ArticleScientific reports2025
CD38-specific nanobody-based bispecific antibody recruiters (BARs) redirect complement-dependent cytotoxicity toward multiple myeloma cells.
Article in Scientific reports, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
Bispecific antibody recruiters (BARs) are an innovative class of immunotherapeutics that redirect endogenous antibodies to tumor cells. BARs comprise a tumor-binding and an antibody-binding module, enabling endogenous antibodies to opsonize tumor cells and induce FC-dependent effector functions such as complement-dependent cytotoxicity (CDC). CD38 is a validated target for myeloma therapy, as evidenced by the success of CD38-specific monoclonal antibodies daratumumab and isatuximab. Nanobodies are single variable immunoglobulin domains derived from camelid heavy chain antibodies. Here, we report the generation of nanobody-based BARs recognizing CD38 and assess their cytotoxicity against CD38-expressing myeloma cells in vitro and ex vivo. We constructed three CD38-specific BARs recognizing distinct, non-overlapping CD38 epitopes (E1-BAR, E2-BAR, and E3-BAR) by genetically fusing CD38-specific nanobodies to a human immunoglobulin κ light chain-specific nanobody. All BARs exhibited simultaneous binding to CD38 and IgGκ. Nonlinear regression revealed EC50 values of 0.73 nM (E1-BAR), 0.21 nM (E2-BAR), and 0.97 nM (E3-BAR). In patient-derived myeloma cells, E1-BAR reduced viability to 29 ± 18%, while E2-BAR and E3-BAR achieved 62 ± 49% and 57 ± 41%, respectively. In vivo, BAR half-life was markedly increased by IgGκ binding. Our results demonstrate the feasibility of CD38-specific nanobody-based BARs as therapeutics for multiple myeloma.
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