Patents by Inventor James Patrick Langan
James Patrick Langan 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: 10806101Abstract: Disclosed is a method to prepare a myceliated high-protein food product, which includes culturing a fungi an aqueous media which has a high level of plant protein, for example at least 20 g protein per 100 g dry weight with excipients, on a dry weight basis. The plant protein can include pea, rice and/or chickpea. The fungi can include comprises Lentinula spp., Agaricus spp., Pleurotus spp., Boletus spp., or Laetiporus spp. After culturing, the material is harvested by obtaining the myceliated high-protein food product via drying or concentrating. The resultant myceliated high-protein food product may have its taste, flavor, or aroma modulated, such as by increasing desirable flavors or tastes such as meaty, savory, umami, popcorn and/or by decreasing undesirable flavors such as bitterness, astringency or beaniness. Deflavoring and/or deodorizing as compared to non-myceliated control materials can also be observed. Also disclosed are myceliated high-protein food products.Type: GrantFiled: July 2, 2018Date of Patent: October 20, 2020Assignee: MycoTechnology, Inc.Inventors: Bhupendra Kumar Soni, Brooks John Kelly, James Patrick Langan, Huntington Davis, Alan D. Hahn
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Publication number: 20200268011Abstract: The present invention includes a method of myceliating coffee beans including sterilizing the coffee beans, preparing a liquid tissue culture including an aliquot of fungal liquid tissue culture derived from liquid state fermentation, and inoculating the coffee beans with the fungal liquid tissue culture. Next, the step of enabling mycelium growth on the coffee includes controlling temperature, humidity, and sterility of the environment. The aliquot of fungal liquid tissue culture is optionally agitated to form hyphael conglomerations of mycelium having sizes of less than 1 mm in diameter.Type: ApplicationFiled: March 2, 2020Publication date: August 27, 2020Applicant: MycoTechnology, Inc.Inventors: Brooks John KELLY, James Patrick LANGAN
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Patent number: 10709157Abstract: A method enhancing the taste of a food product, which includes the steps of culturing a mycelial liquid tissue culture in a media, collecting a mycelium-free portion of the mycelial liquid tissue culture, e.g., the supernatant fluid of the mycelial liquid tissue culture, and adding the collected supernatant fluid to a food product in an amount sufficient to enhance the food product's taste. The mycelial liquid tissue culture may include C. sinensis, and the culture step may be carried out for between about one and sixty days. The food products include non-nutritive sweeteners, alcoholic beverages, teas, coffees, bitter tasting foods such as cranberry, grapefruit, pomegranate, and coconut, as well as dietary supplements, food additives, pharmaceuticals, and nutraceuticals. The present invention also includes compositions of food products in combination with mycelium-free fluids.Type: GrantFiled: February 21, 2017Date of Patent: July 14, 2020Assignee: MycoTechnology, Inc.Inventors: James Patrick Langan, Brooks John Kelly, Huntington Davis, Bhupendra Kumar Soni
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Publication number: 20200060310Abstract: Provided is a food composition which include a myceliated high-protein food product and methods to make such compositions, which are mixtures of myceliated high-protein food products and other edible materials. A food composition includes dairy alternative products, ready to mix beverages and beverage bases; extruded and extruded/puffed products; sheeted baked goods; meat analogs and extenders; baked goods and baking mixes; granola; and soups/soup bases. Food compositions also include texturized plant protein which can be used for making meat-structured plant protein meat analog or meat extender products. The food compositions have reduced undesirable flavors and reduced undesirable aromas due to use of myceliated high-protein food products as compared to use of similar high-protein material that is not myceliated.Type: ApplicationFiled: October 29, 2019Publication date: February 27, 2020Inventors: Lisa SCHMIDT, Todd McDONALD, Savita JENSEN, Joseph George AKAMITTATH, Alan D. HAHN, Anthony J. CLARK, Bhupendra Kumar SONI, James Patrick LANGAN, Brooks John KELLY, Huntington DAVIS
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Publication number: 20190364921Abstract: Provided is a method for production of an improved myceliated green tea with increased herbal/vegetal/hay or floral notes, the method including the steps of providing green tea leaves, providing a fungal aqueous culture with Cordyceps sinensis fungus, inoculating the green tea leaves with at least a portion of the fungal liquid tissue culture; and culturing the fungal mycelium with the green tea leaves to produce the improved myceliated green tea, and teas produced by the methods disclosed.Type: ApplicationFiled: August 19, 2019Publication date: December 5, 2019Inventors: Brooks John KELLY, James Patrick LANGAN
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Publication number: 20190254305Abstract: The present invention provides a method for the preparation of a myceliated cacao bean or other agricultural product. This method includes providing cacao beans or other agricultural substrate, optionally hydrating the cacao beans or other agricultural product, and optionally pasteurizing or sterilizing the cacao beans or other agricultural substrate to provide prepared cacao beans or other agricultural substrate, and a step of inoculating the prepared cacao beans or other agricultural substrate with a prepared fungal component and culturing the inoculated cacao beans or other agricultural substrate to prepare the myceliated product.Type: ApplicationFiled: January 29, 2019Publication date: August 22, 2019Inventors: Brooks John KELLY, James Patrick LANGAN
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Patent number: 10231469Abstract: The present invention provides a method for the preparation of a myceliated cacao bean or other agricultural product. This method includes providing cacao beans or other agricultural substrate, optionally hydrating the cacao beans or other agricultural product, and optionally pasteurizing or sterilizing the cacao beans or other agricultural substrate to provide prepared cacao beans or other agricultural substrate, and a step of inoculating the prepared cacao beans or other agricultural substrate with a prepared fungal component and culturing the inoculated cacao beans or other agricultural substrate to prepare the myceliated product.Type: GrantFiled: March 16, 2015Date of Patent: March 19, 2019Assignee: MycoTechnology, Inc.Inventors: Brooks John Kelly, James Patrick Langan
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Publication number: 20180303044Abstract: Disclosed is a method to prepare a myceliated high-protein food product, which includes culturing a fungi an aqueous media which has a high level of plant protein, for example at least 20 g protein per 100 g dry weight with excipients, on a dry weight basis. The plant protein can include pea, rice and/or chickpea. The fungi can include comprises Lentinula spp., Agaricus spp., Pleurotus spp., Boletus spp., or Laetiporus spp. After culturing, the material is harvested by obtaining the myceliated high-protein food product via drying or concentrating. The resultant myceliated high-protein food product may have its taste, flavor, or aroma modulated, such as by increasing desirable flavors or tastes such as meaty, savory, umami, popcorn and/or by decreasing undesirable flavors such as bitterness, astringency or beaniness. Deflavoring and/or deodorizing as compared to non-myceliated control materials can also be observed. Also disclosed are myceliated high-protein food products.Type: ApplicationFiled: July 2, 2018Publication date: October 25, 2018Applicant: Mycotechnology, Inc.Inventors: Bhupendra Kumar SONI, Brooks John KELLY, James Patrick LANGAN, Huntington DAVIS, Alan D. HAHN
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Patent number: 10010103Abstract: Disclosed is a method to prepare a myceliated high-protein food product, which includes culturing a fungi an aqueous media which has a high level of protein, for example at least 20 g protein per 100 g dry weight with excipients, on a dry weight basis. The fungi can include Pleurotus ostreatus, Pleurotus eryngii, Lepista nuda, Hericium erinaceus, Lentinula edodes, Agaricus blazeii, Laetiporus sulfureus and combinations thereof. After culturing, the material is harvested by obtaining the myceliated high-protein food product via drying or concentrating. The resultant myceliated high-protein food product may have its taste, flavor, or aroma modulated, such as by increasing desirable flavors or tastes such as meaty, savory, umami, popcorn and/or by decreasing undesirable flavors such as bitterness, astringency or beaniness. Deflavoring and/or deodorizing as compared to non-myceliated control materials can also be observed. Also disclosed are myceliated high-protein food products.Type: GrantFiled: April 14, 2017Date of Patent: July 3, 2018Assignee: Mycotechnology, Inc.Inventors: Bhupendra Kumar Soni, Brooks John Kelly, James Patrick Langan, Huntington Davis, Alan D. Hahn
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Publication number: 20180064148Abstract: The present invention provides a method for the preparation of a gluten-containing grain having lowered levels of gluten. The method includes providing a prepared gluten-containing grain which may be optionally sterilized or pasteurized. The prepared gluten-containing grain is then inoculated with a prepared fungal component and incubated. In one embodiment the prepared fungal component myceliates the prepared gluten-containing grain while incubated and during this process hydrolyzes gluten in the prepared gluten-containing grain. The present invention also includes a gluten-containing grain having lowered levels of gluten which has been prepared by the methods of the invention.Type: ApplicationFiled: February 26, 2016Publication date: March 8, 2018Inventors: James Patrick LANGAN, John Brooks KELLY, Huntington DAVIS, Alan D. HAHN
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Publication number: 20170295837Abstract: Disclosed is a method to prepare a myceliated high-protein food product, which includes culturing a fungi an aqueous media which has a high level of protein, for example at least 20 g protein per 100 g dry weight with excipients, on a dry weight basis. The fungi can include Pleurotus ostreatus, Pleurotus eryngii, Lepista nuda, Hericium erinaceus, Lentinula edodes, Agaricus blazeii, Laetiporus sulfureus and combinations thereof. After culturing, the material is harvested by obtaining the myceliated high-protein food product via drying or concentrating. The resultant myceliated high-protein food product may have its taste, flavor, or aroma modulated, such as by increasing desirable flavors or tastes such as meaty, savory, umami, popcorn and/or by decreasing undesirable flavors such as bitterness, astringency or beaniness. Deflavoring and/or deodorizing as compared to non-myceliated control materials can also be observed. Also disclosed are myceliated high-protein food products.Type: ApplicationFiled: April 14, 2017Publication date: October 19, 2017Inventors: Bhupendra Kumar Soni, Brooks John Kelly, James Patrick Langan, Huntington Davis, Alan D. Hahn
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Publication number: 20170156383Abstract: A method enhancing the taste of a food product, which includes the steps of culturing a mycelial liquid tissue culture in a media, collecting a mycelium-free portion of the mycelial liquid tissue culture, e.g., the supernatant fluid of the mycelial liquid tissue culture, and adding the collected supernatant fluid to a food product in an amount sufficient to enhance the food product's taste. The mycelial liquid tissue culture may include C. sinensis, and the culture step may be carried out for between about one and sixty days. The food products include non-nutritive sweeteners, alcoholic beverages, teas, coffees, bitter tasting foods such as cranberry, grapefruit, pomegranate, and coconut, as well as dietary supplements, food additives, pharmaceuticals, and nutraceuticals. The present invention also includes compositions of food products in combination with mycelium-free fluids.Type: ApplicationFiled: February 21, 2017Publication date: June 8, 2017Inventors: James Patrick LANGAN, Brooks John KELLY, Huntington DAVIS, Bhupendra Kumar SONI
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Patent number: 9572364Abstract: The present invention includes a method for enhancing the taste of a food product, which includes the steps of culturing a submerged mycelial liquid tissue culture in a media, collecting the supernatant fluid of the submerged mycelial liquid tissue culture, and adding the collected supernatant fluid to a food product in an amount sufficient to enhance the food product's taste. In one embodiment, the mycelial liquid tissue culture comprises C. sinensis, and the culture step is carried out for between about one and sixty days. The food products include quinoa, amaranth, whole wheat, stevia plant parts, steviol glycoside, aspartame, acesulfame-K, sucralose, carbohydrates, salt substitutes such as potassium chloride, monk fruit, cacao, cacao liquor, tea, ginseng, pea protein, sugar alcohol, coffee, cranberry, grapefruit, pomegranate, coconut, wine, beer, liquor and spirits. The present invention also includes products made by the disclosed methods.Type: GrantFiled: May 2, 2016Date of Patent: February 21, 2017Assignee: MYCOTECHNOLOGY, INC.Inventors: James Patrick Langan, Brooks John Kelly, Huntington Davis, Bhupendra Kumar Soni
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Patent number: 9572363Abstract: The present invention includes a method for enhancing the taste of a food product, which includes the steps of culturing a submerged mycelial liquid tissue culture in a media, collecting the supernatant fluid of the submerged mycelial liquid tissue culture, and adding the collected supernatant fluid to a food product in an amount sufficient to enhance the food product's taste. In one embodiment, the mycelial liquid tissue culture comprises C. sinensis, and the culture step is carried out for between about one and sixty days. The food products include stevia plant parts, steviol glycoside, aspartame, acesulfame-K, sucralose, carbohydrates, monk fruit, cacao, cacao liquor, tea, ginseng, pea protein, sugar alcohol, coffee, cranberry, grapefruit, pomegranate, coconut, wine, beer, liquor and spirits. The present invention also includes products made by the disclosed methods.Type: GrantFiled: August 26, 2015Date of Patent: February 21, 2017Assignee: MYCOTECHNOLOGY, INC.Inventors: James Patrick Langan, Brooks John Kelly, Huntington Davis
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Publication number: 20160249660Abstract: The present invention includes a method for enhancing the taste of a food product, which includes the steps of culturing a submerged mycelial liquid tissue culture in a media, collecting the supernatant fluid of the submerged mycelial liquid tissue culture, and adding the collected supernatant fluid to a food product in an amount sufficient to enhance the food product's taste. In one embodiment, the mycelial liquid tissue culture comprises C. sinensis, and the culture step is carried out for between about one and sixty days. The food products include quinoa, amaranth, whole wheat, stevia plant parts, steviol glycoside, aspartame, acesulfame-K, sucralose, carbohydrates, salt substitutes such as potassium chloride, monk fruit, cacao, cacao liquor, tea, ginseng, pea protein, sugar alcohol, coffee, cranberry, grapefruit, pomegranate, coconut, wine, beer, liquor and spirits. The present invention also includes products made by the disclosed methods.Type: ApplicationFiled: May 2, 2016Publication date: September 1, 2016Inventors: James Patrick LANGAN, Brooks John KELLY, Huntington DAVIS, Bhupendra Kumar SONI
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Patent number: 9427008Abstract: The present invention relates to a method of myceliation of agricultural substrates for producing functional foods with health benefits, wherein the method comprises of inoculating an agricultural substrate with one or more species of pure fungal culture comprising Basidiomycota and Ascomycota derived from liquid state fermentation, enabling mycelial growth on the agricultural substrate by controlling growth conditions and harvesting of a myceliated agricultural product after the mycelial growth reaches a desired stage. The present invention further provides a myceliated agricultural product enriched with nutrients, processed into a nutraceutical or functional food for human consumption.Type: GrantFiled: April 9, 2013Date of Patent: August 30, 2016Assignee: MYCOTECHNOLOGY, INC.Inventors: Brooks John Kelly, James Patrick Langan
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Publication number: 20160120201Abstract: The present invention provides a method for the preparation of a myceliated coffee product. This method comprises providing green coffee beans and optionally heat treating the green coffee beans to provide prepared green coffee beans. Furthermore, a step of inoculating the prepared green coffee beans with a prepared fungal component and culturing the inoculum to prepare the myceliated coffee product is included. The present invention discusses different embodiments of the invention and the various products that can be developed by altering certain parameters, such as green coffee bean moisture content. The methods of the instant invention result in prepared green coffee beans and myceliated coffee products having reduced levels of undesirable taste components, such as 2-furanmethanol, and increased levels of fungal metabolites, such as ?-glucans and other polysaccharides, relative to starting green coffee beans.Type: ApplicationFiled: March 16, 2015Publication date: May 5, 2016Inventors: Brooks John KELLY, James Patrick LANGAN
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Publication number: 20160058049Abstract: The present invention includes a method for enhancing the taste of a food product, which includes the steps of culturing a submerged mycelial liquid tissue culture in a media, collecting the supernatant fluid of the submerged mycelial liquid tissue culture, and adding the collected supernatant fluid to a food product in an amount sufficient to enhance the food product's taste. In one embodiment, the mycelial liquid tissue culture comprises C. sinensis, and the culture step is carried out for between about one and sixty days. The food products include stevia plant parts, steviol glycoside, aspartame, acesulfame-K, sucralose, carbohydrates, monk fruit, cacao, cacao liquor, tea, ginseng, pea protein, sugar alcohol, coffee, cranberry, grapefruit, pomegranate, coconut, wine, beer, liquor and spirits. The present invention also includes products made by the disclosed methods.Type: ApplicationFiled: August 26, 2015Publication date: March 3, 2016Inventors: James Patrick LANGAN, Brooks John KELLY, Huntington DAVIS
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Publication number: 20150272155Abstract: The present invention includes a method of myceliating coffee beans including sterilizing the coffee beans, preparing a liquid tissue culture including an aliquot of fungal liquid tissue culture derived from liquid state fermentation, and inoculating the coffee beans with the fungal liquid tissue culture. Next, the step of enabling mycelium growth on the coffee includes controlling temperature, humidity, and sterility of the environment. The aliquot of fungal liquid tissue culture is optionally agitated to form hyphael conglomerations of mycelium having sizes of less than 1 mm in diameter.Type: ApplicationFiled: June 9, 2015Publication date: October 1, 2015Inventors: Brooks John Kelly, James Patrick Langan
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Publication number: 20150257406Abstract: The present invention provides a method for the preparation of a myceliated cacao bean or other agricultural product. This method includes providing cacao beans or other agricultural substrate, optionally hydrating the cacao beans or other agricultural product, and optionally pasteurizing or sterilizing the cacao beans or other agricultural substrate to provide prepared cacao beans or other agricultural substrate, and a step of inoculating the prepared cacao beans or other agricultural substrate with a prepared fungal component and culturing the inoculated cacao beans or other agricultural substrate to prepare the myceliated product.Type: ApplicationFiled: March 16, 2015Publication date: September 17, 2015Inventors: Brooks John KELLY, James Patrick LANGAN