Proceedings of the National Academy of Sciences · 1997 · 112 citations · 46 references
Tumor BiologyCancer ImmunosurveillanceMedicineImmunologyTumor CellsMonoclonal AntibodiesImmune Checkpoint InhibitorAntibody EngineeringTumor TargetingAnti-cancer AgentImmunotherapyTumor-reactive Monoclonal AntibodiesCell BiologyFc PortionCancer ResearchGrowth Arrest
Monoclonal antibodies (mAbs) that exert antitumor activity can do so by virtue of their effector function and/or their ability to signal growth arrest or cell death. In this study, we demonstrate that mAbs which have little or no signaling activity-i.e., anti-CD19, CD20, CD21, CD22 and Her-2-can become potent antitumor agents when they are converted into IgG-IgG homodimers. The homodimers exert antigrowth activity by signaling G0/G1 arrest or apoptosis, depending upon which cell surface molecule they bind. This activity is specific and, in the case of the anti-CD19 mAb, did not require an Fc portion. These results offer the possibility that homodimers of other tumor-reactive mAbs which have little antitumor activity as monomers might be potent, antitumor agents.
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I. Vermes, C. Haanen, H M Steffens-Nakken et al. · Journal of Immunological Methods · 1995 · 5.3K citations · Full text
Monoclonal Antibody-Mediated Tumor Regression by Induction of Apoptosis
B. C. Trauth, C Klas, Anke Peters et al. · Science · 1989 · 1.7K citations · Full text
Current protocols in immunology
Roald Nezlin · Molecular Immunology · 1992 · 1.4K citations