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1.
J Immunother Cancer ; 9(1)2021 01.
Article in English | MEDLINE | ID: mdl-33500260

ABSTRACT

BACKGROUND: In contrast to immune checkpoint inhibitors, the use of antibodies as agonists of immune costimulatory receptors as cancer therapeutics has largely failed. We sought to address this problem using a new class of modular synthetic drugs, termed tumor-targeted immune cell agonists (TICAs), based on constrained bicyclic peptides (Bicycles). METHODS: Phage libraries displaying Bicycles were panned for binders against tumor necrosis factor (TNF) superfamily receptors CD137 and OX40, and tumor antigens EphA2, Nectin-4 and programmed death ligand 1. The CD137 and OX40 Bicycles were chemically conjugated to tumor antigen Bicycles with different linkers and stoichiometric ratios of binders to obtain a library of low molecular weight TICAs (MW <8 kDa). The TICAs were evaluated in a suite of in vitro and in vivo assays to characterize their pharmacology and mechanism of action. RESULTS: Linking Bicycles against costimulatory receptors (e.g., CD137) to Bicycles against tumor antigens (e.g., EphA2) created potent agonists that activated the receptors selectively in the presence of tumor cells expressing these antigens. An EphA2/CD137 TICA (BCY12491) efficiently costimulated human peripheral blood mononuclear cells in vitro in the presence of EphA2 expressing tumor cell lines as measured by the increased secretion of interferon γ and interleukin-2. Treatment of C57/Bl6 mice transgenic for the human CD137 extracellular domain (huCD137) bearing EphA2-expressing MC38 tumors with BCY12491 resulted in the infiltration of CD8+ T cells, elimination of tumors and generation of immunological memory. BCY12491 was cleared quickly from the circulation (plasma t1/2 in mice of 1-2 hr), yet intermittent dosing proved effective. CONCLUSION: Tumor target-dependent CD137 agonism using a novel chemical approach (TICAs) afforded elimination of tumors with only intermittent dosing suggesting potential for a wide therapeutic index in humans. This work unlocks a new path to effective cancer immunotherapy via agonism of TNF superfamily receptors.


Subject(s)
Neoplasms/drug therapy , Peptides, Cyclic/administration & dosage , Receptor, EphA2/agonists , Tumor Necrosis Factor Receptor Superfamily, Member 9/agonists , A549 Cells , Animals , Antigens, Neoplasm/metabolism , CD8-Positive T-Lymphocytes/metabolism , Cell Line, Tumor , Female , HT29 Cells , Humans , Jurkat Cells , Mice , Mice, Transgenic , Neoplasms/genetics , Neoplasms/immunology , PC-3 Cells , Peptide Library , Peptides, Cyclic/chemistry , Peptides, Cyclic/pharmacology , Receptors, OX40/metabolism , Xenograft Model Antitumor Assays
2.
J Med Chem ; 63(8): 4107-4116, 2020 04 23.
Article in English | MEDLINE | ID: mdl-32202781

ABSTRACT

Bicycles are constrained bicyclic peptides that represent a promising binding modality for use in targeted drug conjugates. A phage display screen against EphA2, a receptor tyrosine kinase highly expressed in a number of solid tumors, identified a number of Bicycle families with low nanomolar affinity. A Bicycle toxin conjugate (BTC) was generated by derivatization of one of these Bicycles with the potent cytotoxin DM1 via a cleavable linker. This BTC demonstrated potent antitumor activity in vivo but was poorly tolerated, which was hypothesized to be the result of undesired liver uptake caused by poor physicochemical properties. Chemical optimization of a second Bicycle, guided by structural biology, provided a high affinity, metabolically stable Bicycle with improved physicochemical properties. A BTC incorporating this Bicycle also demonstrated potent antitumor activity and was very well tolerated when compared to the initial BTC. Phage display selection followed by chemical optimization of Bicycles can deliver potent drug conjugates with favorable pharmaceutical properties.


Subject(s)
Bridged Bicyclo Compounds, Heterocyclic/administration & dosage , Cytotoxins/administration & dosage , Drug Delivery Systems/methods , Ephrin-A2/antagonists & inhibitors , Amino Acid Sequence , Animals , Bridged Bicyclo Compounds, Heterocyclic/chemistry , Bridged Bicyclo Compounds, Heterocyclic/metabolism , Cytotoxins/chemistry , Cytotoxins/metabolism , Ephrin-A2/metabolism , Female , Humans , Liver/diagnostic imaging , Liver/drug effects , Liver/metabolism , Male , Mice , Mice, Inbred BALB C , Mice, Nude , Protein Structure, Secondary , Protein Structure, Tertiary , Receptor, EphA2 , Xenograft Model Antitumor Assays/methods
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