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hOA-DN30: a highly effective humanized single-arm MET antibody inducing remission of 'MET-addicted' cancers.

AbstractBACKGROUND:
The tyrosine kinase receptor encoded by the MET oncogene is a major player in cancer. When MET is responsible for the onset and progression of the transformed phenotype (MET-addicted cancers), an efficient block of its oncogenic activation results in potent tumor growth inhibition.
METHODS:
Here we describe a molecular engineered MET antibody (hOA-DN30) and validate its pharmacological activity in MET-addicted cancer models in vitro and in vivo. Pharmacokinetics and safety profile in non-human primates have also been assessed.
RESULTS:
hOA-DN30 efficiently impaired MET activation and the intracellular signalling cascade by dose and time dependent removal of the receptor from the cell surface (shedding). In vitro, the antibody suppressed cell growth by blocking cell proliferation and by concomitantly inducing cell death in multiple MET-addicted human tumor cell lines. In mice xenografts, hOA-DN30 induced an impressive reduction of tumor masses, with a wide therapeutic window. Moreover, the antibody showed high therapeutic efficacy against patient-derived xenografts generated from MET-addicted gastric tumors, leading to complete tumor regression and long-lasting effects after treatment discontinuation. Finally, hOA-DN30 showed a highly favorable pharmacokinetic profile and substantial tolerability in Cynomolgus monkeys.
CONCLUSIONS:
hOA-DN30 unique ability to simultaneously erase cell surface MET and release the 'decoy' receptor extracellular region results in a paramount MET blocking action. Its remarkable efficacy in a large number of pre-clinical models, as well as its pharmacological features and safety profile in non-human primates, strongly envisage a successful clinical application of this novel single-arm MET therapeutic antibody for the therapy of MET-addicted cancers.
AuthorsIlaria Martinelli, Chiara Modica, Cristina Chiriaco, Cristina Basilico, James M Hughes, Simona Corso, Silvia Giordano, Paolo M Comoglio, Elisa Vigna
JournalJournal of experimental & clinical cancer research : CR (J Exp Clin Cancer Res) Vol. 41 Issue 1 Pg. 112 (Mar 29 2022) ISSN: 1756-9966 [Electronic] England
PMID35351166 (Publication Type: Journal Article)
Copyright© 2022. The Author(s).
Chemical References
  • Proto-Oncogene Proteins c-met
Topics
  • Animals
  • Cell Line, Tumor
  • Cell Proliferation
  • Humans
  • Mice
  • Proto-Oncogene Proteins c-met (metabolism)
  • Signal Transduction
  • Stomach Neoplasms

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