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An Adenoviral Vaccine Encoding Full-Length Inactivated Human Her2 Exhibits Potent Immunogenicty and Enhanced Therapeutic Efficacy without Oncogenicity

Cited 22 time in Web of Science Cited 24 time in Scopus
Authors

Hartman, Zachary C.; Wei, Junping; Osada, Takuya; Glass, Oliver; Lei, Gangjun; Yang, Xiao-Yi; Peplinski, Sharon; Kim, Dong-Wan; Xia, Wenle; Spector, Neil; Marks, Jeffrey; Barry, William; Hobeika, Amy; Devi, Gayathri; Amalfitano, Andrea; Morse, Michael A.; Lyerly, H. Kim; Clay, Timothy M.

Issue Date
2010-03
Publisher
American Association for Cancer Research
Citation
Clinical Cancer Research, Vol.16 No.5, pp.1466-1477
Abstract
Purpose: Overexpression of the breast cancer oncogene HER2 correlates with poor survival. Current HER2-directed therapies confer limited clinical benefits and most patients experience progressive disease. Because refractory tumors remain strongly HER2+, vaccine approaches targeting HER2 have therapeutic potential, but wild type (wt) HER2 cannot safely be delivered in imunogenic viral vectors because it is a potent oncogene. We designed and tested several HER2 vaccines devoid of oncogenic activity to develop a safe vaccine for clinical use. Experimental Design: We created recombinant adenoviral vectors expressing the extracellular domain of HER2 (Ad-HER2-ECD), ECD plus the transmembrane domain (Ad-HER2-ECD-TM), and full-length HER2 inactivated for kinase function (Ad-HER2-ki), and determined their immunogenicity and antitumor effect in wild type(WT) and HER2-tolerant mice. To assess their safety, we compared their effect on the cellular transcriptome, cell proliferation, anchorage-dependent growth, and transformation potential in vivo. Results: Ad-HER2-ki was the most immunogenic vector in WT animals, retained immunogenicity in HER2-transgenic tolerant animals, and showed strong therapeutic efficacy in treatment models. Despite being highly expressed, HER2-ki protein was not phosphorylated and did not produce an oncogenic gene signature in primary human cells. Moreover, in contrast to HER2-wt, cells overexpressing HER2-ki were less proliferative, displayed less anchorage-independent growth, and were not transformed in vivo. Conclusions: Vaccination with mutationally inactivated, nononcogenic Ad-HER2-ki results in robust polyclonal immune responses to HER2 in tolerant models, which translates into strong and effective antitumor responses in vivo. Ad-HER2-ki is thus a safe and promising vaccine for evaluation in clinical trials. Clin Cancer Res; 16(5); 1466-77. (C) 2010 AACR.
ISSN
1078-0432
URI
https://hdl.handle.net/10371/165540
DOI
https://doi.org/10.1158/1078-0432.CCR-09-2549
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