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Antibody Based EpCAM Targeted Therapy of Cancer, Review and Update
Shirin Eyvazi1, Safar Farajnia2,3, Siavoush Dastmalchi2
1Department of Biotechnology, School of Advanced Technologies in Medicine, Shahid Beheshti University of Medical Sciences, Tehran, Iran.
Abstract:
Todays, after four decades from the discovery of monoclonal antibodies by Kohler and Milstein in 1975, a dozen of antibodies are used in cancer targeted therapy with different strategies. The success of these antibodies depends on the specificity of antigens expressed on the cancer cells. Epithelial Cell Adhesion Molecule (EpCAM), a homophilic cell-cell adhesion glycoprotein is a well- known tumor antigen, which expresses on epithelial tumors and circulating tumor cells as well as cancer stem cells. The EpCAM signaling pathway is associated with proliferation, differentiation and adhesion of epithelial cancer cells. Here we review EpCAM structure, expression profile and its signaling pathway in cancer cells. In addition, we focused on structure, mechanism of action and success of anti EpCAM antibodies which have been used in different clinical trials. Based on literatures, Edrecolomab showed limited efficacy in the phase III studies. The wholly human monoclonal antibody Adecatumumab is dose- and target-dependent in metastatic breast cancer patients expressing EpCAM. The chimeric antibody, Catumaxomab, has been approved for the treatment of malignant ascites; however, this Mab showed considerable results in intrapleural administration in cancer patients. Anti EpCAM toxin conjugated antibodies like, Oportuzumab Monatox (scFv antibody and Pseudomonas exotoxin A (ETA)), Citatuzumab Bogatox (Fab fragment with bouganin toxin) and immono-conjugate antibody Tucotuzumab (monoclonal antibody with IL2), have shown acceptable results in different clinical trials. Almost, all of the antibodies were well-tolerated; however, still more clinical trials are needed for the approval of antibodies for the treatment of specific tumors.
Insights
Monoclonal antibodies targeting Epithelial Cell Adhesion Molecule (EpCAM) show promise in cancer therapy. While some antibodies have limited efficacy, others demonstrate potential in clinical trials for various cancers.
Area of Science:
- Oncology
- Immunology
- Biochemistry
Background:
- Monoclonal antibodies have revolutionized cancer therapy since their discovery in 1975.
- Epithelial Cell Adhesion Molecule (EpCAM) is a crucial tumor antigen overexpressed on epithelial cancers, circulating tumor cells, and cancer stem cells.
- EpCAM signaling influences cancer cell proliferation, differentiation, and adhesion.
Purpose of the Study:
- To review the structure, expression, and signaling pathway of EpCAM in cancer.
- To analyze the structure, mechanism of action, and clinical trial outcomes of anti-EpCAM antibodies.
Main Methods:
- Literature review of EpCAM and anti-EpCAM antibodies.
- Analysis of clinical trial data for various anti-EpCAM therapeutic strategies.
Main Results:
- Edrecolomab exhibited limited efficacy in Phase III trials.
- Adecatumumab's efficacy is dose- and target-dependent in metastatic breast cancer.
- Catumaxomab is approved for malignant ascites and shows promise in intrapleural administration.
- Toxin-conjugated anti-EpCAM antibodies (Oportuzumab Monatox, Citatuzumab Bogatox) and immunoconjugates (Tucotuzumab) have shown acceptable results.
Conclusions:
- Anti-EpCAM antibodies are generally well-tolerated.
- Further clinical trials are necessary to establish the efficacy of these antibodies for specific tumor types.
- EpCAM-targeted therapies represent a significant area of ongoing cancer research and development.
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