Wagtmann
Peter Andreas Wagtmann, Rungsted Kyst DK
Patent application number | Description | Published |
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20090010843 | Methods of Identifying Antibodies to Ligands of Orphan Receptors - Described is a method of identifying antibodies against hitherto unknown ligands of orphan receptors or other orphan ligands, i.e., receptors or other ligands where the counter-ligand has not yet been identified. The availability of antibodies binding to the unknown ligand significantly facilitates their isolation and characterization, and the identified antibodies can themselves be useful for treating patients with cancer or autoimmune diseases, or other disorders. An exemplary embodiment provides for a method designated Identification of Therapeutic Antibodies by Competitive Screening (ITACS). Described are also fusion proteins comprising a soluble portion of an orphan receptor, such as NKp30, and the Fc portion of an antibody. The fusion proteins typically comprise a Flexible Transmembrane Linker (FTL), i.e., a linker comprising a portion of a transmembrane domain of the orphan receptor. | 01-08-2009 |
20090035305 | Compositions and Methods for Treating Viral Infection - Described are methods of treating viral disease using compounds that block inhibitory NK cell receptors, thereby reducing their inhibition of NK cell cytotoxicity in killing infected target cells. In one embodiment, the compound is an antibody binding, for example, one or more of the human KIR2DL1, KIR2DL2, and KIR2DL3 receptors. In another embodiment, the method further comprises administering a therapeutic antibody or fusion protein which binds an antigen expressed on cells infected with the virus. | 02-05-2009 |
Peter Andreas Nicolai Reu Wagtmann, Rungsted Kyst DK
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20090196850 | Anti-Kir Combination Treatments and Methods - Compositions comprising anti-KIR antibodies and one or more secondary anti-cancer agents or anti-viral agents and methods of using such combinations (as combination compositions or in separate administration protocols) in the treatment of cancers (e.g., lung cancer) or viral infection (e.g., HIV or HCV infection) are provided. | 08-06-2009 |
20100272718 | Antibodies Against Human NKG2D and Uses Thereof - The present invention provides isolated anti-human NKG2D monoclonal antibodies useful for therapeutic applications in humans. Typically, the antibodies are fully human or humanized to minimize the risk for immune responses against the antibodies when administered to a patient. Preferred antibodies include human monoclonal antibodies MS and 21F2. As described herein, other antigen-binding molecules such as, e.g., antigen-binding antibody fragments, antibody derivatives, and multi-specific molecules, can be designed or derived from such antibodies. | 10-28-2010 |
Peter Andreas Nicolai Reumert Wagtmann, Rungsted Kyst DE
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20150197569 | ANTI-KIR ANTIBODIES, FORMULATIONS, AND USES THEREOF - A novel IgG4 isotype anti-KIR antibody, novel formulations of this and other IgG4 anti-KIR antibodies, and methods of using such formulations are provided. Also described are compositions, formulations, dosages, and administration regimens suitable for NK cell activation and therapeutic applications of anti-KIR antibodies, as well as kits comprising one or more anti-KIR antibodies with instructions for use in treating cancer. | 07-16-2015 |
Peter Andreas, Nicolai, Reumert Wagtmann, Cassis FR
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20160046712 | KIR-BINDING AGENTS AND METHODS OF USE THEREOF - The present invention relates to agents and methods that are capable of augmenting NK-mediated killing of target cells by reducing inhibitory KIR signalling without reducing the binding of KIR to HLA-C. As described herein, transduction of negative signaling via KIR, upon binding of KIR to its HLA class I ligand, can involve a ligand-binding induced, conformational reorientation of the KIR molecules allowing interactions to form between adjacent KIRs in specific domains, leading to accelerated clustering. Methods and agents such as monoclonal antibodies for reducing KIR-mediated inhibition of NK cell cytotoxicity without reducing or blocking HLA-binding by, e.g., reducing or blocking dimerization of KIR, are provided. | 02-18-2016 |