Tumor Immune Cell Targeting Chimeras (TICTACs) reprogram tumor-associated macrophages
Morimoto, M.; Roberts, D. S.; Wen, R.; Handy, E.; Peterson, E. E.; Stepek, G. M.; Till, N. A.; Brooks, J. D.; Bertozzi, C. R.
Show abstract
Immune cells in the tumor microenvironment are not only powerful regulators of immunosuppression and tumorigenesis, but also represent a dominant cell type, with tumor-associated macrophages (TAMs) comprising up to 50% of total cell mass in solid tumors. Immunotherapies such as immune checkpoint inhibitors (ICIs) derive their efficacy from this cancer-immune cell interface, however, immune-related adverse events resulting from systemic blockade remain a significant challenge. To address this need for potent, yet highly tumor-specific immunotherapies, we developed Tumor-Immune Cell TArgeting Chimeras (TICTACs) that are capable of selectively depleting immune checkpoint receptors such as SIRP from the surface of TAMs. These chimeric molecules consist of a synthetic glycan ligand that binds the C-type lectin CD206, a well-established TAM marker, conjugated to a non-blocking antibody that binds but does not inhibit the checkpoint receptor. By engaging CD206, which constitutively recycles between the plasma membrane and early endosomes, TICTACs facilitate robust degradation of the checkpoint receptors from the surface of CD206high macrophages, while having no effect on CD206low macrophages. By decoupling antibody selectivity from its blocking function, we present a new paradigm for developing highly tumor-specific immunotherapies.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Modular DNA Barcoding of Nanobodies Enables Multiplexed in situ Protein Imaging and High-throughput Biomolecule Detection 96%
- SDR enzymes oxidize specific lipidic alkynylcarbinols into cytotoxic protein-reactive species 96%
- Affinity-guided labeling reveals P2X7 nanoscale membrane redistribution during BV2 microglial activation 96%
Similar papers in this journal
- A new universal chimeric-antigen receptor (CAR)- fragment antibody binder (FAB) split system for cancer immunotherapy 96%
- Design of the SARS-CoV-2 RBD vaccine antigen improves neutralizing antibody response 95%
- Folate depletion induces erythroid differentiation through perturbation of de novo purine synthesis 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.