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A receptor-antibody hybrid hampering MET-driven metastatic spread
by
Vigna, Elisa
, Borrelli, Nicla
, Chiriaco, Cristina
, Modica, Chiara
, Comoglio, Paolo M.
, Basilico, Cristina
in
Analysis
/ Antibodies
/ Apoptosis
/ Biomedical and Life Sciences
/ Biomedicine
/ Cancer
/ Cancer Research
/ Cell culture
/ Development and progression
/ DNA fingerprints
/ Fibroblasts
/ Fusion proteins
/ HGF
/ Immunology
/ Kinases
/ Ligands
/ Medical prognosis
/ MET
/ Metastasis
/ Motility
/ Mutation
/ Oncology
/ Pancreatic cancer
/ Proteins
/ Targeted therapy
/ Viral antibodies
2021
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A receptor-antibody hybrid hampering MET-driven metastatic spread
by
Vigna, Elisa
, Borrelli, Nicla
, Chiriaco, Cristina
, Modica, Chiara
, Comoglio, Paolo M.
, Basilico, Cristina
in
Analysis
/ Antibodies
/ Apoptosis
/ Biomedical and Life Sciences
/ Biomedicine
/ Cancer
/ Cancer Research
/ Cell culture
/ Development and progression
/ DNA fingerprints
/ Fibroblasts
/ Fusion proteins
/ HGF
/ Immunology
/ Kinases
/ Ligands
/ Medical prognosis
/ MET
/ Metastasis
/ Motility
/ Mutation
/ Oncology
/ Pancreatic cancer
/ Proteins
/ Targeted therapy
/ Viral antibodies
2021
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A receptor-antibody hybrid hampering MET-driven metastatic spread
by
Vigna, Elisa
, Borrelli, Nicla
, Chiriaco, Cristina
, Modica, Chiara
, Comoglio, Paolo M.
, Basilico, Cristina
in
Analysis
/ Antibodies
/ Apoptosis
/ Biomedical and Life Sciences
/ Biomedicine
/ Cancer
/ Cancer Research
/ Cell culture
/ Development and progression
/ DNA fingerprints
/ Fibroblasts
/ Fusion proteins
/ HGF
/ Immunology
/ Kinases
/ Ligands
/ Medical prognosis
/ MET
/ Metastasis
/ Motility
/ Mutation
/ Oncology
/ Pancreatic cancer
/ Proteins
/ Targeted therapy
/ Viral antibodies
2021
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A receptor-antibody hybrid hampering MET-driven metastatic spread
Journal Article
A receptor-antibody hybrid hampering MET-driven metastatic spread
2021
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Overview
Background
The receptor encoded by the MET oncogene and its ligand Hepatocyte Growth Factor (HGF) are at the core of the invasive-metastatic behavior. In a number of instances genetic alterations result in ligand-independent onset of malignancy (MET
addiction
). More frequently, ligand stimulation of wild-type MET contributes to progression toward metastasis (MET
expedience
). Thus, while MET inhibitors alone are effective in the first case, combination therapy with ligand inhibitors is required in the second condition.
Methods
In this paper, we generated hybrid molecules gathering HGF and MET inhibitory properties. This has been achieved by ‘head-to-tail’ or ‘tail-to-head’ fusion of a single chain Fab derived from the DN30 MET antibody with a recombinant ‘ad-hoc’ engineered MET extracellular domain (decoyMET), encompassing the HGF binding site but lacking the DN30 epitope.
Results
The hybrid molecules correctly bind MET and HGF, inhibit HGF-induced MET downstream signaling, and quench HGF-driven biological responses, such as growth, motility and invasion, in cancer cells of different origin. Two metastatic models were generated in mice knocked-in by the human HGF gene: (i) orthotopic transplantation of pancreatic cancer cells; (ii) subcutaneous injection of primary cells derived from a cancer of unknown primary. Treatment with hybrid molecules strongly affects time of onset, number, and size of metastatic lesions.
Conclusion
These results provide a strategy to treat metastatic dissemination driven by the HGF/MET axis.
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