Patents by Inventor Karen Knox
Karen Knox has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 12295966Abstract: The present invention relates to compounds with high chemical stability and methods for inhibiting the pathological activity of extracellular histones in a subject. In particular, the invention relates to compounds with high chemical stability, uses thereof and methods for inhibiting or ameliorating extracellular histone mediated ailments (such as, for example, sepsis, systemic immune response syndrome (SIRS) and ischemia reperfusion injury (IRI)). More particularly, the invention relates to methods and uses of a polyanionic sulfated cellobioside modified with a small uncharged glycosidically linked substituent at its reducing terminus, wherein the presence of the substituent results in a molecule with high chemical stability without affecting the ability of the molecule to be effective in the therapy of extracellular histone mediated ailments. For example, the present invention relates to methods and uses of ?-O-methyl cellobioside sulfate (mCBS) or a pharmaceutically acceptable salt thereof (e.g., mCBS.Type: GrantFiled: February 6, 2023Date of Patent: May 13, 2025Assignees: The Australian National University, Griffith University.Inventors: Christopher Parish, Connor O'Meara, Lucy Coupland, Benjamin Ju Chye Quah, Farzaneh Kordbacheh, Anna Orlov, Anna Browne, Ross Stephens, Gregory David Tredwell, Lee Andrew Philip, Karen Knox, Laurence Mark von Itzstein, Chih-Wei Chang, Anne Brüstle, David Anak Simon Davis
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Patent number: 12239650Abstract: The present invention relates to compounds with high chemical stability and methods for inhibiting the pathological activity of NETs in a subject. In particular, the invention relates to compounds with high chemical stability, uses thereof and methods for inhibiting or ameliorating NET mediated ailments (such as, for example, sepsis, systemic immune response syndrome (SIRS) and ischemia reperfusion injury (IRI)). More particularly, the invention relates to methods and uses of a polyanionic sulfated cellobioside modified with a small uncharged glycosidically linked substituent at its reducing terminus, wherein the presence of the substituent results in a molecule with high chemical stability without affecting the ability of the molecule to be effective in the therapy of NET mediated ailments. For example, the present invention relates to methods and uses of ?-O-methyl cellobioside sulfate (mCBS) or a pharmaceutically acceptable salt thereof (e.g., mCBS.Type: GrantFiled: February 25, 2019Date of Patent: March 4, 2025Assignees: The Australian National University, Griffith UniversityInventors: Christopher Parish, Connor O'Meara, Lucy Coupland, Benjamin Ju Chye Quah, Farzaneh Kordbacheh, Anna Orlov, Anna Browne, Ross Stephens, Gregory David Tredwell, Lee Andrew Philip, Karen Knox, Laurence Mark von Itzstein, Chih-Wei Chang, Anne Bruestle, David Anak Simon Davis
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Publication number: 20230255992Abstract: The present invention relates to compounds with high chemical stability and methods for inhibiting the pathological activity of extracellular histones in a subject. In particular, the invention relates to compounds with high chemical stability, uses thereof and methods for inhibiting or ameliorating extracellular histone mediated ailments (such as, for example, sepsis, systemic immune response syndrome (SIRS) and ischemia reperfusion injury (IRO). More particularly, the invention relates to methods and uses of a polyanionic sulfated cellobioside modified with a small uncharged glycosidically linked substituent at its reducing terminus, wherein the presence of the substituent results in a molecule with high chemical stability without affecting the ability of the molecule to be effective in the therapy of extracellular histone mediated ailments. For example, the present invention relates to methods and uses of ?-O-methyl cellobioside sulfate (mCBS) or a pharmaceutically acceptable salt thereof (e.g.Type: ApplicationFiled: February 6, 2023Publication date: August 17, 2023Applicants: The Australian National University, Griffith UniversityInventors: Christopher Parish, Connor O'Meara, Lucy Coupland, Benjamin Ju Chye Quah, Farzaneh Kordbacheh, Anna Orlov, Anna Browne, Ross Stephens, Gregory David Tredwell, Lee Andrew Philip, Karen Knox, Laurence Mark von Itzstein, Chih-Wei Chang, Anne Brüstle, David Anak Simon Davis
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Patent number: 11628179Abstract: The present invention relates to compounds with high chemical stability and methods for inhibiting the pathological activity of extracellular histones in a subject. In particular, the invention relates to compounds with high chemical stability, uses thereof and methods for inhibiting or ameliorating extracellular histone mediated ailments (such as, for example, sepsis, systemic immune response syndrome (SIRS) and ischemia reperfusion injury (IRI)). More particularly, the invention relates to methods and uses of a polyanionic sulfated cellobioside modified with a small uncharged glycosidically linked substituent at its reducing terminus, wherein the presence of the substituent results in a molecule with high chemical stability without affecting the ability of the molecule to be effective in the therapy of extracellular histone mediated ailments. For example, the present invention relates to methods and uses of ?-O-methyl cellobioside sulfate (mCBS) or a pharmaceutically acceptable salt thereof (e.g., mCBS.Type: GrantFiled: December 14, 2018Date of Patent: April 18, 2023Assignees: The Australian National University, Griffith UniversityInventors: Christopher Parish, Connor O'Meara, Lucy Coupland, Benjamin Ju Chye Quah, Farzaneh Kordbacheh, Anna Orlov, Anna Browne, Ross Stephens, Gregory David Tredwell, Lee Andrew Philip, Karen Knox, Laurence Mark von Itzstein, Chih-Wei Chang, Anne Brüstle, David Anak Simon Davis
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Publication number: 20220168327Abstract: The present invention relates to compounds with high chemical stability and methods for inhibiting the pathological activity of NETs in a subject. In particular, the invention relates to compounds with high chemical stability, uses thereof and methods for inhibiting or ameliorating NET mediated ailments (such as, for example, sepsis, systemic immune response syndrome (SIRS) and ischemia reperfusion injury (IRI)). More particularly, the invention relates to methods and uses of a polyanionic sulfated cellobioside modified with a small uncharged glycosidically linked substituent at its reducing terminus, wherein the presence of the substituent results in a molecule with high chemical stability without affecting the ability of the molecule to be effective in the therapy of NET mediated ailments. For example, the present invention relates to methods and uses of ?-O-methyl cellobioside sulfate (mCBS) or a pharmaceutically acceptable salt thereof (e.g., mCBS.Type: ApplicationFiled: February 25, 2019Publication date: June 2, 2022Inventors: Christopher Parish, Connor O'Meara, Lucy Coupland, Benjamin Ju Chye Quah, Farzaneh Kordbacheh, Anna Bezos, Anna Browne, Ross Stephens, Gregory David Tredwell, Lee Andrew Philip, Karen Knox, Laurence Mark von Itzstein, Chih-Wei Chang, Anne Brüstle, David Anak Simon Davis
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Publication number: 20210205343Abstract: The present invention relates to compounds with high chemical stability and methods for inhibiting the pathological activity of extracellular histones in a subject. In particular, the invention relates to compounds with high chemical stability, uses thereof and methods for inhibiting or ameliorating extracellular histone mediated ailments (such as, for example, sepsis, systemic immune response syndrome (SIRS) and ischemia reperfusion injury (IRI)). More particularly, the invention relates to methods and uses of a polyanionic sulfated cellobioside modified with a small uncharged glycosidically linked substituent at its reducing terminus, wherein the presence of the substituent results in a molecule with high chemical stability without affecting the ability of the molecule to be effective in the therapy of extracellular histone mediated ailments. For example, the present invention relates to methods and uses of ?-O-methyl cellobioside sulfate (mCBS) or a pharmaceutically acceptable salt thereof (e.g., mCBS.Type: ApplicationFiled: December 14, 2018Publication date: July 8, 2021Inventors: Christopher Parish, Connor O'Meara, Lucy Coupland, Benjamin Ju Chye Quah, Farzaneh Kordbacheh, Anna Bezos, Anna Browne, Ross Stephens, Gregory David Tredwell, Lee Andrew Philip, Karen Knox, Laurence Mark von Itzstein, Chih-Wei Chang, Anne Brüstle, David Anak Simon Davis