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Methods in Molecular Biology (Clifton, N.J.)|November 21, 2008
Novel mouse models for understanding HIV-1 pathogenesisAviva Joseph, Kaori Sango, Harris GoldsteinAIDS Research and Human Retroviruses|July 14, 2010
Highly active antiretroviral therapy potently suppresses HIV infection in humanized Rag2-/-gammac-/- miceKaori Sango, Aviva Joseph, Mahesh Patel, et al.Virology|October 1, 2013
Anti-HIV designer T cells progressively eradicate a latently infected cell line by sequentially inducing HIV reactivation then killing the newly gp120-positive cellsGautam K Sahu, Kaori Sango, Nithianandan Selliah, et al.Journal of Virology|January 11, 2008
Lentiviral vectors encoding human immunodeficiency virus type 1 (HIV-1)-specific T-cell receptor genes efficiently convert peripheral blood CD8 T lymphocytes into cytotoxic T lymphocytes with potent in vitro and in vivo HIV-1-specific inhibitory activityAviva Joseph, Jian Hua Zheng, Antonia Follenzi, et al.Journal of Immunology (Baltimore, Md. : 1950)|March 21, 2006
Impact of HLA-B alleles, epitope binding affinity, functional avidity, and viral coinfection on the immunodominance of virus-specific CTL responsesFlorian Bihl, Nicole Frahm, Loriana Di Giammarino, et al.Journal of Virology|July 30, 2005
HLA-B63 presents HLA-B57/B58-restricted cytotoxic T-lymphocyte epitopes and is associated with low human immunodeficiency virus loadNicole Frahm, Sharon Adams, Photini Kiepiela, et al.Nature Immunology|December 22, 2005
Control of human immunodeficiency virus replication by cytotoxic T lymphocytes targeting subdominant epitopesNicole Frahm, Photini Kiepiela, Sharon Adams, et al.European Journal of Immunology|August 21, 2007
Extensive HLA class I allele promiscuity among viral CTL epitopesNicole Frahm, Karina Yusim, Todd J Suscovich, et al.Pageof 1