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Jane Spetzler

Jane Spetzler, Bronshoj DK

Patent application numberDescriptionPublished
20090062192Dimeric Peptide Agonists of the Glp-1 Receptor - Dimerization of GLP-1 agonists and therapeutic uses thereof.03-05-2009
20090203581Novel Peptides for Use in the Treatment of Obesity - The present invention relates to novel peptide compounds which are effective in modulating one or more melanocortin receptor types, to the use of the compounds in therapy, to methods of treatment comprising administration of the compounds to patients in need thereof, and to the use of the compounds in the manufacture of medicaments. The compounds of the invention are of particular interest in relation to the treatment of obesity as well as a variety of diseases or conditions associated with obesity.08-13-2009
20090318353Acylated Exendin-4 Compounds - This invention provides new therapeutic peptides, i.e. new protracted Exendin-4 compounds, pharmaceutical compositions and the use of such.12-24-2009
20100016237Novel Peptides for Use in the Treatment of Obesity - The present invention relates to novel peptide compounds which are effective in modulating one or more melanocortin receptor types, to the use of the compounds in therapy, to methods of treatment comprising administration of the compounds to patients in need thereof, and to the use of the compounds in the manufacture of medicaments. The compounds of the invention are of particular interest in relation to the treatment of obesity as well as a variety of diseases or conditions associated with obesity.01-21-2010
20100261637PEPTIDES DERIVATIZED WITH A-B-C-D- AND THEIR THERAPEUTICAL USE - The invention relates to protracted peptide derivatives such as Glucagon-Like Peptide-1 (GLP-1), exendin-4, and analogues thereof, as well as therapeutic uses thereof. The peptide derivative of the invention comprises a peptide wherein at least one amino acid residue is derivatized with A-B-C-, or A-B-C-D-. These compounds are useful in the treatment or prevention of diabetes type 2 and related diseases. The compounds are potent, have a low ratio of binding affinity to the GLP-1 receptor in the presence of high/low albumin concentrations, have long half-lives, and have a high affinity of binding to albumin, all of which is of potential relevance for the overall aim of achieving long-acting, stable and active GLP-1 derivatives with a potential for once weekly administration.10-14-2010
20100292133TRUNCATED GLP-1 DERIVATIES AND THEIR THERAPEUTICAL USE - The invention relates to truncated GLP-1 analogues, in particular a GLP-1 analogue which is a modified GLP-1(7-35) (SEQ ID No 1) having: i) a total of 2, 3, 4, 5 6, 7, 8, or 9 amino acid substitutions as compared to GLP-1(7-35), including a) a Glu residue at a position equivalent to position 22 of GLP-1(7-35), and b) an Arg residue at a position equivalent to position 26 of GLP-1(7-35); as well as derivatives thereof, and therapeutic uses and compositions. These analogues and derivatives are highly potent, have a good binding affinity to the GLP-1 receptor, also to the extracellular domain of the GLP-1 receptor, which is of potential relevance achieving long-acting, stable GLP-1 compounds with a potential for once weekly administration.11-18-2010
20110082079GLUCAGON-LIKE PEPTIDE-1 DERIVATIVES AND THEIR PHARMACEUTICAL USE - The invention relates to protracted Glucagon-Like Peptide-1 (GLP-1) derivatives and therapeutic uses thereof. The GLP-1 derivative of the invention comprises a modified GLP-1(7-37) sequence having a total of 2-12 amino acid modifications, including Glu22 and Arg26, and being derivatised with an albumin binding residue or pegylated in position 18, 20, 23, 30, 31, 34, 36, 37, or 39. These compounds are useful in the treatment or prevention of diabetes type 2 and related diseases. The compounds are potent, stable, have long half-lives, a high affinity of binding to albumin, and/or a high affinity of binding to the extracellular domain of the GLP-1 receptor (GLP-1R), all of which is of potential relevance for the overall aim of achieving long-acting, stable and active GLP-1 derivatives with a potential for once weekly administration.04-07-2011
20110166321DOUBLE-ACYLATED GLP-1 DERIVATIVES - The invention relates to a derivative of a GLP-1 analogue, which analogue comprises a first K residue at a position corresponding to position 37 of GLP-1(7-37) (SEQ ID NO: 1), a second K residue at a position corresponding to position 26 of GLP-1(7-37), and a maximum of ten amino acid modifications as compared to GLP-1(7-37), wherein the first K residue is designated K07-07-2011

Patent applications by Jane Spetzler, Bronshoj DK

Jane Spetzler, Bagsvaerd DK

Patent application numberDescriptionPublished
20110039779IGF-1R BINDING PROTEINS AND ANTAGONISTS - The present invention is drawn to new peptides and proteins that bind to human insulin-like growth factor-1 receptor (HIGF-IR), as well as nucleic acids encoding the same, vectors and cells comprising such nucleic acids, pharmaceutical compositions comprising such compounds, and methods of using any thereof, are provided.02-17-2011

Jane Spetzler, Copenhagen O DK

Patent application numberDescriptionPublished
20090192072Insulin and IGF-1 Receptor Agonists and Antagonists - Peptide sequences capable of binding to insulin and/or insulin-like growth factor receptors with either agonist or antagonist activity and identified from various peptide libraries are disclosed. This invention also identifies at least two different binding sites, which are present on insulin and insulin-like growth factor receptors, and which selectively bind the peptides of this invention. As agonists, certain of the peptides of this invention may be useful for development as therapeutics to supplement or replace endogenous peptide hormones. The antagonists may also be developed as therapeutics.07-30-2009
20110124556Insulin and IGF-1 Receptor Agonists and Antagonists - Peptide sequences capable of binding to insulin and/or insulin-like growth factor receptors with either agonist or antagonist activity and identified from various peptide libraries are disclosed. This invention also identifies at least two different binding sites, which are present on insulin and insulin-like growth factor receptors, and which selectively bind the peptides of this invention. As agonists, certain of the peptides of this invention may be useful for development as therapeutics to supplement or replace endogenous peptide hormones. The antagonists may also be developed as therapeutics.05-26-2011