Engineered antibody Fc variants with enhanced effector function

Greg A. Lazar(Xencor (United States)), Wei Dang(Xencor (United States)), Sher Karki(Xencor (United States)), Omid Vafa(Xencor (United States)), Judy S. Peng(Xencor (United States)), Linus Hyun(Xencor (United States)), Cheryl Chan(Xencor (United States)), Helen Chung(Xencor (United States)), Araz Eivazi(Xencor (United States)), Sean C. Yoder(Xencor (United States)), Jost Vielmetter(Xencor (United States)), David F. Carmichael(Xencor (United States)), Robert J. Hayes(Xencor (United States)), Bassil I. Dahiyat(Xencor (United States))
Proceedings of the National Academy of Sciences
March 6, 2006
Cited by 793Open Access
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Abstract

Antibody-dependent cell-mediated cytotoxicity, a key effector function for the clinical efficacy of monoclonal antibodies, is mediated primarily through a set of closely related Fcgamma receptors with both activating and inhibitory activities. By using computational design algorithms and high-throughput screening, we have engineered a series of Fc variants with optimized Fcgamma receptor affinity and specificity. The designed variants display >2 orders of magnitude enhancement of in vitro effector function, enable efficacy against cells expressing low levels of target antigen, and result in increased cytotoxicity in an in vivo preclinical model. Our engineered Fc regions offer a means for improving the next generation of therapeutic antibodies and have the potential to broaden the diversity of antigens that can be targeted for antibody-based tumor therapy.


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