Anti-V3 Humanized Antibody KD-247 Effectively Suppresses Ex Vivo Generation of Human Immunodeficiency Virus Type 1 and Affords Sterile Protection of Monkeys against a Heterologous Simian/Human Immunodeficiency Virus Infection
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Published:2006-06
Issue:11
Volume:80
Page:5563-5570
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ISSN:0022-538X
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Container-title:Journal of Virology
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language:en
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Short-container-title:J Virol
Author:
Eda Yasuyuki1, Murakami Toshio1, Ami Yasushi2, Nakasone Tadashi3, Takizawa Mari3, Someya Kenji3, Kaizu Masahiko3, Izumi Yasuyuki3, Yoshino Naoto3, Matsushita Shuzo4, Higuchi Hirofumi1, Matsui Hajime1, Shinohara Katsuaki5, Takeuchi Hiroaki6, Koyanagi Yoshio6, Yamamoto Naoki3, Honda Mitsuo3
Affiliation:
1. The Chemo-Sero-Therapeutic Research Institute, Kyokushi, Kikuchi, Kumamoto 869-1298, Japan 2. Division of Experimental Animal Research 3. AIDS Research Center 4. Center for AIDS Research, Kumamoto University, Kumamoto 860-0811, Japan 5. Division of Biosafety Control, Department of Safety Research on Biologics, National Institute of Infectious Diseases, Shinjuku-ku, Tokyo 162-8640, Japan 6. Institute of Viral Research, Kyoto University, Kyoto 606-8507, Japan
Abstract
ABSTRACT
In an accompanying report (Y. Eda, M. Takizawa, T. Murakami, H. Maeda, K. Kimachi, H. Yonemura, S. Koyanagi, K. Shiosaki, H. Higuchi, K. Makizumi, T. Nakashima, K. Osatomi, S. Tokiyoshi, S. Matsushita, N. Yamamoto, and M. Honda, J. Virol. 80:5552-5562, 2006), we discuss our production of a high-affinity humanized monoclonal antibody, KD-247, by sequential immunization with V3 peptides derived from human immunodeficiency virus type 1 (HIV-1) clade B primary isolates. Epitope mapping revealed that KD-247 recognized the Pro-Gly-Arg V3 tip sequence conserved in HIV-1 clade B isolates. In this study, we further demonstrate that in vitro, KD-247 efficiently neutralizes CXCR4- and CCR5-tropic primary HIV-1 clade B and clade B′ with matching neutralization sequence motifs but does not neutralize sequence-mismatched clade B and clade E isolates. Monkeys were provided sterile protection against heterologous simian/human immunodeficiency virus challenge by the passive transfer of a single high dose (45 mg per kg of body weight) of KD-247 and afforded partial protection by lower antibody doses (30 and 15 mg per kg). Protective neutralization endpoint titers in plasma at the time of virus challenge were 1:160 in animals passively transferred with a high dose of the antibody. The antiviral efficacy of the antibody was further confirmed by its suppression of the ex vivo generation of primary HIV-1 quasispecies in peripheral blood mononuclear cell cultures from HIV-infected individuals. Therefore, KD-247 promises to be a valuable tool not only as a passive immunization antibody for the prevention of HIV infection but also as an immunotherapy for the suppression of HIV in phenotype-matched HIV-infected individuals.
Publisher
American Society for Microbiology
Subject
Virology,Insect Science,Immunology,Microbiology
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