Literature DB >> 16648969

Monoclonal and bispecific antibodies as novel therapeutics.

Evan P Booy1, Dina Johar, Srilekha Maddika, Hasan Pirzada, Mickey M Sahib, Iris Gehrke, Shauna Loewen, Sherif F Louis, Kamran Kadkhoda, Michael Mowat, Marek Los.   

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.

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Year:  2006        PMID: 16648969     DOI: 10.1007/s00005-006-0011-5

Source DB:  PubMed          Journal:  Arch Immunol Ther Exp (Warsz)        ISSN: 0004-069X            Impact factor:   4.291


  4 in total

1.  Inhibitory effects of bevacizumab monoclonal antibodies in combination with chemotherapy in different time sequences on a human gastric carcinoma cell line.

Authors:  Y Lv; L Song; L Chang; Y Liu; X Zhang; Q Li; X Zhou; W Liu
Journal:  Ir J Med Sci       Date:  2016-06-28       Impact factor: 1.568

Review 2.  Cancer stem cells as targets for cancer therapy: selected cancers as examples.

Authors:  Sabine Hombach-Klonisch; Ted Paranjothy; Emilia Wiechec; Paola Pocar; Tarek Mustafa; Anja Seifert; Christian Zahl; Klaus Luis Gerlach; Katharina Biermann; Klaus Steger; Cuong Hoang-Vu; Klaus Schulze-Osthoff; Marek Los
Journal:  Arch Immunol Ther Exp (Warsz)       Date:  2008-05-30       Impact factor: 4.291

3.  Retrospective chart review of severe infusion reactions with rituximab, cetuximab, and bevacizumab in community oncology practices: assessment of clinical consequences.

Authors:  Lee S Schwartzberg; Edward J Stepanski; Barry V Fortner; Arthur C Houts
Journal:  Support Care Cancer       Date:  2007-10-02       Impact factor: 3.603

4.  Highly efficient, in-vivo Fas-mediated apoptosis of B-cell lymphoma by hexameric CTLA4-FasL.

Authors:  Alexandra Aronin; Shira Amsili; Tatyana B Prigozhina; Kobi Tzdaka; Roy Shen; Leonid Grinmann; Fanny Szafer; Per Edebrink; Mari-Anne Rauvola; Noam Shani; Michal Dranitzki Elhalel
Journal:  J Hematol Oncol       Date:  2014-09-17       Impact factor: 17.388

  4 in total

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