Clinical trials
Full profile accessFollow clinical development from study design and recruitment through results.
- Trial phase
- Status
- Readouts
Drug intelligence / Profile preview
B2M-aTac(dsFv) is a recombinant fusion protein designed for cancer immunotherapy, specifically to overcome tumor immune escape mediated by MHC class I downregulation. The molecule consists of a single-chain MHC class I complex (HLA-A2) genetically fused to a disulfide-stabilized variable fragment (dsFv) of the anti-Tac antibody, which targets the interleukin-2 receptor alpha subunit (CD25). By binding to CD25-expressing tumor cells, B2M-aTac(dsFv) effectively "decorates" the cell surface with HLA-A2-peptide complexes. This artificial presentation of MHC-peptide ligands renders HLA-A2-negative tumor cells susceptible to recognition and lysis by specific CD8+ cytotoxic T lymphocytes (CTLs), such as those targeting the melanoma-associated gp100 peptide. This approach aims to redirect the adaptive immune response toward tumor cells that would otherwise evade detection.
Beyond the preview
Explore the evidence, development activity, and competitive landscape with Gosset’s full data platform.
Follow clinical development from study design and recruitment through results.
Explore development by indication, patient population, and geography.
Trace asset ownership, licensing agreements, and commercial partnerships.
Explore the patent landscape and regulatory exclusivity around an asset.
Compare development programs by target, modality, and indication.
Connect source evidence and development news to your research questions.
See how Gosset can support your research on B2M-aTac(dsFv).