Reference |
---|
Grasselly C, Denis M, Bourguignon A, Talhi N, Mathé D, Tourette A, et al. The Antitumor Activity of Combinations of Cytotoxic Chemotherapy and Immune Checkpoint Inhibitors Is Model-Dependent. Front Immunol. 2018;9:2100 pubmed publisher
|
Triplett T, Garrison K, Marshall N, Donkor M, Blazeck J, Lamb C, et al. Reversal of indoleamine 2,3-dioxygenase-mediated cancer immune suppression by systemic kynurenine depletion with a therapeutic enzyme. Nat Biotechnol. 2018;36:758-764 pubmed publisher
|
Moynihan K, Opel C, Szeto G, Tzeng A, Zhu E, Engreitz J, et al. Eradication of large established tumors in mice by combination immunotherapy that engages innate and adaptive immune responses. Nat Med. 2016;22:1402-1410 pubmed publisher
|
Zelenay S, van der Veen A, Böttcher J, Snelgrove K, Rogers N, Acton S, et al. Cyclooxygenase-Dependent Tumor Growth through Evasion of Immunity. Cell. 2015;162:1257-70 pubmed publisher
|
Ngiow S, Young A, Jacquelot N, Yamazaki T, Enot D, Zitvogel L, et al. A Threshold Level of Intratumor CD8+ T-cell PD1 Expression Dictates Therapeutic Response to Anti-PD1. Cancer Res. 2015;75:3800-11 pubmed publisher
|
Zander R, Obeng Adjei N, Guthmiller J, Kulu D, Li J, Ongoiba A, et al. PD-1 Co-inhibitory and OX40 Co-stimulatory Crosstalk Regulates Helper T Cell Differentiation and Anti-Plasmodium Humoral Immunity. Cell Host Microbe. 2015;17:628-41 pubmed publisher
|
Vanpouille Box C, Diamond J, Pilones K, Zavadil J, Babb J, Formenti S, et al. TGFβ Is a Master Regulator of Radiation Therapy-Induced Antitumor Immunity. Cancer Res. 2015;75:2232-42 pubmed publisher
|
Twyman Saint Victor C, Rech A, Maity A, Rengan R, Pauken K, Stelekati E, et al. Radiation and dual checkpoint blockade activate non-redundant immune mechanisms in cancer. Nature. 2015;520:373-7 pubmed publisher
|
Evans E, Jonason A, Bussler H, Torno S, Veeraraghavan J, Reilly C, et al. Antibody Blockade of Semaphorin 4D Promotes Immune Infiltration into Tumor and Enhances Response to Other Immunomodulatory Therapies. Cancer Immunol Res. 2015;3:689-701 pubmed publisher
|
Mittal D, Young A, Stannard K, Yong M, Teng M, Allard B, et al. Antimetastatic effects of blocking PD-1 and the adenosine A2A receptor. Cancer Res. 2014;74:3652-8 pubmed publisher
|
McGray A, Hallett R, Bernard D, Swift S, Zhu Z, Teoderascu F, et al. Immunotherapy-induced CD8+ T cells instigate immune suppression in the tumor. Mol Ther. 2014;22:206-18 pubmed publisher
|
John L, Devaud C, Duong C, Yong C, Beavis P, Haynes N, et al. Anti-PD-1 antibody therapy potently enhances the eradication of established tumors by gene-modified T cells. Clin Cancer Res. 2013;19:5636-46 pubmed publisher
|
Holmgaard R, Zamarin D, Munn D, Wolchok J, Allison J. Indoleamine 2,3-dioxygenase is a critical resistance mechanism in antitumor T cell immunotherapy targeting CTLA-4. J Exp Med. 2013;210:1389-402 pubmed publisher
|
Van Der Werf N, Redpath S, Azuma M, Yagita H, Taylor M. Th2 cell-intrinsic hypo-responsiveness determines susceptibility to helminth infection. PLoS Pathog. 2013;9:e1003215 pubmed publisher
|
Curran M, Montalvo W, Yagita H, Allison J. PD-1 and CTLA-4 combination blockade expands infiltrating T cells and reduces regulatory T and myeloid cells within B16 melanoma tumors. Proc Natl Acad Sci U S A. 2010;107:4275-80 pubmed publisher
|