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Effector Cell Recruitment with Novel Fv-based Dual-affinity Re-targeting Protein Leads to Potent Tumor Cytolysis and in Vivo B-cell Depletion

细胞溶解 效应器 细胞生物学 生物 体内 细胞 化学 体外 生物化学 遗传学 细胞毒性
作者
Syd Johnson,Stephen Burke,Ling Huang,Sergey Gorlatov,Hua Li,Weili Wang,Wenjun Zhang,Nadine Tuaillon,Jonah Rainey,Bhaswati Barat,Yinhua Yang,Linda X. Jin,Valentina Ciccarone,Paul A. Moore,Scott Koenig,Ezio Bonvini
出处
期刊:Journal of Molecular Biology [Elsevier BV]
卷期号:399 (3): 436-449 被引量:192
标识
DOI:10.1016/j.jmb.2010.04.001
摘要

Bispecific antibodies capable of redirecting the lytic potential of immune effector cells to kill tumor targets have long been recognized as a potentially potent biological therapeutic intervention. Unfortunately, efforts to produce such molecules have been limited owing to inefficient production and poor stability properties. Here, we describe a novel Fv-derived strategy based on a covalently linked bispecific diabody structure that we term dual-affinity re-targeting (DART). As a model system, we linked an Fv specific for human CD16 (FcγRIII) on effector cells to an Fv specific for mouse or human CD32B (FcγRIIB), a normal B-cell and tumor target antigen. DART proteins were produced at high levels in mammalian cells, retained the binding activity of the respective parental Fv domains as well as bispecific binding, and showed extended storage and serum stability. Functionally, the DART molecules demonstrated extremely potent, dose-dependent cytotoxicity in retargeting human PBMC against B-lymphoma cell lines as well as in mediating autologous B-cell depletion in culture. In vivo studies in mice demonstrated effective B-cell depletion that was dependent on the transgenic expression of both CD16A on the effector cells and CD32B on the B-cell targets. Furthermore, DART proteins showed potent in vivo protective activity in a human Burkitt's lymphoma cell xenograft model. Thus, DART represents a biologically potent format that provides a versatile platform for generating bispecific antibody fragments for redirected killing and, with the selection of appropriate binding partners, applications outside of tumor cell cytotoxicity.
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