Leukemia & lymphoma/Leukemia and lymphoma · 2011 · 14 citations · 36 references
ApoptosisImmunologyImmune RegulationCell DeathImmunoeditingImmunotherapeuticsImmunotherapyTumor BiologyB Tumor CellsHematological MalignancyReceptor Tyrosine KinaseTumor ImmunityIntracellular SignalingAnti-cancer AgentCell SignalingCancer ResearchAlemtuzumab InductionLymphoid NeoplasiaMalignant B LymphocytesImmune SurveillanceTumor LinesCell BiologyTumor MicroenvironmentMalignant Blood DisorderImmune Checkpoint InhibitorB Tumor LinesMedicine
The molecular changes induced by alemtuzumab following binding of CD52 on B tumor cells were investigated. Alemtuzumab alone had no detectable impact on cell signaling but cross-linking of alemtuzumab on the surface of B tumor lines with anti-human Fc antibodies induced a transient Ca(2+) flux followed by phosphorylation of several kinases involved in stress and survival pathways, and expression of associated proteins including TNF-α. Cross-linking of alemtuzumab also induced capping and caspase-dependent apoptosis of the tumor lines. When using primary cells from B-CLL patients, alemtuzumab alone was capable of inducing protein phosphorylation and apoptosis through the cross-linking of alemtuzumab by FcγRIIb receptors on B-CLL cells. Apoptosis was prevented by blocking of FcγRIIb receptors with anti-CD32 antibody. Overall, our results indicate that cross-linking of alemtuzumab on B tumor cells can occur naturally through Fc receptor interaction and leads to the activation of specific cellular pathways and induction of apoptosis.
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Harry Towbin, T. Staehelin, J. Gordon · Proceedings of the National Academy of Sciences · 1979 · 53.8K citations · Full text
Immunocytochemical Technique, Glycobiology, Polyacrylamide Gels +19