Patents by Inventor Heather Clark
Heather Clark 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: 20150250797Abstract: Co-crystals comprising at least one nutraceutical compound and at least one co-crystal former with or without impurities. These co-crystals may be included in compositions (optionally also including other components such as pharmaceutically acceptable excipients, other nutritional supplements, etc.) having utility as pharmaceuticals, nutraceuticals, nutritional supplements, and foodstuffs.Type: ApplicationFiled: November 5, 2014Publication date: September 10, 2015Inventors: Michael John ZAWOROTKO, Heather CLARK, Arora KAPILDEV, Padmini KAVURU, Roland Douglas SHYTLE, Twarita PUJARI, Lissette MARSHALL, Tien Teng ONG
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Patent number: 8268567Abstract: Chemical reactions occurring within a living cell are measured in a manner that does not affect the viability of the cell or the reaction under study. In one embodiment, one or more sensors are introduced into the cell and/or covalently associated with the exterior cell membrane. The sensor(s) emit an observable signal indicating a value of a parameter associated with the chemical reaction, e.g., the concentration of a reaction product. Because cell viability is not compromised, the cell may be stimulated (e.g., by subjection to an agonist or antagonist, a pathogen, a pharmaceutical compound, or a potential toxin) so as to affect the reaction under study.Type: GrantFiled: September 15, 2006Date of Patent: September 18, 2012Assignee: The Charles Stark Draper LaboratoryInventor: Heather Clark
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Patent number: 7910065Abstract: Chemical reactions occurring within a living cell are measured in a manner that does not affect the viability of the cell or the reaction under study. In one embodiment, one or more sensors are introduced into the cell and/or covalently associated with the exterior cell membrane. The sensor(s) emit an observable signal indicating a value of a parameter associated with the chemical reaction, e.g., the concentration of a reaction product. Because cell viability is not compromised, the cell may be stimulated (e.g., by subjection to an agonist or antagonist, a pathogen, a pharmaceutical compound, or a potential toxin) so as to affect the reaction under study.Type: GrantFiled: October 16, 2009Date of Patent: March 22, 2011Assignee: The Charles Stark Draper Laboratory, Inc.Inventor: Heather Clark
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Publication number: 20100227334Abstract: Chemical reactions occurring within a living cell are measured in a manner that does not affect the viability of the cell or the reaction under study. In one embodiment, one or more sensors are introduced into the cell and/or covalently associated with the exterior cell membrane. The sensor(s) emit an observable signal indicating a value of a parameter associated with the chemical reaction, e.g., the concentration of a reaction product. Because cell viability is not compromised, the cell may be stimulated (e.g., by subjection to an agonist or antagonist, a pathogen, a pharmaceutical compound, or a potential toxin) so as to affect the reaction under study.Type: ApplicationFiled: September 15, 2006Publication date: September 9, 2010Inventor: Heather Clark
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Publication number: 20100041067Abstract: Chemical reactions occurring within a living cell are measured in a manner that does not affect the viability of the cell or the reaction under study. In one embodiment, one or more sensors are introduced into the cell and/or covalently associated with the exterior cell membrane. The sensor(s) emit an observable signal indicating a value of a parameter associated with the chemical reaction, e.g., the concentration of a reaction product. Because cell viability is not compromised, the cell may be stimulated (e.g., by subjection to an agonist or antagonist, a pathogen, a pharmaceutical compound, or a potential toxin) so as to affect the reaction under study.Type: ApplicationFiled: October 16, 2009Publication date: February 18, 2010Inventor: Heather Clark
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Patent number: 6900891Abstract: Optical fiber sensors and fiberless optical sensors for measuring analytes, and in particular nitric oxide, are described utilizing metals, and more particularly, metal colloids. Proteins (or fragments thereof) with selective binding are immobilized on metal particles. The proteins may be dye-labeled for increased sensitivity.Type: GrantFiled: July 30, 2003Date of Patent: May 31, 2005Assignee: The Regents of the University of MichiganInventors: Raoul Kopelman, Heather Clark, Susan Barker
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Publication number: 20040190813Abstract: Optical fiber sensors and fiberless optical sensors for measuring analytes, and in particular nitric oxide, are described utilizing metals, and more particularly, metal colloids. Proteins (or fragments thereof) with selective binding are immobilized on metal particles. The proteins may be dye-labeled for increased sensitivity.Type: ApplicationFiled: July 30, 2003Publication date: September 30, 2004Applicant: The Regents of the University of MichiganInventors: Raoul Kopelman, Heather Clark, Susan Barker
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Patent number: 6636652Abstract: Optical fiber sensors and fiberless optical sensors for measuring analytes, and in particular nitric oxide, are described utilizing metals, and more particularly, metal colloids. Proteins (or fragments thereof) with selective binding are immobilized on metal particles. The proteins may be dye-labeled for increased sensitivity. Additionally, metals functionally linked to reporter dyes are described in addition to the incorporation of reference compounds for ratiometric measurements.Type: GrantFiled: August 2, 1999Date of Patent: October 21, 2003Assignee: The Regents of the University of MichiganInventors: Raoul Kopelman, Heather Clark, Susan Barker
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Publication number: 20020155600Abstract: Fiberless optical sensors (plasticized PVC, acrylamide or gold particles) are described having a size ranging from between approximately 1 micrometer and 1 nanometer in diameter. The sensors comprise ionophores useful for the detection of intracellular analytes.Type: ApplicationFiled: April 30, 2002Publication date: October 24, 2002Inventors: Raoul Kopelman, Heather Clark, Eric Monson, Stephen Parus, Martin Philbert, Bjorn Thorsrud
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Patent number: 6379955Abstract: Fiberless optical sensors (plasticized PVC, acrylamide or gold particles) are described having a size ranging from between approximately 1 micrometer and 1 nanometer in diameter. The sensors comprise ionophores useful for the detection of intracellular analytes.Type: GrantFiled: September 20, 2000Date of Patent: April 30, 2002Assignee: Regents of the University of MichiganInventors: Raoul Kopelman, Heather Clark, Eric Monson, Stephen Parus, Martin Philbert, Bjorn Thorsrud
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Patent number: 6272262Abstract: Fiber-optic sensors and fiberless sensors are made for measuring analytes, in particular nitric oxide. The sensors contain a compound specific for the analyte such a nitric oxide-binding compound. Fiber-optic sensors contain the compound immobilized on the tip of the fiber. The tip may be coated with an inert coating such as a metal layer and the compound is immobilized on the coating. Nitric oxide-binding compounds include heme-binding proteins, porphyrin group-containing proteins, heme group-containing proteins, dye-labeled porphyrin group-containing proteins and dye-labeled heme group-containing proteins. In a specific embodiment, dye-labeled cytochrome c′ such as fluorescein-labeled cytochrome c′ is immobilized on a fiber tip containing a gold colloid layer. The fiberless sensors are small enough to enter a single mammalian cell relatively non-invasively.Type: GrantFiled: July 6, 1999Date of Patent: August 7, 2001Assignee: The Regents of the University of MichiganInventors: Raoul Kopelman, Heather Clark, Susan Barker
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Patent number: 6143558Abstract: Fiberless optical sensors (plasticized PVC, acrylamide or gold particles) are described having a size ranging from between approximately 1 micrometer and 1 nanometer in diameter. The sensors comprise ionophores useful for the detection of intracellular analytes.Type: GrantFiled: July 8, 1997Date of Patent: November 7, 2000Assignee: The Regents of the University of MichiganInventors: Raoul Kopelman, Heather Clark, Eric Monson, Stephen Parus, Martin Philbert, Bjorn Thorsrud
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Patent number: 6002817Abstract: Optical fiber sensors and fiberless optical sensors for measuring analytes, and in particular nitric oxide, are described utilizing metals, and more particularly, metal colloids. Proteins (or fragments thereof) with selective binding are immobilized on metal particles. The proteins may be dye-labeled for increased sensitivity.Type: GrantFiled: September 29, 1997Date of Patent: December 14, 1999Assignee: The Regents of the University of MichiganInventors: Raoul Kopelman, Heather Clark, Susan Barker