Arlene M.
Arlene M. Ascarate, Gilbert, AZ US
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20150231191 | PHARMACEUTICAL COMPOSITIONS COMPRISING PLANT EXTRACTS AND METHODS FOR REDUCING DURATION OF A COMMON COLD USING SAME - The present disclosure describes pharmaceutical compositions and methods for reducing duration, intensity, and/or bothersomeness of common colds in humans and for reducing severity or duration of common cold symptoms such as nasal congestion, runny nose, watery eyes, dry/scratchy throat and sneezing in humans exhibiting such symptoms. The compositions herein comprise extracts of at least one of | 08-20-2015 |
Arlene M. Brown, Normandy Park, WA US
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20150014308 | EDGE SEALS FOR COMPOSITE STRUCTURE FUEL TANKS - Edge seals for composite structure fuel tanks are disclosed herein. One disclosed apparatus includes a seal covering an exposed edge of a carbon fiber reinforced composite fuel tank, where the seal comprises a layer of dielectric material to insulate carbon fibers at the exposed edge from fuel in the tank. | 01-15-2015 |
Arlene M. Fosmer, Minnetonka, MN US
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20100159546 | METABOLIC ENGINEERING OF YEASTS FOR THE PRODUCTION OF 1-BUTANOL - The present invention provides genetically modified yeast cells, and methods of using those yeast cells, to produce 1-butanol. The yeast cell can be selected from the genera | 06-24-2010 |
Arlene M. Fosmer, Eden Prairie, MN US
Patent application number | Description | Published |
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20130302866 | COMPOSITIONS AND METHODS FOR SUCCINATE PRODUCTION - The present application provides genetically modified yeast cell comprising an active succinate fermentation pathway, as well as methods of using these cells to produce succinate. | 11-14-2013 |
20130309736 | COMPOSITIONS AND METHODS FOR MALATE AND FUMARATE PRODUCTION - The present application provides genetically modified yeast cell comprising an active malate fermentation pathway and/or an active fumarate fermentation pathway, as well as methods of using these cells to produce malate and/or fumarate. | 11-21-2013 |
20140363862 | Methods for Succinate Production - Provided herein are genetically modified yeast cells for the production of succinate, methods of making these yeast cells, and methods of using these cells to produce succinate. | 12-11-2014 |
20150176038 | Yeast Cells Having NADP(H)-Dependent Reductive TCA Pathway from Pyruvate to Succinate - Recombinant yeast cells contain a reductive TCA pathway from phosphoenolpyruvate or pyruvate to succinate. At least one metabolic step in the pathway includes a reaction of NADPH to produce NADP+. The yeast cell contains at least one exogenous NADPH-dependent gene in the pathway from phosphoenolpyruvate or pyruvate to succinate, preferably an NADPH-dependent malate dehydrogensase or fumarate reducase gene (or both). | 06-25-2015 |
20150203877 | Yeast Cells Having Reductive TCA Pathway from Pyruvate to Succinate and Overexpressing an Exongenous NAD(P)+ Transhydrogenase Enzyme - Yeast cells having a reductive TCA pathway from pyruvate or phosphoenolpyruvate to succinate, and which include at least one exogenous gene overexpressing an enzyme in that pathway, further contain an exogenous transhydrogenase gene. | 07-23-2015 |