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A novel multipurpose monoclonal antibody for evaluating human c-Met expression in preclinical and clinical settings
Beatrice S Knudsen1, Ping Zhao, James Resau
1Department of Pathology, University of Washington Medical Center, NE Pacific, Seattle, WA, USA.
Abstract:
The inappropriate expression of the c-MET cell surface receptor in many human solid tumors necessitates the development of companion diagnostics to identify those patients who could benefit from c-MET targeted therapies. Tumor tissues are formalin fixed and paraffin embedded (FFPE) for histopathologic evaluation, making the development of an antibody against c-MET that accurately and reproducibly detects the protein in FFPE samples an urgent need. We have developed a monoclonal antibody (mAb), designated MET4, from a panel of MET-avid mAbs, based on its specific staining pattern in FFPE preparations. The accuracy of MET4 immunohistochemistry (MET4-IHC) was assessed by comparing MET4-IHC in FFPE cell pellets with immunoblotting analysis. The technical reproducibility of MET4-IHC possessed a percentage coefficient of variability of 6.25% in intra-assay and interassay testing. Comparison with other commercial c-MET antibody detection reagents demonstrated equal specificity and increased sensitivity for c-MET detection in prostate tissues. In cohorts of ovarian cancers and gliomas, MET4 reacted with ovarian cancers of all histologic subtypes (strong staining in 25%) and with 63% of gliomas. In addition, MET4 bound c-MET on the surfaces of cultured human cancer cells and tumor xenografts. In summary, the MET4 mAb accurately and reproducibly measures c-MET expression by IHC in FFPE tissues and can be used for molecular imaging in vivo. These properties encourage further development of MET4 as a multipurpose molecular diagnostics reagent to help to guide appropriate selection of patients being considered for treatment with c-MET-antagonistic drugs.
Insights
A new monoclonal antibody, MET4, accurately detects the c-MET receptor in formalin-fixed, paraffin-embedded tumor tissues. This diagnostic tool aids in identifying patients for c-MET targeted therapies.
Area of Science:
- Oncology
- Immunohistochemistry
- Molecular Diagnostics
Background:
- Aberrant c-MET receptor expression is common in solid tumors.
- Targeted therapies for c-MET are emerging, requiring companion diagnostics.
- Formalin-fixed, paraffin-embedded (FFPE) tissues are standard for histopathology.
Purpose of the Study:
- To develop and validate a monoclonal antibody (mAb) for accurate c-MET detection in FFPE tissues.
- To assess the diagnostic utility of the MET4 mAb for patient stratification in c-MET-driven cancers.
Main Methods:
- Development of MET4 mAb from a panel of MET-avid antibodies.
- Immunohistochemistry (IHC) using MET4 on FFPE cell pellets and tissues.
- Validation by immunoblotting and comparison with commercial c-MET antibodies.
- Testing in ovarian cancer and glioma cohorts, and on cultured cancer cells/xenografts.
Main Results:
- MET4 mAb demonstrated specific staining in FFPE preparations.
- MET4-IHC showed high technical reproducibility (6.25% CV).
- MET4-IHC exhibited equal specificity and increased sensitivity compared to commercial reagents in prostate tissues.
- MET4 reacted with ovarian cancers (25% strong staining) and 63% of gliomas.
- MET4 bound c-MET on cancer cells and xenografts.
Conclusions:
- The MET4 mAb is a reliable tool for quantifying c-MET expression in FFPE tissues via IHC.
- MET4-IHC facilitates accurate and reproducible detection of c-MET.
- MET4 has potential for in vivo molecular imaging and as a companion diagnostic for c-MET-targeted therapies.

