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A GPC3-targeting Bispecific Antibody, GPC3-S-Fab, with Potent Cytotoxicity
Published on: July 12, 2018
Monoclonal and bispecific antibodies as novel therapeutics
Evan P Booy1, Dina Johar, Srilekha Maddika
1Manitoba Institute of Cell Biology,CancerCare Manitoba, University of Manitoba, ON6010-675 McDermot Ave., Winnipeg, MB, R3E 0V9, Canada.
Abstract:
Gene amplification, over-expression, and mutation of growth factors, or the receptors themselves, causes increased signaling through receptor kinases, which has been implicated in many human cancers and is associated with poor prognosis. Tumor growth has been shown to be decreased by interrupting this process of extensive growth factor-mediated signaling by directly targeting either the surface receptor or the ligand and thereby preventing cell survival and promoting apoptosis. Monoclonal antibodies have long been eyed as a potential new class of therapeutics targeting cancer and other diseases. Antibody-based therapy initially entered clinical practice when trastuzumab/Herceptin became the first clinically approved drug against an oncogene product as a well-established blocking reagent for tumors with hyperactivity of epidermal growth factor signaling pathways. In the first part of this review we explain basic terms related to the development of antibody-based drugs, give a brief historic perspective of the field, and also touch on topics such as the "humanization of antibodie" or creation of hybrid antibodies. The second part of the review gives an overview of the clinical usage of bispecific antibodies and antibodies "armed" with cytotoxic agents or enzymes. Further within this section, cancer-specific, site-specific, or signaling pathway-specific therapies are discussed in detail. Among other antibody-based therapeutic products, we discuss: Avastin (bevacizumab), CG76030, Theragyn (pemtumomab), daclizumab (Zenapax), TriAb, MDX-210, Herceptin (trastuzumab), panitumumab (ABX-EGF), mastuzimab (EMD-72000), Erbitux (certuximab, IMC225), Panorex (edrecolomab), STI571, CeaVac, Campath (alemtuizumab), Mylotarg (gemtuzumab, ozogamicin), and many others. The end of the review deliberates upon potential problems associated with cancer immunotherapy.
Insights
Monoclonal antibodies offer a promising approach to cancer treatment by targeting growth factor signaling pathways. This review explores their development, clinical applications, and challenges in cancer immunotherapy.
Area of Science:
- Oncology
- Immunology
- Biotechnology
Background:
- Aberrant growth factor signaling drives cancer progression and is linked to poor prognosis.
- Targeting these signaling pathways can inhibit tumor growth, promote apoptosis, and improve patient outcomes.
- Monoclonal antibodies represent a key therapeutic strategy for interrupting oncogenic signaling.
Purpose of the Study:
- To provide a comprehensive overview of antibody-based therapeutics in cancer treatment.
- To discuss the historical development and fundamental concepts of antibody drug development.
- To review the clinical applications and future potential of various antibody-based therapies.
Main Methods:
- Review of scientific literature on antibody-based cancer therapies.
- Analysis of historical data and clinical trial outcomes.
- Discussion of specific antibody products and their mechanisms of action.
Main Results:
- Trastuzumab (Herceptin) pioneered antibody therapy by targeting epidermal growth factor receptor signaling.
- Various antibody formats, including bispecific and armed antibodies, are utilized for targeted cancer treatment.
- Numerous antibody-based drugs (e.g., Avastin, Erbitux) are approved or in development for diverse cancers.
Conclusions:
- Antibody-based therapies have significantly advanced cancer treatment paradigms.
- Understanding antibody development, humanization, and clinical applications is crucial.
- Addressing challenges in cancer immunotherapy will further enhance the efficacy of antibody treatments.
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