Patents by Inventor Amir Tchelet
Amir Tchelet 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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Publication number: 20180002753Abstract: The present invention provides a method for treating a human subject afflicted with multiple sclerosis or a single clinical attack consistent with multiple sclerosis with a pharmaceutical composition comprising glatiramer acetate and a pharmaceutically acceptable carrier, comprising the steps of: (i) determining a genotype of the subject at a location corresponding to the location of one or more single nucleotide polymorphisms (SNPs) selected from the group consisting of: Group 1, (ii) identifying the subject as a predicted responder to glatiramer acetate if the genotype of the subject contains one or more A alleles at the location of Group 2, one or more C alleles at the location of Group 3, one or more G alleles at the location of Group 4, or one or more T alleles at the location of kgp18432055, kgp279772, kgp3991733 or kgp7242489; and (iii) administering the pharmaceutical composition comprising glatiramer acetate and a pharmaceutically acceptable carrier to the subject only if the subject is identifType: ApplicationFiled: January 19, 2017Publication date: January 4, 2018Applicant: Teva Pharmaceutical Industries, Ltd.Inventors: Amir TCHELET, Michael HAYDEN, Liat HAYARDENY, Colin James Douglas ROSS, Iris GROSSMAN, David LADKANI
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Patent number: 9702007Abstract: The present invention provides a method for treating a human subject afflicted with multiple sclerosis or a single clinical attack consistent with multiple sclerosis with a pharmaceutical composition comprising glatiramer acetate and a pharmaceutically acceptable carrier, comprising the steps of: (i) determining a genotype of the subject at a location corresponding to the location of one or more single nucleotide polymorphisms (SNPs) selected from the group consisting of: Group 1, (ii) identifying the subject as a predicted responder to glatiramer acetate if the genotype of the subject contains one or more A alleles at the location of Group 2, one or more C alleles at the location of Group 3, one or more G alleles at the location of Group 4, or one or more T alleles at the location of kgp18432055, kgp279772, kgp3991733 or kgp7242489; and (iii) administering the pharmaceutical composition comprising glatiramer acetate and a pharmaceutically acceptable carrier to the subject only if the subject is identifType: GrantFiled: October 21, 2014Date of Patent: July 11, 2017Assignee: TEVA PHARMACEUTICALS INDUSTRIES, LTD.Inventors: Amir Tchelet, Michael Hayden, Liat Hayardeny, Colin James Douglas Ross, Iris Grossman, David Ladkani
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Patent number: 9499868Abstract: This invention provides a method for treating a human subject afflicted with multiple sclerosis or a single clinical attack consistent with multiple sclerosis with a pharmaceutical composition comprising glatiramer acetate and a pharmaceutically acceptable carrier, comprising the steps of 1) identifying whether the human subject is a predicted responder to glatiramer acetate by determining the genotype of the subject at one or more single nucleotide polymorphisms (SNPs) selected from the group consisting of the SNPs in Group 1; and 2) administering the pharmaceutical composition comprising glatiramer acetate and a pharmaceutically acceptable carrier to the subject only if the subject is identified as a predicted responder to glatiramer acetate.Type: GrantFiled: August 25, 2014Date of Patent: November 22, 2016Assignee: TEVA PHARMACEUTICAL INDUSTRIES, LTD.Inventors: Amir Tchelet, Fabio Macciardi, Joseph Levy
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Publication number: 20150275302Abstract: This application provides a method for treating a human subject afflicted with Parkinson's disease (PD) with a pharmaceutical composition comprising rasagiline or a pharmaceutically acceptable salt of rasagiline, and a pharmaceutically acceptable carrier, comprising the steps of: (i) obtaining a biological sample comprising a genome from the human subject afflicted with Parkinson's disease; (ii) assaying the DNA or RNA of the biological sample from the human subject using a probe or a primer, to determine the diploid genotype of the human subject at single nucleotide polymorphism (SNP) rs1076560 or rs2283265; (iii) identifying the human subject as a predicted responder to rasagiline if the diploid genotype is CC at rs1076560, CC at rs2283265, or CC at both rs1076560 and rs2283265; and (iv) administering the pharmaceutical composition comprising rasagiline and a pharmaceutically acceptable carrier to the human subject if the human subject is identified as a predicted responder to rasagiline.Type: ApplicationFiled: March 31, 2015Publication date: October 1, 2015Applicant: TEVA PHARMACEUTICAL INDUSTRIES, LTD.Inventors: Mario Masellis, Joanne Knight, Maureen Shannon Collinson, Anthony Edward Lang, James Lowery Kennedy, Joseph Levy, Amir Tchelet, Iris Grossman, Eli Eyal, Ofra Barnett
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Publication number: 20150110733Abstract: The present invention provides a method for treating a human subject afflicted with multiple sclerosis or a single clinical attack consistent with multiple sclerosis with a pharmaceutical composition comprising glatiramer acetate and a pharmaceutically acceptable carrier, comprising the steps of: (i) determining a genotype of the subject at a location corresponding to the location of one or more single nucleotide polymorphisms (SNPs) selected from the group consisting of: Group 1, (ii) identifying the subject as a predicted responder to glatiramer acetate if the genotype of the subject contains one or more A alleles at the location of Group 2, one or more C alleles at the location of Group 3, one or more G alleles at the location of Group 4, or one or more T alleles at the location of kgp18432055, kgp279772, kgp3991733 or kgp7242489; and (iii) administering the pharmaceutical composition comprising glatiramer acetate and a pharmaceutically acceptable carrier to the subject only if the subject is identifType: ApplicationFiled: October 21, 2014Publication date: April 23, 2015Applicant: TEVA PHARMACEUTICAL INDUSTRIES, LTD.Inventors: Amir TCHELET, Michael HAYDEN, Liat HAYARDENY, Colin James Douglas ROSS, Iris GROSSMAN, David LADKANI
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Publication number: 20150045306Abstract: This invention provides a method for treating a human subject afflicted with multiple sclerosis or a single clinical attack consistent with multiple sclerosis with a pharmaceutical composition comprising glatiramer acetate and a pharmaceutically acceptable carrier, comprising the steps of 1) identifying whether the human subject is a predicted responder to glatiramer acetate by determining the genotype of the subject at one or more single nucleotide polymorphisms (SNPs) selected from the group consisting of the SNPs in Group 1; and 2) administering the pharmaceutical composition comprising glatiramer acetate and a pharmaceutically acceptable carrier to the subject only if the subject is identified as a predicted responder to glatiramer acetate.Type: ApplicationFiled: August 25, 2014Publication date: February 12, 2015Applicant: TEVA PHARMACEUTICAL INDUSTRIES, LTD.Inventors: Amir Tchelet, Fabio Macciardi, Joseph Levy
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Patent number: 8815511Abstract: This invention provides a method for treating a human subject afflicted with multiple sclerosis or a single clinical attack consistent with multiple sclerosis with a pharmaceutical composition comprising glatiramer acetate and a pharmaceutically acceptable carrier, comprising the steps of 1) identifying whether the human subject is a predicted responder to glatiramer acetate by determining the genotype of the subject at one or more single nucleotide polymorphisms (SNPs) selected from the group consisting of the SNPs in Group 1; and 2) administering the pharmaceutical composition comprising glatiramer acetate and a pharmaceutically acceptable carrier to the subject only if the subject is identified as a predicted responder to glatiramer acetate.Type: GrantFiled: October 9, 2012Date of Patent: August 26, 2014Assignee: Teva Pharmaceutical Industries, Ltd.Inventors: Amir Tchelet, Fabio Mucciardi, Joseph Levy