Author: Pereboev, Alexander; Borisevich, Viktoriya; Tsuladze, George; Shakhmatov, Mikhail; Hudman, Deborah; Kazachinskaia, Elena; Razumov, Ivan; Svyatchenko, Viktor; Loktev, Valery; Yamshchikov, Vladimir
Title: Genetically delivered antibody protects against West Nile virus Cord-id: jhz2c862 Document date: 2008_1_1
ID: jhz2c862
Snippet: Gene-based delivery of recombinant antibody genes is a promising therapeutic strategy offering numerous advantages including sustained antibody levels, better safety profile and lower production cost. Here we describe generation of a recombinant antibody Fc-9E2 comprising a fusion protein between human Fc of IgG1 and a single-chain Fv derived from a hybridoma 9E2 secreting a mAb neutralizing West Nile virus (WNV). Fc-9E2 was shown to retain parental mAb's specificity and WNV-neutralizing capacit
Document: Gene-based delivery of recombinant antibody genes is a promising therapeutic strategy offering numerous advantages including sustained antibody levels, better safety profile and lower production cost. Here we describe generation of a recombinant antibody Fc-9E2 comprising a fusion protein between human Fc of IgG1 and a single-chain Fv derived from a hybridoma 9E2 secreting a mAb neutralizing West Nile virus (WNV). Fc-9E2 was shown to retain parental mAb's specificity and WNV-neutralizing capacity. Adenovirus-mediated in vivo delivery of the antibody gene resulted in sustained Fc-9E2 serum levels leading to abrogation of lethal WNV infection in an animal model.
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