| Literature DB >> 17375074 |
Richard C Koya1, Takahiro Kimura, Antoni Ribas, Nora Rozengurt, Gregory W Lawson, Emmanuelle Faure-Kumar, He-jing Wang, Harvey Herschman, Noriyuki Kasahara, Renata Stripecke.
Abstract
Approaches facilitating generation of dendritic cell (DC) vaccines for clinical trials and enhancing their viability, bio-distribution, and capacity to stimulate antigen-specific immune responses are critical for immunotherapy. We programmed mouse bone marrow (BM) cells with lentiviral vectors (LV-GI4) so that they produced granulocyte-macrophage colony-stimulating factor (GM-CSF) and interleukin-4 (IL-4) in an autonomous manner. DC/LV-GI4 cells underwent autonomous trans-differentiation to yield typical phenotypic characteristics of DCs. DC/LV-GI4 cells that self-differentiated either ex vivo or in vivo showed persistent and robust viability and stimulated high influx of DCs into draining lymph nodes (LNs). The immunostimulatory efficacy of DC/LV-GI4 cells was evaluated using MART1 and TRP2 as co-expressed melanoma antigens. Mice vaccinated with DC/LV-GI4 cells that self-differentiated in vitro or in vivo produced potent antigen-specific responses against melanoma, which correlated with protective and long-term therapeutic anti-tumor effects. Thus, DC precursors can be genetically engineered after a single ex vivo manipulation, resulting in DC vaccines with improved activity.Entities:
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Year: 2007 PMID: 17375074 DOI: 10.1038/mt.sj.6300126
Source DB: PubMed Journal: Mol Ther ISSN: 1525-0016 Impact factor: 11.454