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Analyzing Tumor and Tissue Distribution of Target Antigen Specific Therapeutic Antibody
Published on: May 16, 2020
A monoclonal antibody recognizing human cancers with amplification/overexpression of the human epidermal growth
Achim A Jungbluth1, Elisabeth Stockert, H J Su Huang
1Ludwig Institute for Cancer Research, Memorial Sloan-Kettering Cancer Center, 1275 York Avenue, New York, NY 10021, USA. jungblua@mskcc.org
Abstract:
Epidermal growth factor receptor (EGFR) has attracted considerable attention as a target for cancer therapy. Wild-type (wt)EGFR is amplified/overexpressed in a number of tumor types, and several mutant forms of the coding gene have been found, with DeltaEGFR, a deletion mutation lacking exons 2-7 of the external domain, being the most common and particularly associated with glioblastoma. We generated monoclonal antibodies (mAbs) against NR6(DeltaEGFR) (mouse fibroblast line NR6 transfected with DeltaEGFR). mAb 806 with selective reactivity for NR6(DeltaEGFR) in mixed hemadsorption assays, fluorescence-activated cell sorting, Western blot, and immunohistochemistry was analyzed in detail and compared with mAbs 528 (anti-wtEGFR) and DH8.3 (anti-DeltaEGFR). In xenograft tumors and molecularly pretyped glioblastomas, the reactivity pattern was as follows: 528 reactive with amplified and nonamplified wtEGFR; DH8.3 reactive with DeltaEGFR; and 806 reactive with amplified/overexpressed wtEGFR (with or without DeltaEGFR). In normal tissues, 528 but not DH8.3 or 806 was widely reactive with many organs, e.g., liver expressing high EGFR levels. In glioblastoma and non-CNS tumor panels, 806 was reactive with a high proportion of glioblastomas and a substantial number of epithelial cancers of lung and of head and neck. DH8.3 reactivity was restricted to DeltaEGFR-positive glioblastoma. Thus, 806 represents a category of mAbs that recognizes tumors with EGFR amplification/overexpression but not normal tissues or tumors with normal EGFR levels. Our study also indicates that DeltaEGFR is restricted to glioblastoma, in contrast to other reports that this mutation is found in tumors outside the brain.
Insights
Monoclonal antibody 806 targets amplified or overexpressed epidermal growth factor receptor (EGFR) in cancers, sparing normal tissues. This antibody shows promise for cancer therapy, particularly in glioblastoma.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Epidermal growth factor receptor (EGFR) is a key target in cancer therapy.
- Mutations like DeltaEGFR are common in glioblastoma, while wild-type EGFR is amplified in various tumors.
- Developing targeted therapies requires antibodies with specific reactivity profiles.
Purpose of the Study:
- To characterize monoclonal antibody (mAb) 806, which targets DeltaEGFR.
- To compare the reactivity of mAb 806 with anti-wild-type EGFR (mAb 528) and anti-DeltaEGFR (mAb DH8.3) antibodies.
- To evaluate the potential of mAb 806 as a cancer therapeutic agent.
Main Methods:
- Generation of monoclonal antibodies against NR6(DeltaEGFR).
- Assays used: mixed hemadsorption, fluorescence-activated cell sorting, Western blot, and immunohistochemistry.
- Testing antibody reactivity in xenograft tumors, glioblastomas, and normal tissues.
Main Results:
- mAb 806 selectively targets amplified/overexpressed wild-type EGFR and DeltaEGFR-positive tumors, including glioblastomas, lung, and head and neck cancers.
- mAb 528 reacts with both amplified and non-amplified wild-type EGFR in tumors and normal tissues.
- mAb DH8.3 specifically binds to DeltaEGFR, primarily in glioblastomas, and shows no reactivity in normal tissues.
- mAb 806 demonstrated reactivity with tumors but not with normal tissues expressing high EGFR levels.
Conclusions:
- mAb 806 is a promising candidate for targeting EGFR-amplified/overexpressed tumors, including glioblastoma.
- The study confirms DeltaEGFR is predominantly found in glioblastoma.
- mAb 806 offers a potential therapeutic strategy by targeting tumor-specific EGFR alterations without affecting normal tissues.
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