EP4601490A1 - Capsule-containing pouched products - Google Patents
Capsule-containing pouched productsInfo
- Publication number
- EP4601490A1 EP4601490A1 EP23793069.8A EP23793069A EP4601490A1 EP 4601490 A1 EP4601490 A1 EP 4601490A1 EP 23793069 A EP23793069 A EP 23793069A EP 4601490 A1 EP4601490 A1 EP 4601490A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- pouched product
- acid
- composition
- weight
- nicotine
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
Links
Classifications
-
- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24B—MANUFACTURE OR PREPARATION OF TOBACCO FOR SMOKING OR CHEWING; TOBACCO; SNUFF
- A24B13/00—Tobacco for pipes, for cigars, e.g. cigar inserts, or for cigarettes; Chewing tobacco; Snuff
-
- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24B—MANUFACTURE OR PREPARATION OF TOBACCO FOR SMOKING OR CHEWING; TOBACCO; SNUFF
- A24B15/00—Chemical features or treatment of tobacco; Tobacco substitutes, e.g. in liquid form
- A24B15/18—Treatment of tobacco products or tobacco substitutes
- A24B15/28—Treatment of tobacco products or tobacco substitutes by chemical substances
- A24B15/281—Treatment of tobacco products or tobacco substitutes by chemical substances the action of the chemical substances being delayed
- A24B15/283—Treatment of tobacco products or tobacco substitutes by chemical substances the action of the chemical substances being delayed by encapsulation of the chemical substances
Definitions
- the present disclosure relates to flavored products intended for human use.
- the products are configured for oral use and deliver substances such as flavors and/or active ingredients during use.
- Such products may include tobacco or a product derived from tobacco, or may be tobacco-free alternatives.
- Such products typically contain flavorants and/or active ingredients such as nicotine, caffeine, botanicals, or cannabidiol.
- the format of such products can vary, and include pouched products containing a powdered or granular composition, lozenges, pastilles, liquids, gels, emulsions, meltable compositions, and the like. See, for example, the types of products described in US Patent App. Pub. Nos.
- the present disclosure relates to capsules and to compositions and oral products incorporating one or more such capsules.
- Some such products into which these components are incorporated according to the present disclosure are pouched products including an outer water-permeable pouch defining a cavity containing a composition comprising the one or more capsules and a water-soluble component capable of being released through the water-permeable pouch.
- the invention includes, without limitation, the following embodiments.
- Embodiment 1 A pouched product comprising: an outer water-permeable pouch defining a cavity; and a composition adapted for oral use situated within the cavity, wherein the composition comprises one or more rupturable capsules, each rupturable capsule comprising a payload encapsulated within a capsule wall, and wherein the product has a water content of about 20% or less by weight.
- Embodiment 2 The pouched product of Embodiment 1, wherein the payload comprises a particulate material.
- Embodiment 3 The pouched product of any of Embodiments 1-2, wherein the payload comprises a liquid in the form of a solution, emulsion, or dispersion.
- Embodiment 4 The pouched product of Embodiment 3, wherein the liquid comprises water.
- Embodiment 5 The pouched product of Embodiment 3, wherein the liquid is non-aqueous.
- Embodiment 6 The pouched product of any of Embodiments 1-5, wherein the payload comprises one or more flavoring agents.
- Embodiment 7 The pouched product of any of Embodiments 1-6, wherein the payload comprises menthol.
- Embodiment 8 The pouched product of any of Embodiments 1-7, wherein the payload comprises one or more active ingredients.
- Embodiment 9 The pouched product of Embodiment 1, wherein the payload consists essentially of water.
- Embodiment 11 The pouched product of any of Embodiments 1-9, wherein the capsule wall comprises an alginate, a hydrogel, a thermoplastic polymer, a biopolymer, a modified starch, a shellac, a sponge, or an acrylate/methacrylate polymer.
- Embodiment 16 The pouched product of Embodiment 15, wherein the flavoring agent is menthol.
- Embodiment 18 The pouched product of any of Embodiments 1-4 and 6-9, wherein the payload comprises water and the capsule wall comprises sodium alginate and calcium chloride.
- Embodiment 20 The pouched product of any of Embodiments 1-4 and 6-19, wherein the payload comprises water and wherein the rupturable capsule further comprises a coating on an exterior surface of the capsule wall.
- Embodiment 21 The pouched product of Embodiment 20, wherein the coating comprises a material selected from the group consisting of a starch, a functional cellulose, a cross-linked polymer, an oil/wax, or any combination thereof.
- Embodiment 22 The pouched product of Embodiment 20 or 21, wherein the capsule wall comprises gelatin.
- Embodiment 23 The pouched product of any of Embodiments 1-22, wherein the one or more rupturable capsules comprises a single rupturable capsule.
- Embodiment 24 The pouched product of any of Embodiments 1-22, wherein the one or more rupturable capsules comprises a plurality of the rupturable capsules.
- Embodiment 25 The pouched product of any of Embodiments 1 -24, wherein the one or more rupturable capsules have an average diameter of about 0.5-6 mm.
- Embodiment 27 The pouched product of any of Embodiments 1-26, wherein the one or more rupturable capsules have individual weights of about 15 to about 25 mg.
- Embodiment 28 The pouched product of Embodiment 27, wherein the individual weights are about 20 to about 25 mg.
- Embodiment 29 The pouched product of any of Embodiments 1-28, wherein the composition is substantially free of a tobacco material other than nicotine, which is optionally included within the composition.
- Embodiment 30 The pouched product of any of Embodiments 1-29, wherein the composition comprises one or more active ingredients selected from the group consisting of a nicotinic component, nutraceuticals, botanicals, stimulants, amino acids, vitamins, cannabinoids, cannabamimetics, terpenes, pharmaceutical agents, and combinations thereof.
- active ingredients selected from the group consisting of a nicotinic component, nutraceuticals, botanicals, stimulants, amino acids, vitamins, cannabinoids, cannabamimetics, terpenes, pharmaceutical agents, and combinations thereof.
- Embodiment 31 The pouched product of Embodiment 30, wherein the composition comprises a nicotinic component selected from the group consisting of nicotine, a nicotine salt, or a resin complex of nicotine.
- Embodiment 32 The pouched product of Embodiment 31, wherein the composition comprises a tobacco extract comprising nicotine.
- Embodiment 33 The pouched product of any of Embodiments 1-32, wherein the composition comprises one or more components selected from the group consisting of one or more additional fillers, binders, pH adjusters, buffering agents, colorants, disintegration aids, antioxidants, humectants, and preservatives.
- Embodiment 34 The pouched product of any of Embodiments 1-33, wherein the water content is about 15% or less by weight.
- Embodiment 36 The pouched product of Embodiment 35, wherein the pouched product has a pH of about 8 to about 10.
- FIG. 1 is a front perspective view of a non-limiting pouched product according to an embodiment of the present disclosure
- FIG. 2A and 2B are depictions of non-limiting capsules according to certain embodiments of the present disclosure
- FIGs. 3A and 3B are depictures of non-limiting capsules according to certain embodiments of the present disclosure
- FIG. 4 is a front perspective view illustrating a pouched product according to an embodiment of the present disclosure comprising a plurality of capsules;
- FIG. 5 is a front perspective view illustrating a pouched product according to an embodiment of the present disclosure comprising a single capsule
- FIG. 6 is a front perspective view illustrating a pouched product with a first, non-limiting alternative shape according to an embodiment of the present disclosure comprising a single capsule;
- FIG. 7 is a front perspective view illustrating a pouched product with a second, non-limiting alternative shape according to an embodiment of the present disclosure comprising a single capsule;
- FIG. 9 is a front perspective view illustrating a pouched product with a fourth, non-limiting alternative shape according to an embodiment of the present disclosure comprising a single capsule;
- FIG. 10 is a front perspective view illustrating a pouched product with a fifth, non-limiting alternative shape according to an embodiment of the present disclosure comprising a single capsule;
- FIG. 11 is a front perspective view illustrating a pouched product with a sixth, non-limiting alternative shape according to an embodiment of the present disclosure comprising a single capsule;
- FIG. 12 is a front perspective view illustrating a pouched product with a seventh, non-limiting alternative shape according to an embodiment of the present disclosure comprising a single capsule.
- compositions and products configured for oral use generally provides compositions and products configured for oral use.
- Configured for oral use means that the product is provided in a form such that during use, saliva in the mouth of the user causes one or more of the components of the product (e.g., flavoring agent and/or active ingredient) to pass into the mouth of the user.
- the components of the product e.g., flavoring agent and/or active ingredient
- the product is adapted to deliver components to a user through mucous membranes in the user's mouth, the user's digestive system, or both, and, in some instances, said component is a nicotine component or an active ingredient (including, but not limited to, for example, nicotine, a stimulant, vitamin, amino acid, botanical, or a combination thereof) that can be absorbed through the mucous membranes in the mouth or absorbed through the digestive tract when the product is used.
- a nicotine component or an active ingredient including, but not limited to, for example, nicotine, a stimulant, vitamin, amino acid, botanical, or a combination thereof
- the compositions and products provided herein are pouched products, e.g., in the form of a mixture of one or more components (also referred to herein as a “particulate composition”), disposed within a moisture-permeable container (e.g., a water-permeable pouch).
- Pouched products generally comprise, in addition to the pouch-based exterior, a composition/mixture within the pouch that typically comprises one or more active ingredients and/or one or more flavorants, and various other optional ingredients. According to the present disclosure, such composition/mixture further comprises one or more objects, which includes capsules.
- the composition/mixture can optionally include various other components; any remaining components of the composition within the pouches provided herein are not particularly limited.
- the composition/mixture can comprise any filling composition, including those included within conventional pouched products, and further comprising one or more capsules as described herein.
- Such particulate compositions are generally mixtures of two or more components and as such, the compositions are, in some cases, referenced herein below as “mixtures.”
- Certain components that can advantageously be included in the mixtures within certain embodiments of the pouches provided herein are outlined generally below; however, it is to be understood that the discussion is not intended to be limiting of the components that can be incorporated within the disclosed pouches.
- Such mixtures in the water-permeable pouch format are typically used by placing a pouch containing the mixture in the mouth of a human subject/user.
- the pouch is placed somewhere in the oral cavity of the user, for example under the lips, in the same way as moist snuff products are generally used.
- the pouch preferably is not chewed or swallowed. However, in some embodiments, chewing may be advantageous, e.g., to rupture the one or more capsules, where relevant.
- Exposure to saliva causes some of the components of the mixture within the water-permeable pouch (e.g., flavoring agents and/or active agents) to pass through e.g., the water-permeable pouch and provide the user with flavor and satisfaction, and the user is not required to spit out any portion of the mixture.
- the pouch After about 10 minutes to about 60 minutes, typically about 15 minutes to about 45 minutes, of use/enjoyment, substantial amounts of the mixture have been ingested by the human subject, and the pouch may be removed from the mouth of the consumer for disposal.
- Preferred pouch materials for products described herein may be designed and manufactured such that under conditions of normal use, a significant amount of the contents of the formulation within the pouch permeate through the pouch material prior to the time that the pouch undergoes loss of its physical integrity.
- an example pouched product 10 can comprise an outer water-permeable container 20 in the form of a pouch which contains a particulate mixture 15 adapted for oral use.
- the orientation, size, and type of outer water-permeable pouch and the type and nature of the composition adapted for oral use that are illustrated herein are not construed as limiting thereof.
- Various, non-limiting components of certain particulate mixtures 15 according to the present disclosure are described in further detail herein below.
- Certain capsules may have diameters of less than about 100 microns, such as microcapsules having diameters in the range of about 1 to about 40 microns, or about 1 micron to about 20 microns. In some embodiments, larger capsules may be utilized.
- a capsule utilized in the pouch product may have a size of about 0.5 mm to about 6 mm, 0.5 to about 5 mm, or about 0.6 mm to about 3 mm in diameter.
- Certain capsules may have diameters of about 0.5 to about 6 mm, e.g., about 1 to about 5 mm, about 1 to about 4 mm, or about 1.5 mm to about 3.5 mm, e.g., about 2 mm to about 4 mm or about 3 mm to about 4 mm.
- the weight of the capsules can vary. In some embodiments, capsules can have a weight of about 30 mg or less, about 20 mg or less, about 10 mg or less, or about 1 mg or less. Certain specific embodiments provide capsules with individual weights of about 15 mg to about 30 mg, e.g., about 20 mg to about 25 mg.
- the capsules may be colored, provided with smooth or rough surfaces, have rigid or pliant shells, have brittle or durable shells, or other desired features or characteristics.
- the capsule wall 34 is generally formed of a material that is configured to allow for dispersement of the internal payload 32 under desired conditions.
- the capsule wall may comprise a material that is configured to dissolve or otherwise degrade under mouth conditions.
- the capsule wall 34 may comprise a material that is configured to be broken or otherwise degraded by shear forces (e.g., chewing). While suitable encapsulated materials may be described herein in relation to microcapsules, it is understood that such terminology is not intended to be viewed as limiting of the capsule sizes.
- the crush strength of suitable capsules can be sufficient to allow for normal handling and storage without significant degree of premature or undesirable breakage.
- Exemplary materials that can be used to form the capsule wall 34 include gelatin, acacia (gum arabic), polyvinyl acetate, potassium alginate, carob bean gum, potassium citrate, carrageenan, potassium polymetaphosphate, citric acid, potassium tripolyphosphate, dextrin, polyvinyl alcohol, povidone, dimethylpoly siloxane, dimethyl silicone, refined paraffin wax, ethylcellulose, bleached shellac, modified food starch, sodium alginate, guar gum, sodium carboxymethylcellulose, hydroxypropyl cellulose, sodium citrate, hydroxypropylmethylcellulose, sodium ferrocyanide, sodium polyphosphates, locust bean gum, methylcellulose, sodium trimetaphosphate, methyl ethyl cellulose, sodium tripolyphosphate, microcrystalline wax, tannic acid, petroleum wax, terpene resin, tragacanth, polyethylene, xanthan gum, and polyethylene glycol.
- gelatin aca
- Microcapsules are commercially available and can, in some embodiments, be used according to the present disclosure.
- Certain examples of microcapsule technologies are of the type set forth in Gutcho, Microcapsules and Microencapsulation Techniques (1976); Gutcho, Microcapsules and Other Capsules Advances Since 1975 (1979); Kondo, Microcapsule Processing and Technology (1979); Iwamoto et al., AAPS Pharm. Sci. Tech. 2002 3(3): article 25; U.S. Pat. No. 3,550,598 to McGlumphy; U.S. Pat. No. 4,889,144 to Tateno et al.; U.S. Pat. No. 5,004,595 to Cherukuri et al.; U.S. Pat. No.
- Suitable, non-limiting types of capsules are of the type commercially available as “Momints” by Yosha! Enterprises, Inc. and “Ice Breakers® Liquid Ice” from The Hershey Company. Representative types of capsules also have been incorporated in chewing gum, such as the type of gum marketed under the tradename “Cinnabursf ’ by Cadbury Adams USA. Representative types of capsules and components thereof also are set forth in U.S. Pat. No. 3,339,558 to Waterbury; U.S. Pat. No. 3,390,686 to Irby, Jr. et al.; U.S. Pat. No. 3,685,521 to Dock; U.S. Pat. No.
- 2004/0224020 to Schoenhard 2005/0123601 to Mane et al.; 2005/0196437 to Bednarz et al.; and 2005/0249676 to Scott et al.; which are incorporated herein by reference.
- the composition of the capsule wall 34 is selected so as to accommodate an aqueous internal payload 32 therein.
- the composition of capsule wall 34 must be selected so as to be at least partially resistant to water, e.g., so as to retain a water-containing payload 32 therein without any substantial degradation for a period of time of about 6 months or more, about 12 months or more, about 18 months or more, or about 2 years or more at room temperature.
- the capsule wall 34 can comprise, e.g., a starch, a functional cellulose, a cross-linked polymer, an oil/wax or any combination thereof.
- the capsule wall 34 of a water-containing capsule can comprise a stiffer/thicker gelatin coating than conventionally used for encapsulation of particulate or non-aqueous payloads.
- Certain nonlimiting materials that may be suitable for the capsule wall 34 of a water-containing capsule include, e.g., alginates, hydrogels, thermoplastics, biopolymers, modified starches (e.g., tapioca), shellac, sponges, or acrylates/methacrylates (for osmotic release).
- the capsule wall 34 of a watercontaining capsule can comprise silica, e.g., such that an air-water emulsion is encapsulated by silica (referred to as “dry water”).
- the capsule wall 34 of a water-containing capsule can comprise a membrane, e.g., as provided at oohowater.com, which is incorporated herein by reference in its entirety, comprising, e.g., sodium alginate, a natural thickener from algae and calcium chloride.
- some capsules 30 can further comprise one or more coatings (e.g., 36a and/or 36b) on the interior and/or exterior of capsule wall 34 as shown, e.g., in FIGs. 3A and 3B.
- a coating 36 can allow for the use of conventional capsule wall materials (e.g., such as used in capsules containing particulates or non-aqueous liquids), as the conventional capsule wall material is protected via coating 36a from enhanced degradation associated with water contact between the aqueous payload 32 and the capsule wall 34 and/or via coating 36b from enhanced degradation associated with water contact between the outer atmosphere/composition in which the capsule is included and the capsule wall 34.
- compositions of the two coatings can be the same or different.
- the composition of such coating(s) 36 can vary but in some embodiments, the coating can comprise a material disclosed above to be suitable for use as a capsule wall 34 for a water-containing capsule.
- the composition of the internal payload (“filling”) component 32 can vary widely.
- payload 32 can be comprise a particulate material, including a powder payload, a non-aqueous (e.g., organic) liquid, and/or an aqueous (i.e., water-containing) liquid.
- Liquid-containing payloads can comprise, e.g., neat liquids, solutions, emulsions, or dispersions.
- capsules are provided which comprise, as payload 32, an organic liquid such as an alcohol or oil.
- capsules are provided which comprise, as payload 32, water.
- payload 32 can comprise a mixture of water and a miscible liquid, such as alcohol or glycerin.
- Liquid- containing payloads can comprise the liquid(s) alone or can comprise one or more additional components/additives.
- the internal payload 32 comprises one or more release-modifying agents, e.g., as disclosed in U.S. Patent No. 11,344,057 to Chapman et al., which is incorporated herein by reference in its entirety; one or more flavorants, one or more active ingredients, or any combination of two or more thereof.
- payload 32 comprises a flavorant (e.g., menthol). Examples of suitable additives/components that can optionally be included within payload component 32 of certain capsule embodiments are described in greater detail herein below.
- water-containing capsules are provided, which comprise, as payload 32, at least some amount of water.
- payload 32 consists essentially of water or consists of water.
- the water-containing capsules 30 are designed for moisture release during use within the oral cavity.
- payload 32 comprises water and one or more additional components, e.g., one or more flavoring agents (e.g., water-soluble flavoring agents) and/or one or more active ingredients (e.g., water-soluble active ingredients).
- capsules 30 include, but are not limited to, a capsule comprising a menthol-containing payload 32 within a gelatin capsule wall 34.
- the disclosure further provides oral compositions comprising one or more of the capsules described herein.
- the disclosure provides pouched products comprising one or more such capsules.
- the number of capsules incorporated into a pouched product can vary, depending upon factors such as the size of the capsule(s), the character or nature of the additive in the payload, the desired attributes of the composition within the pouched product and the desired release modification thereof, and the like. In some embodiments, only a single capsule may be included within the pouched product.
- a plurality of capsules 30, each having the same or a different payload (not visible) provided therein may be included within particulate mixture 45, positioned within an outer water-permeable container 50.
- the plurality of capsules 30 can thus be relatively small in size.
- microcapsules may be used.
- the capsules may be substantially uniform or varied in size, weight, and/or shape.
- the number of capsules incorporated within such a pouched product for example, can exceed about 5, can exceed about 10, can exceed about 20, can exceed about 40, and can even exceed about 100.
- the number of capsules can be greater than about 500, and even greater than about 1,000.
- the total weight of the capsules contained within such a pouched product may vary, but is typically greater than about 10 mg, often greater than about 20 mg, and can be greater than about 30 mg.
- the total weight of the capsules is typically less than about 200 mg, often less than about 100 mg, and can be less than about 50 mg.
- a single capsule 30 may be included within particulate mixture 65, positioned within an outer water-permeable container 70.
- the capsule may be (although it is not required to be) larger than capsules that would otherwise be incorporated (as a plurality of capsules) within the compositions provided herein.
- the shapes of the pouched products provided herein are not particularly limited. Non-limiting examples of additional shapes of pouched products are provided in FIGs. 6-12.
- the edges of the illustrated pouch shapes can vary, e.g., straight, serrated, etc. Further, these figures illustrate just a single capsule 30 contained within each pouch; however, in some embodiments, the disclosure also provides pouched products of the shapes depicted in FIGs. 6-12 comprising multiple capsules.
- starch major sources include cereal grains (e.g., rice, wheat, and maize) and root vegetables (e.g., potatoes and cassava).
- sources of starch include acorns, arrowroot, arracacha, bananas, barley, beans (e.g., favas, lentils, mung beans, peas, chickpeas), breadfruit, buckwheat, canna, chestnuts, colacasia, katakuri, kudzu, malanga, millet, oats, oca, Polynesian arrowroot, sago, sorghum, sweet potato, quinoa, rye, tapioca, taro, tobacco, water chestnuts, and yams.
- Flavorings also may include components that are considered moistening, cooling or smoothening agents, such as eucalyptus or menthol. These flavors may be provided neat (i.e., alone) or in a composite, and may be employed as concentrates or flavor packages (e.g., spearmint and menthol, orange and cinnamon; lime, pineapple, and the like). Representative types of components also are set forth in US Pat. No. 5,387,416 to White et al.; US Pat. App. Pub. No. 2005/0244521 to Strickland et al.; and PCT Application Pub. No. WO 05/041699 to Quinter et al., each of which is incorporated herein by reference. In some instances, the flavoring agent may be provided in a spray-dried form or a liquid form.
- Sugar alcohols are polyols derived from monosaccharides or disaccharides that have a partially or fully hydrogenated form.
- Sugar alcohols have, for example, about 4 to about 20 carbon atoms and include erythritol, arabitol, ribitol, isomalt, maltitol, dulcitol, iditol, mannitol, xylitol, lactitol, sorbitol, and combinations thereof (e.g., hydrogenated starch hydrolysates).
- the sweetener is sucralose, acesulfame K, or a combination thereof.
- the mixture of the present disclosure can comprise pH adjusters or buffering agents.
- pH adjusters and buffering agents that can be used include, but are not limited to, metal hydroxides (e.g., alkali metal hydroxides such as sodium hydroxide and potassium hydroxide), and other alkali metal buffers such as metal carbonates (e.g., potassium carbonate or sodium carbonate), or metal bicarbonates such as sodium bicarbonate, and the like.
- the buffering agent is typically present in an amount less than about 5 percent based on the weight of the mixture, for example, from about 0.
- ingredients that can be incorporated in desired effective amounts within the present composition can include those that are incorporated within the types of oral care compositions set forth in Takahashi et al., Oral Microbiology and Immunology, 19(1), 61-64 (2004); U.S. Pat. No. 6,083,527 to Thistle; and US Pat. Appl. Pub. Nos. 2006/0210488 to Jakubowski and 2006/02228308 to Cummins et al.
- Other exemplary ingredients of tobacco containing-formulation include those contained in formulations marketed as MALTISORB® by Roquette and DENTIZYME® by NatraRx.
- a representative amount of oral care additive is at least about 1%, often at least about 3%, and frequently at least about 5% of the total dry weight of the composition.
- the amount of oral care additive within the composition will not typically exceed about 30%, often will not exceed about 25%, and frequently will not exceed about 20%, of the total dry weight of the mixture/composition.
- Colorant A colorant may optionally be employed in amounts sufficient to provide the desired physical attributes to the mixture.
- Natural or synthetic colorants such as natural or synthetic dyes, food-grade colorants and pharmaceutical-grade colorants may be used. Examples of colorants include various dyes and pigments, such as caramel coloring and titanium dioxide. Natural colorants such as curcumin, beet juice extract, spirulina can be used; a variety of synthetic pigments may also be used.
- the amount of colorant utilized in the mixture can vary, but when present is typically up to about 3 weight percent, such as from about 0.1%, about 0.5%, or about 1%, to about 3% by weight, based on the total weight of the mixture.
- the particulate composition comprises one or more active ingredients.
- the particulate composition comprises one or more capsules 30 wherein the payload 32 comprises one or more active ingredients.
- the one or more active ingredients within the capsule(s) 30 are the only active ingredients within the particulate composition.
- the particulate composition further comprises one or more additional active ingredients (wherein the one or more additional active ingredients (in non-encapsulated form) can be the same as or different than the one or more active ingredients within payload 32 of the capsule(s)).
- the capsule(s) 30 within a given particulate composition do not comprise an active ingredient; in such embodiments, the particulate composition typically comprises one or more nonencapsulated active ingredients.
- the active ingredients described herein below are relevant in both encapsulated and non-encapsulated forms.
- an "active ingredient” refers to one or more substances belonging to any of the following categories: API (active pharmaceutical ingredient), food additives, natural medicaments, and naturally occurring substances that can have an effect on humans.
- Example active ingredients include any ingredient known to impact one or more biological functions within the body, such as ingredients that furnish pharmacological activity or other direct effect in the diagnosis, cure, mitigation, treatment, or prevention of disease, or which affect the structure or any function of the body of humans (e.g., provide a stimulating action on the central nervous system, have an energizing effect, an antipyretic or analgesic action, or an otherwise useful effect on the body).
- the active ingredient may be of the type generally referred to as dietary supplements, nutraceuticals, "phytochemicals” or “functional foods.”
- dietary supplements e.g., nutraceuticals, "phytochemicals” or “functional foods.”
- Non-limiting examples of active ingredients include those falling in the categories of botanical ingredients, stimulants, amino acids, nicotine components, and/or pharmaceutical, nutraceutical, and medicinal ingredients (e.g., vitamins, such as A, B3, B6, B12, and C, and/or cannabinoids, such as tetrahydrocannabinol (THC) and cannabidiol (CBD)). Each of these categories is further described herein below.
- the particular choice of active ingredients will vary depending upon the desired flavor, texture, and desired characteristics of the particular product.
- the active ingredient is selected from the group consisting of caffeine, taurine, GABA, theanine, vitamin C, lemon balm extract, ginseng, citicoline, sunflower lecithin, and combinations thereof.
- the active ingredient can include a combination of caffeine, theanine, and optionally ginseng.
- the active ingredient includes a combination of theanine, gamma-amino butyric acid (GABA), and lemon balm extract.
- the active ingredient includes theanine, theanine and tryptophan, or theanine and one or more B vitamins (e.g., vitamin B6 or B12).
- the active ingredient includes a combination of caffeine, taurine, and vitamin C.
- an active ingredient or combination thereof is present in a total concentration of at least about 0.001% by weight of the composition, such as in a range from about 0.001% to about 30% or about 0.001% to about 20%.
- the active ingredient or combination of active ingredients is present in a concentration from about 0.1% by weight to about 10%, about 20%, or about 30% by weight, such as, e.g., from about 0.5% by weight to about 30%, from about 0.5% by weight to about 20%, from about 0.5% by weight to about 10%, from about 1% by weight to about 10%, or from about 1% by weight to about 5% by weight, based on the total weight of the composition.
- the active ingredient or combination of active ingredients is present in a concentration of from about 0.001%, about 0.01%, about 0.1%, or about 1%, up to about 20% by weight, such as, e.g., from about 0.001%, about 0.002%, about 0.003%, about 0.004%, about 0.005%, about 0.006%, about 0.007%, about 0.008%, about 0.009%, about 0.01%, about 0.02%, about 0.03%, about 0.04%, about 0.05%, about 0.06%, about 0.07%, about 0.08%, about 0.09%, about 0.1%, about 0.2%, about 0.3%, about 0.4%, about 0.5% about 0.6%, about 0.7%, about 0.8%, or about 0.9%, to about 1%, about 2%, about 3%, about 4%, about 5%, about 6%, about 7%, about 8%, about 9%, about 10%, about 11%, about 12%, about 13%, about 14%, about 15%, about 16%, about 17%, about 18%, about
- the active ingredient comprises a botanical ingredient.
- botanical ingredient refers to any plant material or fungal-derived material, including plant material in its natural form and plant material derived from natural plant materials, such as extracts or isolates from plant materials or treated plant materials (e.g., plant materials subjected to heat treatment, fermentation, bleaching, or other treatment processes capable of altering the physical and/or chemical nature of the material).
- a “botanical” includes, but is not limited to, "herbal materials,” which refer to seed-producing plants that do not develop persistent woody tissue and are often valued for their medicinal or sensory characteristics (e.g., teas or tisanes).
- compositions as disclosed herein can be characterized as free of any tobacco material (e.g., any embodiment as disclosed herein may be completely or substantially free of any tobacco material).
- substantially free is meant that no tobacco material has been intentionally added.
- certain embodiments can be characterized as having less than 0.001% by weight of tobacco, or less than 0.0001%, or even 0% by weight of tobacco.
- a botanical When present, a botanical is typically at a concentration of from about 0.01% w/w to about 10% by weight, such as, e.g., from about 0.01% w/w, about 0.05%, about 0.1%, or about 0.5%, to about 1%, about 2%, about 3%, about 4%, about 5%, about 6%, about 7%, about 8%, about 9%, or about 10%, about 11%, about 12%, about 13%, about 14%, or about 15% by weight, based on the total weight of the composition.
- the botanical materials useful in the present disclosure may comprise, without limitation, any of the compounds and sources set forth herein, including mixtures thereof. Certain botanical materials of this type are sometimes referred to as dietary supplements, nutraceuticals, "phytochemicals” or “functional foods.” Certain botanicals, as the plant material or an extract thereof, have found use in traditional herbal medicine, and are described further herein.
- Non-limiting examples of non-tobacco botanical materials include, without limitation, acai berry (Euterpe oleraceci martins)' , acerola (Malpighia glabra), alfalfa, allspice, Angelica root, anise (e.g., star anise), annatto seed, apple (Mains domestica), apricot oil, ashwagandha, Bacopa monniera, baobab, basil (Ocimum basilicum), bay, bee balm, beet root, bergamot, blackberry (Morns nigra), black cohosh, black pepper, black tea, blueberries, boldo (Peumus boldus), borage, bugleweed, cacao, calamus root, camu (Myrcaria dubia), cannabis/hemp, caraway seed, cardamom, cassis, catnip, catuaba, cayenne pepper, Centella asiatica, chaga mushroom, Chai
- the active ingredient comprises ginseng.
- Ginseng is the root of plants of the genus Panax, which are characterized by the presence of unique steroid saponin phytochemicals (ginsenosides) and gintonin. Ginseng finds use as a dietary supplement in energy drinks or herbal teas, and in traditional medicine. Cultivated species include Korean ginseng (P. ginseng), South China ginseng (P. notoginseng), and American ginseng (P. quinquefolius). American ginseng and Korean ginseng vary in the type and quantity of various ginsenosides present. In some embodiments, the ginseng is American ginseng or Korean ginseng. In specific embodiments, the active ingredient comprises Korean ginseng. In some embodiments, ginseng is present in an amount of from about 0.4 to about 0.6% by weight, based on the total weight of the composition.
- the active ingredient comprises one or more stimulants.
- stimulants refers to a material that increases activity of the central nervous system and/or the body, for example, enhancing focus, cognition, vigor, mood, alertness, and the like.
- Non-limiting examples of stimulants include caffeine, theacrine, theobromine, and theophylline.
- Theacrine (1,3,7,9- tetramethyluric acid) is a purine alkaloid which is structurally related to caffeine, and possesses stimulant, analgesic, and anti-inflammatory effects.
- Present stimulants may be natural, naturally derived, or wholly synthetic.
- certain botanical materials may possess a stimulant effect by virtue of the presence of e.g., caffeine or related alkaloids, and accordingly are “natural” stimulants.
- the stimulant e.g., caffeine, theacrine
- caffeine can be obtained by extraction and purification from botanical sources (e.g., tea).
- whole synthetic it is meant that the stimulant has been obtained by chemical synthesis.
- the active ingredient comprises caffeine.
- the caffeine is present in an encapsulated form. On example of an encapsulated caffeine is Vitashure®, available from Balchem Corp., 52 Sunrise Park Road, New Hampton, NY, 10958.
- a stimulant or combination of stimulants is typically at a concentration of from about 0.1% w/w to about 15% by weight, such as, e.g., from about 0.1% w/w, about 0.2%, about 0.3%, about 0.4%, about 0.5% about 0.6%, about 0.7%, about 0.8%, or about 0.9%, to about 1%, about 2%, about 3%, about 4%, about 5%, about 6%, about 7%, about 8%, about 9%, about 10%, about 11%, about 12%, about 13%, about 14%, or about 15% by weight, based on the total weight of the composition.
- the composition comprises caffeine in an amount of from about 1.5 to about 6% by weight, based on the total weight of the composition;
- the active ingredient comprises an amino acid.
- amino acid refers to an organic compound that contains amine (-NH2) and carboxyl (-COOH) or sulfonic acid (SO3H) functional groups, along with a side chain (R group), which is specific to each amino acid.
- Amino acids may be proteinogenic or non-proteinogenic. By “proteinogenic” is meant that the amino acid is one of the twenty naturally occurring amino acids found in proteins.
- Non-limiting examples of non-proteinogenic amino acids include gamma- aminobutyric acid (GABA), taurine (2-aminoethanesulfonic acid), theanine (L-y-glutamylethylamide), hydroxyproline, and beta-alanine.
- the active ingredient comprises theanine.
- the active ingredient comprises GABA.
- the active ingredient comprises a combination of theanine and GABA.
- the active ingredient is a combination of theanine, GABA, and lemon balm.
- the active ingredient is a combination of caffeine, theanine, and ginseng.
- the active ingredient comprises taurine.
- the active ingredient is a combination of caffeine and taurine.
- the active ingredient comprises vitamin A.
- the vitamin A is encapsulated.
- the vitamin is vitamin B6, vitamin B12, vitamin E, vitamin C, or a combination thereof.
- Such botanical materials may be provided in fresh or dry form, essential oils, or may be in the form of an extracts.
- the botanical materials (as well as their extracts) often include compounds from various classes known to provide antioxidant effects, such as minerals, vitamins, isoflavones, phytoesterols, allyl sulfides, dithiolthiones, isothiocyanates, indoles, lignans, flavonoids, polyphenols, and carotenoids.
- Examples of compounds found in botanical extracts or oils include ascorbic acid, peanut endocarb, resveratrol, sulforaphane, beta-carotene, lycopene, lutein, co-enzyme Q, carnitine, quercetin, kaempferol, and the like. See, e.g., Santhosh et al., Phytomedicine, 12(2005) 216-220, which is incorporated herein by reference.
- the nicotine can be, for example, in the form of a highly purified tobacco extract.
- Various methods are known for the isolation and purification of nicotine from tobacco (including, but not limited to, extraction from tobacco with water; extraction from tobacco with organic solvents; steam distillation from tobacco; or pyrolytic degradation of tobacco and distillation of nicotine therefrom).
- extraction methods see for example, U.S. Patent Nos. 2,822,306 and 4,153,063 to Roselius et al. and US Pat. App. Pub. No. 2008/0302377 to Kauryzbaev et al., which are incorporated herein by reference.
- nicotine may be obtained from another source (e.g., another type of plant).
- the nicotine can have the enantiomeric form S(-)-nicotine, R(+)-nicotine, or a mixture of S(-)- nicotine and R(+) -nicotine.
- the nicotine is in the form of S(-)-nicotine (e.g., in a form that is virtually all S(-)-nicotine) or a racemic mixture composed primarily or predominantly of S(-)- nicotine (e.g., a mixture composed of about 95 weight parts S(-)-nicotine and about 5 weight parts R(+)- nicotine).
- the nicotine is employed in virtually pure form or in an essentially pure form. Highly preferred nicotine that is employed has a purity of greater than about 95 percent, more preferably greater than about 98 percent, and most preferably greater than about 99 percent, on a weight basis.
- a nicotine component may be included in the mixture in free base form, salt form, as a complex, or as a solvate.
- nicotine component is meant any suitable form of nicotine (e.g., free base or salt) for providing oral absorption of at least a portion of the nicotine present.
- the nicotine component is selected from the group consisting of nicotine free base, nicotine as an ion pair, and a nicotine salt.
- at least a portion of the nicotine is in its free base form.
- at least a portion of the nicotine is present as a nicotine salt, or present as an ion pair with at least a portion of the organic acid or the conjugate base thereof, as described further herein below.
- Nicotine is in its free base form, can, in some embodiments, be adsorbed in for example, a microcrystalline cellulose material to form a microcrystalline cellulose-nicotine carrier complex. See, for example, the discussion of nicotine in free base form in US Pat. Pub. No. 2004/0191322 to Hansson, which is incorporated herein by reference.
- the nicotine can be employed in the form of a salt.
- Salts of nicotine can be provided using the types of ingredients and techniques set forth in US Pat. No. 2,033,909 to Cox et al. and Perfetti, Beitrage Tabak Kauutz. Int., 12: 43-54 (1983), which are incorporated herein by reference. Additionally, salts of nicotine are available from sources such as Pfaltz and Bauer, Inc. and K&K Uaboratories, Division of ICN Biochemicals, Inc.
- the nicotine component is selected from the group consisting of nicotine free base, a nicotine salt such as hydrochloride, dihydrochloride, monodentate, bitartrate, sulfate, salicylate, and nicotine zinc chloride.
- the nicotine component or a portion thereof is a nicotine salt with one or more organic acids.
- the nicotine component is a nicotine-polymer complex.
- Such complexes comprise a polymeric resin (e.g., a polymeric ion-exchange resin, e.g., a polymeric cation exchange resin) to which nicotine is bound.
- a polymeric resin e.g., a polymeric ion-exchange resin, e.g., a polymeric cation exchange resin
- a polymethacrilic acid such as Amberlite IRP64, Purolite Cl 15HMR, or Doshion P551. See, for example, US Pat. No. 3,901,248 to Uichtneckert et al., which is incorporated herein by reference.
- Another example is a nicotine -polyacrylic carbomer complex, such as Carbopol 974P.
- nicotine may be present in the form of a nicotine polyacrylic complex.
- a suitable nicotine-polymer complex is nicotine polacrilex, which comprises nicotine bound to a resin prepared from methacrylic acid and divinyl benzene. Nicotine polacrilex is available in varying nicotine percentages, e.g., 18% to 20% nicotine; although not limited thereto, nicotine polacrilex generally comprises not less than 95% of the labeled amount of nicotine, calculated on an anhydrous basis.
- inclusion of a nicotine component in the form of a nicotine-polymer complex can lead to improved shelf-life stability and slower release of the nicotine. In some embodiments, inclusion of a nicotine component in the form of a nicotine-polymer complex can lead to less bum in the oral cavity or throat during use.
- the amount of nicotine provided by the nicotine-polymer complex can vary from about 5%, about 10%, about 20%, about 30%, about 40%, about 50%, or about 60% to about 40%, about 50%, about 60%, about 70%, about 80%, about 90%, about 95%, or 100%, based on the total weight of nicotine provided from all nicotine components within a given composition.
- Embodiments of the films disclosed herein can comprise at least one binder, a plasticizer, a basic amine, such as nicotine or a nicotine component; water; and an organic acid, an alkali metal salt of an organic acid, or a combination thereof, wherein the organic acid has a logP value of from about 1 to about 12, e.g., 1.4 to about 8.0.
- the presence of certain solvents or solubilizing agents may be beneficial in solubilizing organic acids and the corresponding salts or ion pairs thereof with the basic amine for highly lipophilic organic acids (e.g., higher than about 4.5).
- heteroaryl groups include by way of example and not limitation, pyridyl, thiazolyl, tetrahydrothiophenyl, pyrimidinyl, furanyl, thienyl, pyrrolyl, pyrazolyl, imidazolyl, tetrazolyl, benzofuranyl, thianaphthalenyl, indolyl, indolenyl, quinolinyl, isoquinolinyl, benzimidazolyl, isoxazolyl, pyrazinyl, pyridazinyl, indolizinyl, isoindolyl, 3H-indolyl, IH-indazolyl, purinyl, 4H-quinolizinyl, phthalazinyl, naphthyridinyl, quinoxalinyl, quinazolinyl, cinnolinyl, pteridinyl, 4aH-car
- Substituted as used herein and as applied to any of the above alkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl, means that one or more hydrogen atoms are each independently replaced with a substituent.
- a group is described as “optionally substituted,” that group can be substituted with one or more of the above substituents, independently selected for each occasion.
- the substituent may be one or more methyl groups or one or more hydroxyl groups.
- an organic acid may include more than one carboxylic acid group or more than one sulfonic acid group (e.g., two, three, or more carboxylic acid groups).
- Non-limiting examples include oxalic acid, fumaric acid, maleic acid, and glutaric acid.
- organic acids containing multiple carboxylic acids e.g., from two to four carboxylic acid groups
- one or more of the carboxylic acid groups may be esterified.
- Non-limiting examples include succinic acid monoethyl ester, monomethyl fumarate, monomethyl or dimethyl citrate, and the like.
- the organic acid may include more than one carboxylic acid group and one or more hydroxyl groups.
- Non-limiting examples of such acids include tartaric acid, citric acid, and the like.
- the organic acid is a mono ester of a di- or poly-acid, such as mono-octyl succinate, mono-octyl fumarate, or the like.
- the organic acid is monomenthyl succinate, monomenthyl fumarate, monomenthyl glutarate, or a combination thereof.
- the organic acid is a monotocopheryl ester of a dicarboxylic acid. Certain tocopheryl esters may be desirable in oral compositions as described herein by virtue of the antioxidant effects they may provide.
- the organic acid is tocopheryl succinate, tocopheryl fumarate, tocopheryl glutarate, or a combination thereof.
- the organic acid is a carotenoid derivative having one or more carboxylic acids.
- Carotenoids are tetraterpenes, meaning that they are produced from 8 isoprene molecules and contain 40 carbon atoms. Accordingly, they are usually lipophilic due to the presence of long unsaturated aliphatic chains, and are generally yellow, orange, or red in color.
- Certain carotenoid derivatives can be advantageous in oral compositions by virtue of providing both ion pairing and serving as a colorant in the composition.
- the organic acid is 2£',4£',6£',8£',10£',12£',14£',16Z,18£)-20- methoxy-4,8,13,17-tetramethyl-20-oxoicosa-2,4,6,8,10,12,14,16,18-nonaenoic acid (bixin) or an isomer thereof.
- Bixin is an apocarotenoid found in annatto seeds from the achiote tree (Bixa orellana), and is the naturally occurring pigment providing the reddish orange color to annatto.
- Bixin is soluble in fats and alcohols but insoluble in water, and is chemically unstable when isolated, converting via isomerization into the double bond isomer, trans -bixin (P-bixin), having the structure:
- more than one organic acid may be present.
- the composition may comprise two, or three, or four, or more organic acids.
- an organic acid contemplates mixtures of two or more organic acids.
- the relative amounts of the multiple organic acids may vary.
- a composition may comprise equal amounts of two, or three, or more organic acids, or may comprise different relative amounts.
- certain organic acids e.g., citric acid or myristic acid
- it is possible to include certain organic acids e.g., citric acid or myristic acid which have a logP value outside the desired range, when combined with other organic acids to provide the desired average logP range for the combination.
- the organic acid may comprise from about 1 to about 5 or more molar equivalents of benzoic acid relative to nicotine, combined with e.g., about 0.2 molar equivalents of octanoic acid or a salt thereof, and 0.2 molar equivalents of decanoic acid or a salt thereof.
- the organic acid is a combination of any two organic acids selected from the group consisting of benzoic acid, a toluic acid, benzenesulfonic acid, toluenesulfonic acid, hexanoic acid, heptanoic acid, decanoic acid, and octanoic acid.
- the organic acid is a combination of benzoic acid, octanoic acid, and decanoic acid, or benzoic and octanoic acid.
- the composition comprises citric acid in addition to one or more of benzoic acid, a toluic acid, benzene sulfonic acid, toluene sulfonic acid, hexanoic acid, heptanoic acid, decanoic acid, and octanoic acid.
- the composition comprises an organic acid which is a monoester of a dicarboxylic acid or is a carotenoid derivative having one or more carboxylic acids as described herein above, and further comprises an additional organic acid or salt thereof.
- the additional organic acid is benzoic acid, an alkali metal salt thereof, or a combination thereof.
- the composition comprises an alkali metal salt of an organic acid.
- the organic acid may be present in the composition in the form of an alkali metal salt.
- Suitable alkali metal salts include lithium, sodium, and potassium.
- the alkali metal is sodium or potassium.
- the alkali metal is sodium.
- the composition comprises an organic acid and a sodium salt of the organic acid.
- the composition comprises benzoic acid and sodium benzoate, octanoic acid and sodium octanoate, decanoic acid and sodium decanoate, or a combination thereof.
- the amount of organic acid or an alkali metal salt thereof present in the composition, relative to the basic amine (e.g., nicotine), may vary. Generally, as the concentration of the organic acid (or the conjugate base thereof) increases, the percent of nicotine that is ion paired with the organic acid increases. This typically increases the partitioning of the nicotine, in the form of an ion pair, into octanol versus water as measured by the logP (the login of the partitioning coefficient). In some embodiments, the composition comprises from about 0.05, about 0.1, about 1, about 1.5, about 2, or about 5, to about 10, about 15, or about 20 molar equivalents of the organic acid, the alkali metal salt thereof, or the combination thereof, relative to the nicotine component, calculated as free base nicotine.
- the organic acid is provided in a quantity sufficient to provide a pH of the composition of from about 5.5 to about 6.5, for example, from about 5.5, about 5.6, about 5.7, about 5.8, about 5.9, or about 6.0, to about 6.1, about 6.2, about 6.3, about 6.4, or about 6.5.
- a mineral acid e.g., hydrochloric acid, sulfuric acid, phosphoric acid, or the like
- a higher pH is desirable, e.g., wherein the composition pH is above 7.
- Certain specific embodiments are provided exhibiting a pH from 7 to 10, e.g., about 8 to about 10 or about 8 to about 9.
- the organic acid is added as the free acid, either neat (i.e., native solid or liquid form) or as a solution in, e.g., water, to the other composition components.
- the alkali metal salt of the organic acid is added, either neat or as a solution in, e.g., water, to the other composition components.
- the organic acid and the basic amine e.g., nicotine
- the organic acid and the basic amine are combined to form a salt, either before addition to the composition, or the salt is formed within and is present in the composition as such.
- the organic acid and basic amine e.g., nicotine
- the organic acid and basic amine are present as individual components in the composition, and form an ion pair upon contact with moisture (e.g., saliva in the mouth of the consumer).
- the products or compositions of the disclosure can be characterized as free of any nicotine component (e.g., any embodiment as disclosed herein may be completely or substantially free of any nicotine component).
- substantially free is meant that no nicotine has been intentionally added, beyond trace amounts that may be naturally present in e.g., a botanical material.
- certain embodiments can be characterized as having less than 0.001% by weight of nicotine, or less than 0.0001%, or even 0% by weight of nicotine, calculated as the free base.
- Cannabis species express at least 85 different phytocannabinoids, and these may be divided into subclasses, including cannabigerols, cannabichromenes, cannabidiols, tetrahydrocannabinols, cannabinols and cannabinodiols, and other cannabinoids, such as cannabigerol (CBG), cannabichromene (CBC), cannabidiol (CBD), tetrahydrocannabinol (THC), cannabinol (CBN) and cannabinodiol (CBDL), cannabicyclol (CBL), cannabivarin (CBV), tetrahydrocannabivarin (THCV), cannabidivarin (CBDV), cannabichromevarin (CBCV), cannabigerovarin (CBGV), cannabigerol monomethyl ether (CBGM), cannabinerolic acid, can
- the cannabinoid is selected from the group consisting of cannabigerol (CBG), cannabichromene (CBC), cannabidiol (CBD), tetrahydrocannabinol (THC), cannabinol (CBN) and cannabinodiol (CBDL), cannabicyclol (CBL), cannabivarin (CBV), tetrahydrocannabivarin (THCV), cannabidivarin (CBDV), cannabichromevarin (CBCV), cannabigerovarin (CBGV), cannabigerol monomethyl ether (CBGM), cannabinerolic acid, cannabidiolic acid (CBDA), Cannabinol propyl variant (CBNV), cannabitriol (CBO), tetrahydrocannabmolic acid (THCA), tetrahydrocannabivarinic acid (THCV A), and mixtures thereof.
- CBG
- the cannabinoid comprises at least tetrahydrocannabinol (THC). In some embodiments, the cannabinoid is tetrahydrocannabinol (THC). In some embodiments, the cannabinoid comprises at least cannabidiol (CBD). In some embodiments, the cannabinoid is cannabidiol (CBD). In some embodiments, the CBD is synthetic CBD.
- the cannabinoid is an isolate of CBD in a high degree of purity, and the amount of any other cannabinoid in the composition is no greater than about 1% by weight of the composition, such as no greater than about 0.5% by weight of the composition, such as no greater than about 0.1% by weight of the composition, such as no greater than about 0.01% by weight of the composition.
- a cannabinoid e.g., CBD
- cannabimimetic is typically in a concentration of at least about 0.001%, at least about 0.01%, or at least about 0.1% by weight of the composition, such as in a range from about 0.001% to about 2% by weight of the composition, e.g., about 0.1% to about 1.5% or about 0.4% to about 1.5% by weight.
- the active ingredient can include a cannabimimetic, which is a class of compounds derived from plants other than cannabis that have biological effects on the endocannabinoid system similar to cannabinoids.
- cannabimimetic is a class of compounds derived from plants other than cannabis that have biological effects on the endocannabinoid system similar to cannabinoids. Examples include yangonin, alpha-amyrin or beta-amyrin (also classified as terpenes), cyanidin, curcumin (tumeric), catechin, quercetin, salvinorin A, N-acylethanolamines, and N-alkylamide lipids. Such compounds can be used in the same amounts and ratios noted herein for cannabinoids.
- terpenes Active ingredients suitable for use in the present disclosure can also be classified as terpenes, many of which are associated with biological effects, such as calming effects.
- Terpenes are understood to have the general formula of (CM h)n and include monoterpenes, sesquiterpenes, and diterpenes.
- Terpenes can be acyclic, monocyclic or bicyclic in structure. Some terpenes provide an entourage effect when used in combination with cannabinoids or cannabimimetics.
- Examples include beta-caryophyllene, linalool, limonene, beta-citronellol, linalyl acetate, pinene (alpha or beta), geraniol, carvone, eucalyptol, menthone, iso-menthone, piperitone, myrcene, beta-bourbonene, and germacrene, which may be used singly or in combination.
- the terpene is a terpene derivable from a phytocannabinoid producing plant, such as a plant from the strain of the cannabis sativa species, such as hemp.
- Suitable terpenes in this regard include so-called “CIO” terpenes, which are those terpenes comprising 10 carbon atoms, and so-called “Cl 5” terpenes, which are those terpenes comprising 15 carbon atoms.
- the active ingredient comprises more than one terpene.
- the active ingredient may comprise one, two, three, four, five, six, seven, eight, nine, ten or more terpenes as defined herein.
- the active ingredient comprises an active pharmaceutical ingredient (API).
- API can be any known agent adapted for therapeutic, prophylactic, or diagnostic use. These can include, for example, synthetic organic compounds, proteins and peptides, polysaccharides and other sugars, lipids, phospholipids, inorganic compounds (e.g., magnesium, selenium, zinc, nitrate), neurotransmitters or precursors thereof (e.g., serotonin, 5 -hydroxytryptophan, oxitriptan, acetylcholine, dopamine, melatonin), and nucleic acid sequences, having therapeutic, prophylactic, or diagnostic activity.
- synthetic organic compounds proteins and peptides, polysaccharides and other sugars, lipids, phospholipids, inorganic compounds (e.g., magnesium, selenium, zinc, nitrate), neurotransmitters or precursors thereof (e.g., serotonin, 5 -hydroxytryptophan, oxitriptan, ace
- Non-limiting examples of APIs include analgesics and antipyretics (e.g., acetylsalicylic acid, acetaminophen, 3-(4-isobutylphenyl)propanoic acid), phosphatidylserine, myoinositol, docosahexaenoic acid (DHA, Omega-3), arachidonic acid (AA, Omega-6), S-adenosylmethionine (SAM), beta-hydroxy- beta-methylbutyrate (HMB), citicoline (cytidine-5'-diphosphate-choline), and cotinine.
- the active ingredient comprises citicoline.
- the active ingredient is a combination of citicoline, caffeine, theanine, and ginseng. In some embodiments, the active ingredient comprises sunflower lecithin. In some embodiments, the active ingredient is a combination of sunflower lecithin, caffeine, theanine, and ginseng.
- an API is typically at a concentration of from about 0.001% w/w to about 10% by weight, such as, e.g., from about 0.01%, about 0.02%, about 0.03%, about 0.04%, about 0.05%, about 0.06%, about 0.07%, about 0.08%, about 0.09%, about 0.1% w/w, about 0.2%, about 0.3%, about 0.4%, about 0.5% about 0.6%, about 0.7%, about 0.8%, about 0.9%, or about 1%, to about 2%, about 3%, about 4%, about 5%, about 6%, about 7%, about 8%, about 9%, or about 10% by weight, based on the total weight of the composition.
- the Nicotiana species can, in some embodiments, be selected for the content of various compounds that are present therein. For example, plants can be selected on the basis that those plants produce relatively high quantities of one or more of the compounds desired to be isolated therefrom.
- plants of the Nicotiana species e.g., Galpao commun tobacco
- Tobacco plants can be grown in greenhouses, growth chambers, or outdoors in fields, or grown hydroponically.
- the plant of the Nicotiana species can be included within a mixture as disclosed herein.
- virtually all of the plant e.g., the whole plant
- various parts or pieces of the plant can be harvested or separated for further use after harvest.
- the flower, leaves, stem, stalk, roots, seeds, and various combinations thereof, can be isolated for further use or treatment.
- the tobacco material comprises tobacco leaf (lamina).
- the tobacco material comprises solid tobacco material selected from the group consisting of lamina and stems.
- the tobacco that is used for the mixture most preferably includes tobacco lamina, or a tobacco lamina and stem mixture (of which at least a portion is smoke-treated).
- Portions of the tobaccos within the mixture may have processed forms, such as processed tobacco stems (e.g., cut-rolled stems, cut-rolled-expanded stems or cut-puffed stems), or volume expanded tobacco (e.g., puffed tobacco, such as dry ice expanded tobacco (DIET)). See, for example, the tobacco expansion processes set forth in US Pat. Nos.
- the tobacco material is employed in the form of parts or pieces that have an average particle size between 1.4 millimeters and 250 microns.
- the tobacco particles may be sized to pass through a screen mesh to obtain the particle size range required.
- air classification equipment may be used to ensure that small sized tobacco particles of the desired sizes, or range of sizes, may be collected.
- differently sized pieces of granulated tobacco may be mixed together.
- the harvested plant or individual parts or pieces can be further subdivided into parts or pieces (e.g., the leaves can be shredded, cut, comminuted, pulverized, milled or ground into pieces or parts that can be characterized as filler-type pieces, granules, particulates or fine powders).
- the plant, or parts thereof can be subjected to external forces or pressure (e.g., by being pressed or subjected to roll treatment).
- the plant or portion thereof can have a moisture content that approximates its natural moisture content (e.g., its moisture content immediately upon harvest), a moisture content achieved by adding moisture to the plant or portion thereof, or a moisture content that results from the drying of the plant or portion thereof.
- powdered, pulverized, ground or milled pieces of plants or portions thereof can have moisture contents of less than about 25 weight percent, often less than about 20 weight percent, and frequently less than about 15 weight percent.
- tobacco materials that can be employed include flue-cured or Virginia (e.g., K326), burley, sun-cured (e.g., Indian Kumool and Oriental tobaccos, including Katerini, Prelip, Komotini, Xanthi and Yambol tobaccos), Maryland, dark, dark-fired, dark air cured (e.g., Madole, Passanda, Cubano, Jatin and Bezuki tobaccos), light air cured (e.g., North Wisconsin and Galpao tobaccos), Indian air cured, Red Russian and Rustica tobaccos, as well as various other rare or specialty tobaccos and various blends of any of the foregoing tobaccos.
- the tobacco material may also have a so-called "blended" form.
- the tobacco material may include a mixture of parts or pieces of flue-cured, burley (e.g., Malawi burley tobacco) and Oriental tobaccos (e.g., as tobacco composed of, or derived from, tobacco lamina, or a mixture of tobacco lamina and tobacco stem).
- a representative blend may incorporate about 30 to about 70 parts burley tobacco (e.g., lamina, or lamina and stem), and about 30 to about 70 parts flue cured tobacco (e.g., stem, lamina, or lamina and stem) on a dry weight basis.
- example tobacco blends incorporate about 75 parts flue-cured tobacco, about 15 parts burley tobacco, and about 10 parts Oriental tobacco; or about 65 parts flue-cured tobacco, about 25 parts burley tobacco, and about 10 parts Oriental tobacco; or about 65 parts flue-cured tobacco, about 10 parts burley tobacco, and about 25 parts Oriental tobacco; on a dry weight basis.
- Other example tobacco blends incorporate about 20 to about 30 parts Oriental tobacco and about 70 to about 80 parts flue-cured tobacco on a dry weight basis.
- the type of tobacco material is selected such that it is initially visually lighter in color than other tobacco materials to some degree (e.g., whitened or bleached).
- Tobacco pulp can be whitened in certain embodiments according to any means known in the art.
- bleached tobacco material produced by various whitening methods using various bleaching or oxidizing agents and oxidation catalysts can be used.
- Example oxidizing agents include peroxides (e.g., hydrogen peroxide), chlorite salts, chlorate salts, perchlorate salts, hypochlorite salts, ozone, ammonia, potassium permanganate, and combinations thereof.
- Example oxidation catalysts are titanium dioxide, manganese dioxide, and combinations thereof.
- the tobacco material can be treated to extract a soluble component of the tobacco material therefrom.
- tobacco extract refers to the isolated components of a tobacco material that are extracted from solid tobacco pulp by a solvent that is brought into contact with the tobacco material in an extraction process.
- extraction techniques of tobacco materials can be used to provide a tobacco extract and tobacco solid material. See, for example, the extraction processes described in US Pat. Appl. Pub. No. 2011/0247640 to Beeson et al., which is incorporated herein by reference.
- Other example techniques for extracting components of tobacco are described in US Pat. Nos. 4,144,895 to Fiore; 4,150,677 to Osborne, Jr.
- the products of the disclosure can be characterized as completely free or substantially free of tobacco material (other than purified nicotine which may optionally be included as an active ingredient).
- tobacco material other than purified nicotine which may optionally be included as an active ingredient.
- certain embodiments can be characterized as having less than 1% by weight, or less than 0.5% by weight, or less than 0.1% by weight of tobacco material, or 0% by weight of tobacco material.
- Other additives can be characterized as having less than 1% by weight, or less than 0.5% by weight, or less than 0.1% by weight of tobacco material, or 0% by weight of tobacco material.
- any one or more of a filler component, a tobacco material, and the overall oral product described herein can be described as a particulate material.
- the term "particulate” refers to a material in the form of a plurality of individual particles, some of which can be in the form of an agglomerate of multiple particles, wherein the particles have an average length to width ratio less than 2: 1, such as less than 1.5: 1, such as about 1: 1.
- the particles of a particulate material can be described as substantially spherical or granular.
- dissolvable pouch materials can include, but are not limited to, spun or nonwoven alginate fibers, gluten fibers, mini-perforated flat sheets derived from alginate, carrageenan, and other polymer binders, and combinations thereof.
- the dissolution rate of the pouch material can be controlled by the use of cross-linking technology between alginate or pectin and calcium salts, for example.
- the dissolvable pouch material can include fast dissolving fibers formed using an electrospinning process (e.g., solution-based electrospinning) with hydrophilic polymers.
- the nonwoven web can be subjected to a second bonding method in order to reduce elongation of the web during processing.
- nonwoven webs of the present disclosure can exhibit significant elongation during high speed processing on pouching equipment. Too much elongation of the nonwoven web can cause the web to shrink during processing, such that the final product is not sized appropriately. As such, it can be necessary to modify process equipment to fit a wider roll of fleece, for example, to compensate for any shrinkage in the final product due to elongation.
- US Publication No. 2012/0055493 to Novak, III et al. incorporated by reference in its entirety, relates to an apparatus and process for providing pouch material formed into a tube for use in the manufacture of smokeless tobacco products.
- the pouch material can include a binder material according to the present disclosure (e.g. , a binder material comprising an aliphatic polyester).
- Similar apparatuses that incorporate equipment for supplying a continuous supply of a pouch material e.g., a pouch processing unit adapted to supply a pouch material to a continuous tube forming unit for forming a continuous tubular member from the pouch material
- a pouch processing unit adapted to supply a pouch material to a continuous tube forming unit for forming a continuous tubular member from the pouch material
- the pouch material can be routed from the first bobbin to a forming unit configured to form a continuous supply of the pouch material into a continuous tubular member defining a longitudinal axis.
- a forming unit configured to form a continuous supply of the pouch material into a continuous tubular member defining a longitudinal axis.
- the pouch material can be directed around an arrangement of roller members, otherwise referred to herein as a dancer assembly.
- a forming unit can be configured to cooperate with the first bobbin and the dancer assembly to take up slack in the pouch material and to maintain a certain amount of longitudinal tension on the pouch material as the pouch material is unwound from the first bobbin and fed to the forming unit, for example, by a drive system.
- At least one flavored strip, piece or sheet of flavored water dispersible or water soluble material may be disposed within each pouch along with or without at least one capsule.
- flavored water dispersible or water soluble material e.g., a breath-freshening edible film type of material
- Such strips or sheets may be folded or crumpled in order to be readily incorporated within the pouch. See, for example, the types of materials and technologies set forth in US Pat. Nos. 6,887,307 to Scott et al. and 6,923,981 to Ueung et al.; and The EFSA Journal (2004) 85, 1-32; which are incorporated herein by reference.
- the pouched products can further include product identifying information printed or dyed on the outer water-permeable pouch or imprinted (e.g., embossed, debossed, or otherwise pressed) on the outer water-permeable pouch, such as described in U.S. Pat. Appl. Pub. No. 2014/0255452 to Reddick et al., filed March 11, 2013, which is incorporated by reference herein.
- flavorants can also be incorporated into the nonwoven web if desired, such as by coating or printing an edible flavorant ink onto the nonwoven web. See, e.g., U.S. Pat. Appl. Pub. Nos. 2012/0085360 to Kawata et al. and 2012/0103353 to Sebastian et al., each of which is herein incorporated by reference.
- a pouched product as described herein can be packaged within any suitable inner packaging material and/or outer container. See also, for example, the various types of containers for smokeless types of products that are set forth in US Pat. Nos. 7,014,039 to Henson et al.; 7,537,110 to Kutsch et al.; 7,584,843 to Kutsch et al.; 8,397,945 to Gelardi et al., D592,956 to Thiellier; D594,154 to Patel et al.; and D625,178 to Bailey et al.; US Pat. Pub. Nos.
- Products of the present disclosure configured for oral use may be packaged and stored in any suitable packaging in much the same manner that conventional types of smokeless tobacco products are packaged and stored.
- a plurality of packets or pouches may be contained in a cylindrical container.
- the storage period of the product after preparation may vary.
- “storage period” refers to the period of time after the preparation of the disclosed product.
- one or more of the characteristics of the products disclosed herein e.g., retention of whiteness, lack of color change, retention of volatile flavor components
- the storage period i.e., the time period after preparation
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Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US202263416309P | 2022-10-14 | 2022-10-14 | |
| PCT/IB2023/060370 WO2024079722A1 (en) | 2022-10-14 | 2023-10-13 | Capsule-containing pouched products |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| EP4601490A1 true EP4601490A1 (en) | 2025-08-20 |
Family
ID=88505156
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP23793069.8A Pending EP4601490A1 (en) | 2022-10-14 | 2023-10-13 | Capsule-containing pouched products |
Country Status (2)
| Country | Link |
|---|---|
| EP (1) | EP4601490A1 (en) |
| WO (1) | WO2024079722A1 (en) |
Families Citing this family (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| SE2550706A1 (en) * | 2023-12-06 | 2025-07-05 | Mai Feng Zhuhai Tech Co Ltd | Nicotine pouch for oral mucosal absorption and preparation method thereof |
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-
2023
- 2023-10-13 WO PCT/IB2023/060370 patent/WO2024079722A1/en not_active Ceased
- 2023-10-13 EP EP23793069.8A patent/EP4601490A1/en active Pending
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