li id="Sutter2008">Sutter, Markus, et al. "Structural basis of enzyme encapsulation into a bacterial nanocompartment." <i>Nature structural & molecular biology</i>, 15.9 (2008): 939.</li>
| + | |
− | </ol> | + | |
| </article> | | </article> |
| | | |