S-enantiomer enriched compositions and kits

By utilizing compositions enriched with S-beta-hydroxybutyrate, the challenges of transitioning into and maintaining a ketogenic state are addressed, achieving a more controlled and sustained ketogenic effect with reduced adverse symptoms.

JP7682245B2Active Publication Date: 2025-05-23AXCESS GLOBAL SCIENCES LLC
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Patent Information

Application Number
JP2023181088
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2020-02-06
Filing Date
2023-10-20
Publication Date
2025-05-23
Estimated Expiration
2040-02-10

AI Technical Summary

Technical Problem

Transitioning into and maintaining a ketogenic state is challenging due to the difficulty of depleting glucose stores and managing electrolyte imbalances, which can lead to adverse symptoms like hypoglycemia and electrolyte disturbances.

Method used

Compositions enriched with S-beta-hydroxybutyrate, either alone or in a non-racemic mixture with R-beta-hydroxybutyrate, are used to control and regulate ketone body levels, providing a more sustained and controlled ketogenic effect compared to racemic mixtures or compositions enriched with R-beta-hydroxybutyrate.

Benefits of technology

The use of S-beta-hydroxybutyrate compositions allows for easier transition into ketosis, reduces adverse transition symptoms, and provides sustained ketosis with reduced electrolyte load, improving metabolic and physiological benefits associated with ketosis.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide compositions and kits for controlling ketone body levels in a subject, including promoting and / or sustaining ketosis in a subject.SOLUTION: Ketogenic compositions include a mixture of optically pure S-beta-hydroxybutyrate salts and acids, or a non-racemic mixture of beta-hydroxybutyrate salts and acids enriched with the S-enantiomer. The S-beta-hydroxybutyrate enantiomer modulates the effect of ketone bodies in a subject and controls the rate at which ketosis is achieved. Beta-hydroxybutyric acid is more rapidly absorbed to and utilized by the body than salts or esters, enhances taste, and reduces the need to include citric acid or other edible acids. Beta-hydroxybutyric acid is more slowly absorbed to and utilized by the body and can provide one or more electrolytes.SELECTED DRAWING: None
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Description

[Technical field]

[0001] Disclosed herein are S-beta-hydroxybutyrate compounds, non-racemic beta-hydroxybutyrate compounds, salts, acids, and esters thereof, and compositions enriched in the S-enantiomer of beta-hydroxybutyrate, as well as methods for controlling or regulating blood levels and / or effects of ketone bodies in a subject. [Background technology]

[0002] During periods of fasting, intense exercise, and / or low carbohydrate consumption, the body's glucose and glycogen stores can be rapidly consumed and depleted. Failure to replenish glucose stores following their depletion causes the body to metabolically shift to producing and using ketone bodies for energy ("ketosis"). Ketone bodies can be used by the body's cells as fuel to meet the body's energy needs, including those of the brain and heart. For example, during prolonged fasting, blood ketone levels can increase to 2-3 mmol / L or more. It is traditionally understood that when blood ketones rise above 0.5 mmol / L, the heart, brain, and peripheral tissues are using ketone bodies (e.g., beta-hydroxybutyrate, and acetoacetate) as their primary fuel source. This state is referred to as ketosis. A state in which blood levels are between 1.0 mmol / L and 3.0 mmol / L is referred to as "nutritional ketosis."

[0003] Entering ketosis, in other words during ketogenic metabolism in the liver, causes the body to use dietary and body fat as the primary energy source. As a result, entering ketosis can induce body fat loss by controlling dietary fat intake and maintaining low carbohydrate intake and blood levels to maintain ketosis.

[0004] During ketosis, the body is in a ketogenic state, essentially burning fat as the primary fuel source. The body breaks down fat into fatty acids and glycerol, and the fatty acids are converted into acetyl-CoA molecules, which are ultimately converted in the liver via ketogenesis into the water-soluble ketone bodies beta-hydroxybutyrate (or "β-hydroxybutyrate" or "BHB"), acetoacetate (also known as acetylacetonate), and acetone. Beta-hydroxybutyrate and acetoacetate are the primary ketone bodies used by the body for energy, while acetone is eliminated and excreted as a by-product of ketogenesis.

[0005] Ketone body metabolism is associated with several beneficial effects, including anticonvulsant effects, enhanced brain metabolism, neuroprotection, muscle sparing properties, and improved cognitive and physical performance. Science-based improvements in the efficiency of cellular metabolism, managed by ketone supplementation, may have beneficial effects on physical, cognitive, and psychological health and long-term impacts on health related to common and avoidable diseases such as obesity, cardiovascular disease, neurodegenerative disease, diabetes, and cancer.

[0006] Pursuing a ketogenic diet and lifestyle and maintaining a state of nutritional ketosis has numerous health benefits, but significant barriers remain to pursuing and maintaining a ketogenic state. One of those barriers is the difficulty of transitioning into a ketogenic state. The fastest endogenous way to transition into ketosis through depletion of glucose stores in the body is by fasting combined with exercise. This is physically and mentally demanding and extremely difficult for even the most motivated and disciplined individuals.

[0007] Additionally, the transition to ketosis is often accompanied by hypoglycemia, which can often lead to lethargy and dizziness, resulting in an unpleasant physical and mental state commonly referred to as the "low carb cold." Many people also experience a downregulation in their metabolism as the body naturally goes into "energy saving" mode. Some suggest that these transient symptoms can last as long as 2-3 weeks. During this transition period, if a subject consumes a meal or snack that contains more carbohydrates than the limit, ketogenesis will immediately cease, the body will be taken out of ketosis, and the body will revert back to using glucose as its primary fuel, and the transition to ketosis will have to be restarted.

[0008] If a subject successfully establishes ketosis, maintaining ketosis is equally, if not more, difficult, since the diet must strictly maintain the ratio of carbohydrates and protein to fat. This is further complicated by the disruption of normal electrolyte balance that often occurs when entering and maintaining a ketogenic state. The depletion and decline of glycogen stores in the liver and muscles reduces the body's ability to retain water, leading to increased urination and therefore greater loss of electrolytes. The decrease in insulin levels due to ketosis also affects the rate at which certain electrolytes are excreted by the kidneys, further decreasing electrolyte levels in the body. Negative effects of electrolyte imbalance include muscle pain, cramps, twitching and weakness, restlessness, anxiety, frequent headaches, extreme thirst, insomnia, fever, heart palpitations or arrhythmia, digestive symptoms (such as cramps, constipation, or diarrhea), confusion and difficulty concentrating, bone disorders, joint pain, changes in blood pressure, changes in appetite or weight, fatigue (including chronic fatigue syndrome), numbness in the joints, and dizziness (especially when standing up quickly).

[0009] Some compositions used to promote ketosis in mammals contain a racemic mixture of beta-hydroxybutyrate (RS-beta-hydroxybutyrate or DL-beta-hydroxybutyrate). Other compositions, such as those by Lowery et al., disclosed in U.S. Patent Application Publication No. 2017 / 0296501, contain an endogenous form of beta-hydroxybutyrate, R-beta-hydroxybutyrate, while Lowery et al. discourage the use of the non-endogenous enantiomer, S-beta-hydroxybutyrate. Other compositions, such as those disclosed in U.S. Patent Application Publication No. 8,642,654 to Clarke et al., are composed largely or entirely of a single beta-hydroxybutyrate ester, (3R)-hydroxybutyl (3R)-hydroxybutyrate. Other enantiomers have been largely or entirely excluded, such as (3R)-hydroxybutyl(3S)-hydroxybutyrate, (3S)-hydroxybutyl(3R)-hydroxybutyrate, and (3S)-hydroxybutyl(3S)-hydroxybutyrate. The exclusion of the enantiomers that are not endogenous forms of beta-hydroxybutyrate is based on the belief that S-beta-hydroxybutyrate (also known as (3S)-hydroxybutyrate) is ineffective or harmful. [Prior art documents] [Patent documents]

[0010] [Patent Document 1] US Patent Application Publication No. 2017 / 0296501 [Patent Document 2] U.S. Patent No. 8,642,654 Summary of the Invention [Problem to be solved by the invention]

[0011] (overview) Disclosed herein are compositions and methods for controlling ketone body levels in a subject, including promoting and / or sustaining ketosis in a subject. [Means for solving the problem]

[0012] Exemplary compositions include S-beta-hydroxybutyrate, a non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate, wherein the non-racemic mixture is enriched in the S-beta-hydroxybutyrate enantiomer relative to the R-beta-hydroxybutyrate enantiomer, for example, by containing between 51% and 99.5% by enantiomeric equivalence of the S-beta-hydroxybutyrate enantiomer and between 49.5% and 0.5% by enantiomeric equivalence of the R-beta-hydroxybutyrate enantiomer.

[0013] A non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate contains more of the S-beta-hydroxybutyrate enantiomer than the endogenous form (R-enantiomer) produced by mammals to provide a more controlled and sustained ketogenic effect compared to a racemic mixture and / or a composition enriched with the R-enantiomer. Since the R-beta-hydroxybutyrate enantiomer is endogenously produced by mammals during ketosis, administration of the R-beta-hydroxybutyrate enantiomer to a subject provides an amount that can be immediately utilized by the body, such as to produce energy (e.g., as an alternative energy source to glucose). However, this effect is modulated and expanded when the S-enantiomer is the predominant component.

[0014] In contrast to compositions that are purposely enriched in the R-enantiomer or that minimize or completely eliminate the S-enantiomer, the non-racemic mixtures are enriched with the S-beta-hydroxybutyrate enantiomer, which is not endogenously produced by mammals, to produce one or more desired effects in mammals, as described herein.

[0015] Furthermore, conventional compositions typically include polymers, oligomers, esters, or salt forms of beta-hydroxybutyrate, while S-beta-hydroxybutyrate compounds and non-racemic mixtures enriched in S-beta-hydroxybutyrate compared to R-beta-hydroxybutyrate may contain the free acid forms of S-beta-hydroxybutyrate and / or R-beta-hydroxybutyrate. For example, the S-beta-hydroxybutyrate compound or non-racemic mixture may comprise one or more salts or esters of optically pure S-beta-hydroxybutyrate, or a non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate, in combination with S-beta-hydroxybutyric acid, and optionally R-beta-hydroxybutyric acid. Combining beta-hydroxybutyric acid with one or more beta-hydroxybutyrate salts is beneficial as it reduces electrolyte load, increases absorption rate, improves taste, facilitates formulation, and reduces the need to add citric acid or other edible acids to obtain a composition having a neutral or acidic pH.

[0016] In some embodiments, the compositions disclosed herein may be used in a method of increasing ketone body levels in a subject (including promoting and / or maintaining ketosis in the subject), the method comprising administering to the subject in need thereof a nutritionally or pharmaceutically effective amount of one or more of the compositions disclosed herein. Examples of beneficial effects of increasing ketone body levels in a subject include one or more of appetite suppression, weight loss, fat loss, reduction of blood glucose levels, improvement of mental acuity, increase in physical energy, improvement of cognitive function, reduction of traumatic brain injury, reduction of the effects of diabetes, improvement of neuropathy, reduction of cancer, reduction of inflammation, prevention of aging, anti-glycation, reduction of epileptic seizures, improvement of mood, enhancement of physical strength, increase in muscle mass, or improvement of body composition.

[0017] In some embodiments, administration of S-beta-hydroxybutyrate or a non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate in the enantiomeric ratios or proportions disclosed herein provides one or more of: increased endogenous production of R-beta-hydroxybutyrate and acetoacetate; endogenous conversion of S-beta-hydroxybutyrate to one or both of R-beta-hydroxybutyrate and acetoacetate; endogenous conversion of S-beta-hydroxybutyrate to fatty acids and sterols; prolonged ketosis; metabolism of S-beta-hydroxybutyrate independent of its conversion to R-beta-hydroxybutyrate and / or acetoacetate; increased fetal growth; increased number of years of development; reduced endogenous production of acetone during ketosis; signaling by S-beta-hydroxybutyrate regulating metabolism of R-beta-hydroxybutyrate and glucose; antioxidant activity; and production of acetyl-CoA.

[0018] The composition may include a dietetically or pharma- ceutical acceptable carrier.

[0019] That is, the present invention provides the following.

[0020] The present invention provides a composition for administering ketone bodies and / or ketone body precursors to a subject, the ketone body composition comprising: Optically pure S-beta-hydroxybutyrate or a non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate, comprising greater than 50% and less than 100% enantiomeric equivalent of S-beta-hydroxybutyrate and less than 50% and greater than 0% enantiomeric equivalent of R-beta-hydroxybutyrate, the optically pure S-beta-hydroxybutyrate comprises a mixture of at least one optically pure S-beta-hydroxybutyrate salt and optically pure S-beta-hydroxybutyric acid; or The non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate is at least one S-beta-hydroxybutyrate salt, at least one R-beta-hydroxybutyrate salt, and at least one S- or R-beta-hydroxybutyric acid, The composition is a powder, Preferably, the composition comprises a plurality of optically pure S-beta-hydroxybutyrate salts and optically pure S-beta-hydroxybutyric acid. Preferably, the composition comprises a non-racemic mixture comprising 50.5% to 99.5% enantiomeric equivalents of S-beta-hydroxybutyrate and 49.5% to 0.5% enantiomeric equivalents of R-beta-hydroxybutyrate; Preferably, the non-racemic mixture comprises 51% to 99% enantiomeric equivalents of S-beta-hydroxybutyrate and 49% to 1% enantiomeric equivalents of R-beta-hydroxybutyrate. Preferably, the non-racemic mixture comprises 52% to 98% enantiomeric equivalents of S-beta-hydroxybutyrate and 48% to 2% enantiomeric equivalents of R-beta-hydroxybutyrate. Preferably, the non-racemic mixture comprises 90% to 99.9% molar equivalents of a combination of S-beta-hydroxybutyrate salts and R-beta-hydroxybutyrate salts, and 10% to 0.1% molar equivalents of S-beta-hydroxybutyric acid and / or R-beta-hydroxybutyric acid. Preferably, the non-racemic mixture comprises 94% to 99.5% molar equivalents of a combination of S-beta-hydroxybutyrate salts and R-beta-hydroxybutyrate salts, and 6% to 0.5% molar equivalents of S-beta-hydroxybutyric acid and / or R-beta-hydroxybutyric acid. Preferably, the non-racemic mixture comprises 96% to 99% molar equivalents of a combination of S-beta-hydroxybutyrate salts and R-beta-hydroxybutyrate salts, and 4% to 1% molar equivalents of S-beta-hydroxybutyric acid and / or R-beta-hydroxybutyric acid. Preferably, the non-racemic mixture comprises at least one lithium, sodium, potassium, calcium, magnesium, or amino acid salt of S-beta-hydroxybutyrate and / or R-beta-hydroxybutyrate. Preferably, the composition further comprises at least one short chain fatty acid having less than 6 carbons, or a mono-, di-, or triglyceride of said at least one short chain fatty acid. Preferably, the composition further comprises at least one supplement selected from vitamins, minerals, nootropics, and herbal supplements.

[0021] The present invention also provides a composition for administering ketone bodies and / or ketone body precursors to a subject, the ketone body composition comprising: containing optically pure S-beta-hydroxybutyrate or a non-racemic mixture of greater than 50% and less than 100% enantiomeric equivalents of S-beta-hydroxybutyrate and less than 50% and greater than 0% enantiomeric equivalents of R-beta-hydroxybutyrate, the optically pure S-beta-hydroxybutyrate comprises a mixture of at least one optically pure S-beta-hydroxybutyrate salt and optically pure S-beta-hydroxybutyric acid; or the non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate comprises at least one S-beta-hydroxybutyrate salt, at least one R-beta-hydroxybutyrate salt, and at least one S- or R-beta-hydroxybutyric acid; and said composition being provided as or within a tablet, capsule, powder, food, food additive, flavored beverage, vitamin fortified beverage, non-alcoholic beverage, flavored beverage additive, vitamin fortified beverage additive, non-alcoholic beverage additive, candy, lollipop, lozenge, dietary supplement, flavored mouth spray, or suppository; Preferably, the composition comprises 50.5% to 99.5% S-beta-hydroxybutyrate in enantiomeric equivalents and 49.5% to 0.5% R-beta-hydroxybutyrate in enantiomeric equivalents. Preferably, the composition comprises 94% to 99.5% molar equivalents of a combination of S-beta-hydroxybutyrate salts and R-beta-hydroxybutyrate salts, and 6% to 0.5% molar equivalents of S-beta-hydroxybutyric acid and / or R-beta-hydroxybutyric acid. Preferably, the composition comprises at least one lithium, sodium, potassium, calcium, magnesium, or amino acid salt of S-beta-hydroxybutyrate, and the composition is a powder. Preferably, the composition further comprises at least one supplement selected from vitamins, minerals, nootropics, and herbal supplements.

[0022] The present invention further provides a composition for administering ketone bodies to a subject, comprising: a dietarily or pharma- ceutically acceptable carrier selected from the group consisting of a tablet, a capsule, a powder, a food, a food additive, a flavored beverage, a vitamin-fortified beverage, a non-alcoholic beverage, a flavored beverage additive, a vitamin-fortified beverage additive, a non-alcoholic beverage additive, a candy, a lollipop, a lozenge, a dietary supplement, a flavored mouth spray, and a suppository; and Optically pure S-beta-hydroxybutyrate or a non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate, comprising greater than 50% and less than 100% enantiomeric equivalent of S-beta-hydroxybutyrate and less than 50% and greater than 0% enantiomeric equivalent of R-beta-hydroxybutyrate, the optically pure S-beta-hydroxybutyrate comprises a mixture of at least one optically pure S-beta-hydroxybutyrate salt and optically pure S-beta-hydroxybutyric acid; or wherein the non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate comprises at least one S-beta-hydroxybutyrate salt, at least one R-beta-hydroxybutyrate salt, and at least one S- or R-beta-hydroxybutyric acid.

[0023] The present invention further provides a kit for administering ketone bodies to a subject, comprising: The composition of the present invention, a container in which the composition is placed; and a metering device configured to hold a unit dose or fraction thereof of the composition therein, the unit dose of the composition comprising about 0.5 g to about 25 g of optically pure S-beta-hydroxybutyrate or a non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate; Preferably, the container is selected from the group consisting of cartons, boxes, cans, jars, bags, pouches, bottles, jugs, and kegs. Preferably, the measuring device is selected from the group consisting of a cup, a scoop, a syringe, a dropper, a spatula, a spoon, and a colonic irrigation device.

[0024] Additional features and advantages will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the embodiments disclosed herein. It is to be understood that both the foregoing brief summary and the following detailed description are exemplary and explanatory only and are not restrictive of the embodiments described herein or the claims. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

[0025] (Detailed Description) 1.Definition The compound "beta-hydroxybutyrate", also known as β-hydroxybutyrate, 3-hydroxybutyrate, βHB, or BHB, has the general formula CH 3 CH 2 OHCH 2 It is the deprotonated form of beta-hydroxybutyric acid, a hydroxycarboxylic acid with COOH. The deprotonated form present at typical biological pH levels is CH 3 CH 2 OHCH 2 COO - The general chemical structures shown below represent beta-hydroxybutyrate compounds that may be utilized in the disclosed compositions. [ka] (In the formula, X may be hydrogen, a metal ion, an amino cation such as from an amino acid, an alkyl, an alkenyl, an aryl, or an acyl.

[0026] When X is hydrogen, the compound is beta-hydroxybutyric acid. When X is a metal ion or an amino cation, the compound is a beta-hydroxybutyrate salt. When X is an alkyl, alkenyl, aryl, or acyl, the compound is a beta-hydroxybutyrate ester. The aforementioned compounds can be in any desired physical form, such as a crystal, powder, solid, liquid, solution, suspension, or gel.

[0027] Unless otherwise specified, the term "salt" does not imply or mean any particular physical state such as crystals, powders, or other solid forms that dissolve in water to form a solution or disperse in a liquid to form a suspension or gel. A salt can be formed in solution by, for example, at least partially neutralizing beta-hydroxybutyric acid with a strong or weak base such as an alkali metal or alkaline earth metal hydroxide, carbonate, or bicarbonate, or a basic amino acid.

[0028] In some cases, the composition may include a mixture of one or more beta-hydroxybutyrate salts and beta-hydroxybutyric acid. Providing R-beta-hydroxybutyrate in its acid form can be beneficial as the absorption response time is much more rapid compared to the salt form. Nevertheless, even though the acid form itself is a liquid with an extremely low pH and an unpalatable taste, when prepared or combined with the salt form and the amount of beta-hydroxybutyric acid is less than in the salt form, the composition can still form typical solids, powders, or other forms of the salt form. In such cases, the form of the combination of the BHB salt and acid has an acceptable pH and taste. BHB compositions containing both the salt and acid forms have advantages such as improved absorption rate, improved bioavailability, reduced electrolyte load, ease of manufacture, significant improvement in taste, and reduced need for citric acid or other edible acids to obtain a neutral or acidic pH composition. It will also be understood that beneficial effects can be obtained using a mixture of a BHB salt and / or ester and the acid form of BHB.

[0029] The term "free beta-hydroxybutyric acid" means the sum of non-deprotonated beta-hydroxybutyric acid molecules and deprotonated beta-hydroxybutyric acid molecules. Deprotonated beta-hydroxybutyric acid molecules generally mean molecules that have released a proton to form hydronium ions (H 3 3O+) and beta-hydroxybutyrate anions (e.g., when dissolved in water).

[0030] Free beta-hydroxybutyric acid molecules are typically not deprotonated to a significant extent when included in the beta-hydroxybutyrate mixed hydrochloric acid composition in dry powder or other solid form.In such a case, the fractional amount of free beta-hydroxybutyric acid in the beta-hydroxybutyrate mixed hydrochloric acid composition on a weight basis is the weight of free beta-hydroxybutyric acid divided by the total weight of free beta-hydroxybutyric acid and beta-hydroxybutyrate salt.On a molar basis, the fractional amount of free beta-hydroxybutyric acid in the beta-hydroxybutyrate mixed hydrochloric acid composition is the molar equivalent of free beta-hydroxybutyric acid divided by the total molar equivalent of free beta-hydroxybutyric acid and beta-hydroxybutyrate anion provided by beta-hydroxybutyrate salt.

[0031] When dissolved in water, a portion of beta-hydroxybutyric acid typically forms a beta-hydroxybutyrate anion and a hydronium ion (H 3 O+). As a result, beta-hydroxybutyric acid molecules can exchange protons and cations with dissolved beta-hydroxybutyrate salts. For purposes of defining the relative amounts of beta-hydroxybutyric acid and beta-hydroxybutyrate salts in a mixed beta-hydroxybutyrate salt-acid composition, the dissociation of beta-hydroxybutyric acid molecules and exchange of protons and cations is not understood to change the molar ratio of free beta-hydroxybutyric acid to beta-hydroxybutyrate anions from the beta-hydroxybutyrate salts. The total amount of free beta-hydroxybutyric acid molecules in solution is the sum of dissolved beta-hydroxybutyric acid molecules that have not been deprotonated and beta-hydroxybutyrate anions formed by deprotonation of beta-hydroxybutyric acid molecules.

[0032] In other words, the total molar equivalents of beta-hydroxybutyric acid in solution, whether deprotonated or not, is understood to be the difference between (i) the sum of the molar equivalents of non-deprotonated beta-hydroxybutyric acid molecules and the total molar equivalents of beta-hydroxybutyrate anions (from all sources) in the solution, and (ii) the total molar equivalents of cationic charge provided by cations from beta-hydroxybutyrate salt compounds (which is equal to the total molar equivalents of beta-hydroxybutyrate anions provided by beta-hydroxybutyrate salts). Alkali metal cations, such as sodium and potassium, provide one mole of cationic charge per mole of metal cation. Meanwhile, cations of alkaline earth metals, such as magnesium and calcium, provide two moles of cationic charge per mole of metal cation. One mole of deprotonated beta-hydroxybutyric acid molecules provides one mole of anionic charge and one mole of cationic charge.

[0033] From the above, the mole fraction of beta-hydroxybutyric acid in solution relative to the total moles of beta-hydroxybutyrate molecules from the beta-hydroxybutyrate mixed salt-acid composition in solution is [(i)-(ii)÷(i)], and the mole fraction of beta-hydroxybutyrate molecules from the beta-hydroxybutyrate salt in solution is [(ii)÷(i)]. Multiplying each mole fraction by 100 gives the percentage of each in solution.

[0034] As an example, if a 100 molar equivalent beta-hydroxybutyrate mixed salt-acid composition in a dry powder state contained 5% free non-deprotonated beta-hydroxybutyric acid and 95% beta-hydroxybutyrate salt on a molar basis, there would be substantially 5 molar equivalents of beta-hydroxybutyric acid molecules and 95 molar equivalents of beta-hydroxybutyrate anion. If there is sufficient water to dissolve the beta-hydroxybutyrate salt and some of the beta-hydroxybutyric acid molecules are deprotonated, the molar equivalents of non-deprotonated beta-hydroxybutyric acid would be less than 5 and the molar equivalents of beta-hydroxybutyrate anion would be greater than 95. The degree of deprotonation of beta-hydroxybutyric acid in solution is related to the pH of the solution.

[0035] Whether a beta-hydroxybutyrate is an S- or R-enantiomer depends on the tetrahedral orientation of the hydroxy (or oxy group in the case of esters) on the 3-carbon (beta-carbon) in relationship to the planar carboxyl group.

[0036] Beta-hydroxybutyrate, typically the endogenous form R-beta-hydroxybutyrate, can be utilized by the patient's body as a fuel source when glucose levels in the subject are low or when the patient's body receives a supplement of a usable form of beta-hydroxybutyrate. Beta-hydroxybutyrate is commonly referred to as "ketone bodies."

[0037] As used herein, a "ketogenic composition" is formulated to elevate ketone body levels in a subject, including inducing and / or sustaining a desired level of elevated ketone bodies, such as ketosis, in a subject to which it is administered.

[0038] As used herein, "subject" or "patient" refers to a member of the animal kingdom, including mammals, including but not limited to humans and other primates, rodents, fish, reptiles, and birds. The subject may be any animal in need of therapy, treatment, or prevention, or any animal suspected of needing therapy, treatment, or prevention. Prevention means that something is done to prevent an event that might occur, such as when high glucose or diabetes is present. "Patient" and "subject" are used interchangeably herein.

[0039] The term "unit dose" refers to a dosage form configured to deliver a specific amount or dose of a composition or its components. Examples of dosage forms include, but are not limited to, tablets, capsules, powders, foods, food additives, beverages (such as flavored, vitamin-enriched, or non-alcoholic), beverage additives (such as flavored, vitamin-enriched, or non-alcoholic), candies, suckers, pastilles, dietary supplements, dietarily acceptable sprays (such as flavored mouth sprays), injectables (such as alcohol-free injectables), and suppositories. Such dosage forms may be configured to provide a complete unit dose or a fraction thereof (e.g., 1 / 2, 1 / 3, or 1 / 4 of a unit dose).

[0040] Another dosage form that can be used to provide a unit dose of the composition or its components is a unit dose measuring device, such as a cup, scoop, syringe, dropper, spoon, spatula, or colonic irrigation device, configured to hold therein a measured amount of the composition equal to a complete unit dose or fraction thereof (e.g., 1 / 2, 1 / 3, or 1 / 4 of a unit dose). For example, a bulk container, such as a carton, box, can, jar, bag, pouch, bottle, jug, or keg, containing several unit doses of the composition (e.g., 5-250 or 10-150 unit doses), may be provided to a user along with a unit dose measuring device configured to provide a unit dose or fraction thereof of the composition or its components.

[0041] A kit for providing the compositions disclosed herein in bulk form while being used to provide unit doses of the composition may include a bulk container that holds a quantity of the composition therein and a unit dose measuring device configured to provide a unit dose or fraction thereof of the composition or a component thereof. One or more unit dose measuring devices may be placed within the bulk container at the time of sale, may be attached to the outside of the bulk container, may be prepackaged with the bulk container within a larger package, or may be provided by the distributor or manufacturer for use with one or more bulk containers.

[0042] The kit may include instructions regarding the size of the unit dose or fraction thereof, and the method and frequency of administration. The instructions may be on the bulk container, prepackaged with the bulk container, placed in the packaging sold with the bulk container, or provided by the distributor or manufacturer (e.g., website, mailer, flyer, product literature, etc.). The instructions may include references to how to use a unit dose measuring device to properly deliver the unit dose or fraction thereof. The instructions may additionally or alternatively include references to common unit dose measuring devices, such as spoons, spatulas, cups, etc., that are not provided with the bulk container (e.g., in case the provided unit dose measuring device is lost or misplaced). In such cases, the kit may be assembled by the end user according to the instructions provided with the bulk container or instructions provided by the distributor on how to properly deliver the unit dose or fraction thereof of the product, composition.

[0043] "Ketosis" as used herein refers to a subject having blood ketone levels within the range of about 0.5 mmol / L to about 16 mmol / L. Ketosis may improve mitochondrial function, reduce reactive oxygen species production, reduce inflammation, and increase neurotrophic factor activity. "Ketoadaptation" as used herein refers to prolonged nutritional ketosis (>1 week) to obtain sustained, non-pathological "mild ketosis" or "therapeutic ketosis."

[0044] In some cases, "elevated ketone body levels" may not mean that a subject is in a state of "clinical ketosis," but may nonetheless refer to an increased supply of ketones for generating energy and / or other beneficial effects of ketone bodies. For example, a "ketone adapted" subject may not necessarily have elevated ketone body serum levels, but rather be able to utilize available ketone bodies more quickly compared to a subject that is not "ketone adapted." In such cases, "elevated ketone body levels" may refer to the total amount and / or rate of ketone bodies being utilized by the subject, rather than the plasma levels.

[0045] The term "short chain triglyceride" (SCT) refers to a molecule having a glycerol backbone with three medium chain fatty acids attached. Short chain fatty acids can range from 2 to 5 carbon atoms in length. Examples of short chain fatty acids include acetic acid, propionic acid, butyric acid, isobutyric acid, valeric acid, isovaleric acid, etc. An example of an SCT is tributyrin.

[0046] The term "medium chain triglyceride (MCT)" refers to a molecule having a glycerol backbone with three medium chain fatty acids attached. Medium chain fatty acids can range from 6 to 12 carbon atoms in length, and more likely range from 8 to 10 carbon atoms in length. Examples of fatty acids are caprylic acid, also known as octanoic acid, which has an eight carbon molecule, and capric acid, also known as decanoic acid, which has a ten carbon molecule. MCTs, medium chain fatty acids, and mono- and diglycerides are ketone body precursors that can provide an additional source for the production of ketone bodies independent of beta-hydroxybutyrate.

[0047] The term "long-chain triglyceride" (LCT) refers to a molecule having a glycerol backbone with three medium-chain fatty acids attached. The long-chain fatty acids can have more than 12 carbon atoms in length.

[0048] As used herein, the term "administration" or "administering" is used to describe the process of delivering the disclosed compositions to a subject. The compositions can be administered in a variety of ways, including orally, intragastricly, and parenterally (referring to intravenous and intraarterial, as well as other suitable parenteral routes), among others.

[0049] II. S-beta-hydroxybutyrate compounds and non-racemic mixtures enriched in S-beta-hydroxybutyrate Compositions for increasing ketone body levels in a subject, including controlling and / or regulating ketosis, include optically pure (100%) S-beta-hydroxybutyrate, or a non-racemic mixture of S-beta-hydroxybutyrate enriched in the S-enantiomer (i.e., greater than 50% and less than 100% by enantiomeric equivalent S-beta-hydroxybutyrate, and less than 50% and greater than 0% by enantiomeric equivalent R-beta-hydroxybutyrate).

[0050] In some embodiments, the non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate comprises, by enantiomeric equivalent, 50.5% to 99.5%, 51% to 99%, 52% to 98%, 53% to 97%, 55% to 96%, 57% to 93%, 60% to 90%, or 65% to 85% of the S-beta-hydroxybutyrate enantiomer, and 49.5% to 0.5%, 49% to 1%, 48% to 2%, 47% to 3%, 45% to 4%, 3% to 7%, 40% to 10%, or 35% to 15% of the R-beta-hydroxybutyrate enantiomer.

[0051] A non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate contains more S-beta-hydroxybutyrate enantiomer than the endogenous form R-beta-hydroxybutyrate enantiomer produced by mammals, to provide a more controlled, gradual, extended and / or regulated ketogenic effect compared to a racemic mixture or composition enriched with R-beta-hydroxybutyrate enantiomer. The R-beta-hydroxybutyrate enantiomer is endogenously produced by mammals during ketosis, so that administration of the R-beta-hydroxybutyrate enantiomer to a subject provides additional amounts and / or increases plasma levels that are immediately utilized by the body, such as for energy production (e.g., as an alternative energy source to glucose). However, this effect is regulated and extended due to the predominant S-enantiomer.

[0052] In contrast to compositions that intentionally minimize or eliminate S-beta-hydroxybutyrate, the non-racemic mixtures contain a majority quantity of an S-beta-hydroxybutyrate enantiomer that is not endogenously produced by a mammal to produce one or more desired effects in a mammal. For example, administration of S-beta-hydroxybutyrate together with R-beta-hydroxybutyrate may provide one or more of the following results: (1) increased endogenous production of R-beta-hydroxybutyrate and acetoacetate; (2) endogenous conversion of S-beta-hydroxybutyrate to R-beta-hydroxybutyrate and / or acetoacetate; (3) endogenous conversion of S-beta-hydroxybutyrate to fatty acids and sterols; (4) prolonged ketosis; (5) metabolism of S-beta-hydroxybutyrate independent of its conversion to R-beta-hydroxybutyrate and / or acetoacetate; (6) increased fetal growth; (7) increased number of years of growth; (8) decreased endogenous production of acetone during ketosis; (9) signaling by S-beta-hydroxybutyrate regulating R-beta-hydroxybutyrate and glucose metabolism; (10) antioxidant activity; and (11) production of acetyl-CoA.

[0053] Optically pure S-beta-hydroxybutyrate, or a non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate, may be used to produce one or more desired effects in a subject, including, but not limited to, appetite suppression, weight loss, fat loss, lowering blood glucose levels, improving mental alertness, increasing physical energy, improving cognitive function, reducing traumatic brain injury, reducing the effects of diabetes, improving neurological disorders, reducing cancer, reducing inflammation, anti-aging, anti-glycation, reducing epileptic seizures, improving mood, increasing physical strength, increasing muscle mass, or improving body composition.

[0054] The composition may include a nutritionally or pharma- ceutical acceptable carrier.

[0055] S-beta-hydroxybutyrate and R-beta-hydroxybutyrate can be provided in various forms such as salts and / or esters, along with an amount of the free acid form. The percent enantiomeric equivalents for each of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate are defined as the molar amount of either S-beta-hydroxybutyrate or R-beta-hydroxybutyrate divided by the total molar amount of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate. The amount of any cation forming a salt and / or alcohol forming an ester is excluded and not included in the calculation to determine the percent enantiomeric equivalents for each of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate. For example, weights of cations, alcohols, complexing agents, etc. can be considered so as not to affect the enantiomeric equivalents of R-BHB and S-BHB.

[0056] In some embodiments, optically pure S-beta-hydroxybutyrate, or a non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate, is provided in a composition comprising a food or pharmaceutically acceptable carrier. Examples include powders, liquids, tablets, capsules, foods, food additives, vitamin fortified beverages, beverage additives, candies, candy bars, lozenges, nutritional supplements, sprays, injections, and suppositories.

[0057] In some embodiments, optically pure S-beta-hydroxybutyrate or a non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate can be provided as a salt, such as one or more salts of alkali metals, alkaline earth metals, transition metals, amino acids, or metabolites of amino acids. Examples include lithium salts, sodium salts, potassium salts, magnesium salts, calcium salts, zinc salts, iron salts (as iron(II) and / or iron(III)), chromium salts, manganese salts, cobalt salts, copper salts, molybdenum salts, selenium salts, arginine salts, lysine salts, leucine salts, isoleucine salts, histidine salts, ornithine salts, citrulline salts, glutamine salts, and creatine salts. In some embodiments, the salt is not the calcium salt of S-beta-hydroxybutyrate.

[0058] In some embodiments, the non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate may be provided as one or more esters, such as mono-, di-, tri-, oligo-, and polyesters, such as monoesters of ethanol, monoesters of 1-propanol, monoesters of 1,2-propanediol, diesters of 1,2-propanediol, monoesters of 1,3-propanediol, diesters of 1,3-propanediol, monoesters of S-, R-, or SR-1,3-butanediol, diesters of S-, R-, or SR-1,3-butanediol, monoesters of glycerin, monoesters of (3S)-hydroxybutyl (3S)-hydroxybutyrate, monoesters of (3R)-hydroxybutyl (3S)-hydroxybutyrate, diesters of glycerin, triesters of glycerin, and the like. Examples of suitable hydroxybutyrates include esters, esters of acetoacetate, dimers, trimers, oligomers, and polyesters having repeating units of beta-hydroxybutyrate, as well as complex oligomers or polymers of beta-hydroxybutyrate with one or more other hydroxycarboxylic acids, such as lactic acid, citric acid, acetoacetic acid, quinic acid, shikimic acid, salicylic acid, tartaric acid, and malic acid, and / or beta-hydroxybutyrate with one or more diols, such as 1,3-propanediol and 1,3-butanediol, and one or more polyacids, such as tartaric acid, citric acid, malic acid, succinic acid, and fumaric acid. (3R)-hydroxybutyl (3R)-hydroxybutyrate monoesters may be included, but the amount of R-hydroxybutyrate should not exceed 48% by enantiomeric equivalent.

[0059] In some embodiments, optically pure S-beta-hydroxybutyrate may contain one or more salt forms of S-beta-hydroxybutyrate in combination with a relatively small amount of the acid form of S-beta-hydroxybutyrate. Non-racemic mixtures may contain one or more salt forms of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate in combination with a relatively small amount of the acid form of S-beta-hydroxybutyrate and / or R-beta-hydroxybutyrate. The ratio of salt to acid form of S-beta-hydroxybutyrate is not necessarily the same as the ratio of salt to acid form of R-beta-hydroxybutyrate (if included). This allows for greater flexibility and greater advantages in controlling the pharmacokinetics and electrolyte balance of the composition.

[0060] In some embodiments, the optically pure S-beta-hydroxybutyrate or non-racemic mixture contains less than 100% of one or more beta-hydroxybutyrate salts and greater than 0% free beta-hydroxybutyric acid, e.g., up to 99.9%, 99.8%, 99.7%, 99.6%, 99.5%, 99.4%, 99.3%, 99.2%, 99.1%, 99%, 98.8%, 98.65%, 98.5%, 98.35%, 98.2%, 98%, 97.75%, 97.5%, 97.25%, or 97%, and at least 75%, 80%, 85%, 90%, 92%, 93%, 94%, 95%, 96%, 97%, 98%, 9 ... 94%, 95%, 96%, or 97% of one or more S-beta-hydroxybutyrate and / or R-beta-hydroxybutyrate salts, and, by molar equivalent, at least 0.1%, 0.2%, 0.3%, 0.4%, 0.5%, 0.6%, 0.7%, 0.8%, 0.9%, 1%, 1.2%, 1.35%, 1.5%, 1.65%, 1.8%, 2%, 2.25%, 2.5%, 2.75%, or 3% but less than 25%, 20%, 15%, 10%, 8%, 6%, 5%, 4%, or 3% free S-beta-hydroxybutyrate and / or free R-beta-hydroxybutyrate.

[0061] When a non-racemic mixture contains a large amount of S-enantiomer compared to the R-enantiomer, it is possible to use a higher proportion of free R-beta-hydroxybutyric acid compared to the R-beta-hydroxybutyrate salt and still obtain a composition with a neutral or other desired pH, i.e., even if the relative amount of R-beta-hydroxybutyric acid is high compared to the R-beta-hydroxybutyrate salt, the total amount of acid may be relatively low if the amount of S-beta-hydroxybutyrate salt is high.

[0062] In other embodiments, the non-racemic mixture may contain one or more ester forms of optically pure S-beta-hydroxybutyrate, or a non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate, in combination with relatively small amounts of the acid forms of S-beta-hydroxybutyrate and / or R-beta-hydroxybutyrate. In yet other embodiments, the non-racemic mixture may contain both salt and ester forms of S-beta-hydroxybutyrate and / or R-beta-hydroxybutyrate, in combination with relatively small amounts of the acid forms of S-beta-hydroxybutyrate and / or R-beta-hydroxybutyrate.

[0063] In some embodiments, the composition may comprise at least one medium chain fatty acid, or a mono-, di-, or triglyceride of at least one medium chain fatty acid, wherein the medium chain fatty acid has 6-12 carbons, preferably 8-10 carbons. The composition may comprise at least one short chain fatty acid, or a mono-, di-, or triglyceride of said at least one short chain fatty acid, wherein said short chain fatty acid has less than 6 carbons. Less preferably, the composition may comprise at least one long chain fatty acid, or a mono-, di-, or triglyceride of said at least one long chain fatty acid, having more than 12 carbons.

[0064] Examples of short chain fatty acids include acetic acid, propionic acid, butyric acid, isobutyric acid, valeric acid, and isovaleric acid. Examples of medium chain fatty acids include caproic acid, caprylic acid, capric acid, and lauric acid. Examples of long chain fatty acids include myristic acid, palmitic acid, stearic acid, arachidic acid, behenic acid, lignoceric acid, cerotic acid, omega-3 fatty acid, omega-6 fatty acid, omega-7 fatty acid, and omega-9 fatty acid.

[0065] Examples and sources of medium chain fatty acids or their esters, such as medium chain triglycerides, include coconut oil, coconut milk powder, palm oil, palm kernel oil, caprylic acid, capric acid, isolated medium chain fatty acids (such as isolated hexanoic acid, isolated octanoic acid, isolated decanoic acid), medium chain triglycerides in either purified or natural form (such as coconut oil), and ester derivatives of medium chain fatty acid ethoxylated triglycerides, enone triglyceride derivatives, aldehyde triglyceride derivatives, monoglyceride derivatives, diglyceride derivatives, and triglyceride derivatives, as well as salts of medium chain triglycerides. Ester derivatives optionally include alkyl ester derivatives, such as methyl, ethyl, propyl, butyl, hexyl, and the like.

[0066] The administration of optically pure S-beta-hydroxybutyrate or a non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate allows the blood levels of ketone bodies to be controlled, extended, and regulated, thereby allowing the metabolic and physiological benefits of sustained ketosis to be utilized. By increasing the blood levels of ketone bodies, subjects can have more flexibility in choosing their diet compared to methods that aim to induce and maintain ketosis based on diet alone (e.g., fasting and / or restricting carbohydrate intake). For example, a subject administered an appropriate amount of a non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate can occasionally consume carbohydrate or sugar-based foods without endangering the ketogenic state and returning to a glucose-based metabolic state. Moreover, such administration facilitates the transition to a ketotic state and reduces or eliminates the typical adverse effects associated with the transition to a ketotic state.

[0067] In some embodiments, the ketogenic composition comprises a therapeutically effective amount of vitamin D 3 Vitamin D 3 It is believed that vitamin D acts in conjunction with magnesium and calcium to promote good bone health and prevent unwanted calcification of soft tissues. In a preferred embodiment, the average daily dose of the ketogenic composition comprises vitamin D 3 in an amount containing, for example, about 200 IU ("international units") to about 8000 IU, or about 400 IU to about 4000 IU, or about 600 IU to about 3000 IU. 3 In some embodiments, the average daily dose of the ketogenic composition comprises vitamin D 3 For example, about 5 μg to about 200 μg, about 10 μg to about 100 μg, or about 15 μg to about 75 μg of vitamin D 3 is contained.

[0068] Some embodiments also include one or more additional ketone precursors or supplements. These additional ketone precursors or supplements may include acetoacetate, ketone esters, and / or other compounds that cause an increase in blood ketone levels without adding more electrolytes to the bloodstream. Other additives include nootropics such as metabolites, caffeine, theobromine, and L-alpha glyceryl phosphorylcholine ("alpha GPC") that enhance or facilitate the transport of ketone bodies into the mitochondria.

[0069] The compositions may also contain flavorings that help mask the bad taste of beta-hydroxybutyrate compounds. These include essential oils such as peppermint, natural and artificial sweeteners, and other flavors known in the art.

[0070] In some embodiments, the ketogenic composition may further contain one or more additional ingredients configured to reduce the hygroscopicity of the composition. For example, various anti-caking agents, flow agents, and / or hygroscopic agents may be included in types and amounts that are safe for ingestion. Such additional ingredients may include one or more of aluminosilicates, ferrocyanides, carbonates or bicarbonates, silicates (e.g., sodium or calcium silicate), silica, phosphates (e.g., dicalcium phosphate or tricalcium phosphate), talc, powdered cellulose, calcium carbonate, and the like.

[0071] III. Administration In some embodiments, the compositions disclosed herein may be used in a method of increasing ketone body levels in a subject, including promoting and / or maintaining ketosis, comprising administering a nutritionally or pharma- ceutically effective amount of one or more of the compositions disclosed herein to a subject in need thereof. Examples of beneficial effects of increasing ketone body levels in a subject, including promoting and / or maintaining ketosis, include one or more of appetite suppression, weight loss, fat loss, lowering blood glucose levels, improving mental agility, increasing physical energy, improving cognitive function, reducing traumatic brain injury, reducing the effects of diabetes, improving neurological disorders, reducing cancer, reducing inflammation, anti-aging, anti-glycation, reducing epileptic seizures, improving mood, increasing physical strength, increasing muscle mass, or improving body composition.

[0072] In some embodiments, administration of optically pure S-beta-hydroxybutyrate or a non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate in the enantiomeric ratios or proportions described herein provides one or more of: increased endogenous production of R-beta-hydroxybutyrate and acetoacetate; endogenous conversion of S-beta-hydroxybutyrate to one or both of R-beta-hydroxybutyrate and acetoacetate; endogenous conversion of S-beta-hydroxybutyrate to fatty acids and sterols; prolonged ketosis; metabolism of S-beta-hydroxybutyrate independent of its conversion to R-beta-hydroxybutyrate and / or acetoacetate; increased fetal development; increased years of development; decreased endogenous production of acetone during ketosis; signaling by S-beta-hydroxybutyrate regulating metabolism of R-beta-hydroxybutyrate and glucose; antioxidant activity; and production of acetyl-CoA.

[0073] The ketogenic compositions described herein may be administered to a subject in a therapeutically effective amount and / or at a frequency to induce or maintain ketosis. In some embodiments, a single dose comprises an amount of optically pure S-beta-hydroxybutyrate or a non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate ranging from about 0.5 grams to about 25 grams, or from about 0.75 grams to about 20 grams, or from about 1 gram to about 15 grams, or from about 1.5 grams to about 12 grams.

[0074] In some embodiments, the ketogenic composition comprises vitamin D 3 The ketogenic composition may contain or be administered with other supplements known in the art, such as vitamins, minerals, nootropics, etc. Examples of vitamin, mineral and herbal supplements that may be added to the ketogenic composition include one or more of vitamin A, vitamin C, vitamin E, niacin, vitamin B6, folic acid, 5-MTHF, vitamin B12, iodine, zinc, copper, manganese, chromium, caffeine, theobromine, theacrine, methylliberin, huperzine A, epicatechin, and enzymes.

[0075] In some embodiments, the composition may further comprise one or more medium chain fatty acids, fatty acid esters, or mono-, di-, or triglycerides of medium chain fatty acids to provide an additional source of ketone bodies as described herein to maintain ketosis for a longer period of time compared to S-beta-hydroxybutyrate or a non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate per se. In some embodiments, the composition is preferably administered such that the ratio of S-beta-hydroxybutyrate or a non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate to medium chain fatty acids (or esters thereof) ranges from about 4:1 to about 1:4, or from about 2:1 to about 1:2, or from about 1.5:1 to about 1:1.5.

[0076] In some embodiments, the subject is preferably on a ketogenic diet that restricts carbohydrate and protein intake during administration of the composition. In one embodiment, the subject may restrict dietary intake to a ratio of about 65% fat, about 25% protein, and about 10% carbohydrate. The resulting therapeutic ketosis provides rapid and sustained keto-adaptation as a metabolic therapy for a wide range of metabolic disorders, and provides nutritional support for therapeutic fasting, weight loss, and performance enhancement. With this in mind, the composition is typically administered once daily, twice daily, or three times daily to subjects who wish to promote and / or maintain a state of ketosis.

[0077] In a preferred embodiment, the ketogenic composition may be administered orally in a powdered form such as a solid and / or powder mixture (e.g., a powder-filled gelatin capsule), a tightly pressed tablet, or other oral administration routes known in the art.

[0078] In some embodiments, the composition is administered in multiple doses over a period of time. The frequency of administration of the composition can vary depending on any of a variety of factors, such as the timing of treatment from previous treatment, the purpose of treatment, etc. The duration of administration of the composition (e.g., the period during which the drug is administered) can vary depending on any of a variety of factors, including the subject's response, the desired effect of treatment, etc.

[0079] The amount of the composition administered may vary depending on factors such as the degree of sensitivity of the individual, the age, sex, and weight of the individual, the idiosyncratic response of the individual, etc. A "therapeutically effective amount" is an amount necessary to promote a therapeutically effective result in vivo (i.e., therapeutic ketosis). In accordance with the present disclosure, a suitable single dose size is an amount that can prevent or ameliorate (reduce or eliminate) symptoms in a patient when administered one or more times over a suitable period of time.

[0080] The amount of the composition administered will depend on the potency, absorption, distribution, metabolism and excretion rate of unused ketone bodies, electrolytes, method of administration, the specific disorder being treated, and other factors known to those skilled in the art.Taking into account the severity of the condition to be alleviated, the dosage should be sufficient to affect the desired response, such as a therapeutic or preventive response to a specific disorder or condition.The composition may be administered once or in divided doses over time.It should be understood that the dosage may be adjusted according to individual need and the professional judgment of the person administering or supervising the administration of the composition. EXAMPLES

[0081] IV. Working Examples Below are described exemplary S-beta-hydroxybutyrate and non-racemic mixtures of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate compositions, and other ketogenic compositions, useful for increasing ketone levels in a subject, including inducing and / or regulating a ketogenic state in a subject to which they are administered. It should be appreciated that the beta-hydroxybutyrate compounds described in the examples may be in the form of salts, esters, dimers, trimers, oligomers and polymers as described herein. What is important from the perspective of the examples is the enantiomeric ratio or ratio of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate.

[0082] In some cases, the compositions may be mixtures of beta-hydroxybutyrate salts, mixtures of beta-hydroxybutyrate esters, mixtures of beta-hydroxybutyrate salts and esters, mixtures of beta-hydroxybutyrate salts and free beta-hydroxybutyric acid, mixtures of beta-hydroxybutyrate esters and free beta-hydroxybutyric acid, or mixtures of beta-hydroxybutyrate salts, beta-hydroxybutyrate esters and free beta-hydroxybutyric acid to provide the desired electrolyte balance, taste, and / or pharmacokinetic response. The compositions may also be combined with short, medium, or long chain fatty acids, esters, glycerides, and other supplements disclosed herein to provide the desired levels of elevated ketone bodies and other effects.

[0083] Example 1 A non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate is prepared by mixing one or more S-beta-hydroxybutyrate compounds with a racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate, providing 51% S-beta-hydroxybutyrate enantiomers and 49% R-beta-hydroxybutyrate enantiomers by enantiomeric equivalent. The non-racemic mixture contains less R-beta-hydroxybutyrate enantiomers, so that at a given dosage, ketosis occurs more slowly compared to the same dosage of the racemic mixture. Meanwhile, the inclusion of S-beta-hydroxybutyrate enantiomers provides a longer ketotic state and / or other benefits as disclosed herein.

[0084] The non-racemic mixture is easily administered as a ketogenic composition, for example, in powder form as a dietary supplement mixed with food or drink, in the form of one or more capsules or tablets, or in liquid form, such as a mouth spray.

[0085] Example 2 A non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate is prepared by mixing one or more S-beta-hydroxybutyrate compounds with a racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate, providing 52% S-beta-hydroxybutyrate enantiomers and 48% R-beta-hydroxybutyrate enantiomers by enantiomeric equivalent. The non-racemic mixture contains less R-beta-hydroxybutyrate enantiomers, so that at a given dosage, the onset of ketosis is delayed compared to the racemic mixture or the same dosage of the non-racemic mixture of Example 1. On the other hand, the inclusion of S-beta-hydroxybutyrate enantiomers provides a longer ketotic state and / or other benefits disclosed herein compared to compositions enriched with R-beta-hydroxybutyrate enantiomers.

[0086] Example 3 A non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate is prepared by mixing one or more S-beta-hydroxybutyrate compounds with a racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate, providing 53% S-beta-hydroxybutyrate enantiomers and 47% R-beta-hydroxybutyrate enantiomers by enantiomeric equivalent. The non-racemic mixture contains less R-beta-hydroxybutyrate enantiomers, so that at a given dosage, the onset of ketosis is delayed compared to the racemic mixture or the same dosage of the non-racemic mixture of Examples 1 and 2. On the other hand, the inclusion of S-beta-hydroxybutyrate enantiomers provides a longer ketotic state and / or other benefits disclosed herein compared to compositions enriched with R-beta-hydroxybutyrate enantiomers.

[0087] Example 4 A non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate is prepared by mixing one or more S-beta-hydroxybutyrate compounds with a racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate, providing 55% S-beta-hydroxybutyrate enantiomers and 45% R-beta-hydroxybutyrate enantiomers by enantiomeric equivalent. The non-racemic mixture contains less R-beta-hydroxybutyrate enantiomers, and therefore, at a given dosage, the onset of ketosis is delayed compared to the racemic mixture or the same dosage of the non-racemic mixture of Examples 1-3. On the other hand, the inclusion of S-beta-hydroxybutyrate enantiomers provides a longer ketotic state and / or other benefits disclosed herein compared to compositions enriched with R-beta-hydroxybutyrate enantiomers.

[0088] Example 5 A non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate is prepared by combining one or more S-beta-hydroxybutyrate compounds with a racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate, providing 57% S-beta-hydroxybutyrate enantiomers and 43% R-beta-hydroxybutyrate enantiomers by enantiomeric equivalent. The non-racemic mixture contains less R-beta-hydroxybutyrate enantiomers, and therefore, at a given dosage, the onset of ketosis is delayed compared to the racemic mixture or the same dosage of the non-racemic mixture of Examples 1-4. On the other hand, the inclusion of S-beta-hydroxybutyrate enantiomers provides a longer ketotic state and / or other benefits disclosed herein compared to compositions enriched with R-beta-hydroxybutyrate enantiomers.

[0089] Example 6 A non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate is prepared by mixing one or more S-beta-hydroxybutyrate compounds with a racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate, providing 60% S-beta-hydroxybutyrate enantiomers and 40% R-beta-hydroxybutyrate enantiomers by enantiomeric equivalent. The non-racemic mixture contains less R-beta-hydroxybutyrate enantiomers, and therefore, at a given dosage, the onset of ketosis is delayed compared to the racemic mixture or the same dosage of the non-racemic mixture of Examples 1-5. On the other hand, the inclusion of S-beta-hydroxybutyrate enantiomers provides a longer ketotic state and / or other benefits disclosed herein compared to compositions enriched with R-beta-hydroxybutyrate enantiomers.

[0090] Example 7 A non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate is prepared by combining one or more S-beta-hydroxybutyrate compounds with a racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate, providing 65% S-beta-hydroxybutyrate enantiomers and 35% R-beta-hydroxybutyrate enantiomers by enantiomeric equivalent. The non-racemic mixture contains less R-beta-hydroxybutyrate enantiomers, and therefore, at a given dosage, the onset of ketosis is delayed compared to the racemic mixture or the same dosage of the non-racemic mixture of Examples 1-6. On the other hand, the inclusion of S-beta-hydroxybutyrate enantiomers provides a longer ketotic state and / or other benefits disclosed herein compared to compositions enriched with R-beta-hydroxybutyrate enantiomers.

[0091] Example 8 A non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate is prepared by mixing one or more S-beta-hydroxybutyrate compounds with a racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate, providing 70% S-beta-hydroxybutyrate enantiomers and 30% R-beta-hydroxybutyrate enantiomers by enantiomeric equivalent. The non-racemic mixture contains less R-beta-hydroxybutyrate enantiomers, and therefore, at a given dosage, the onset of ketosis is delayed compared to the racemic mixture or the same dosage of the non-racemic mixture of Examples 1-7. On the other hand, the inclusion of S-beta-hydroxybutyrate enantiomers provides a longer ketotic state and / or other benefits disclosed herein compared to compositions enriched with R-beta-hydroxybutyrate enantiomers.

[0092] Example 9 A non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate is prepared by mixing one or more S-beta-hydroxybutyrate compounds with a racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate, providing 75% S-beta-hydroxybutyrate enantiomers and 25% R-beta-hydroxybutyrate enantiomers by enantiomeric equivalent. The non-racemic mixture contains less R-beta-hydroxybutyrate enantiomers, and therefore, at a given dosage, the onset of ketosis is delayed compared to the racemic mixture or the same dosage of the non-racemic mixture of Examples 1-8. On the other hand, the inclusion of S-beta-hydroxybutyrate enantiomers provides a longer ketotic state and / or other benefits disclosed herein compared to compositions enriched with R-beta-hydroxybutyrate enantiomers.

[0093] Example 10 A non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate is prepared by mixing one or more S-beta-hydroxybutyrate compounds with a racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate, providing 80% S-beta-hydroxybutyrate enantiomers and 20% R-beta-hydroxybutyrate enantiomers by enantiomeric equivalent. The non-racemic mixture contains less R-beta-hydroxybutyrate enantiomers, and therefore, at a given dosage, the onset of ketosis is delayed compared to the racemic mixture or the same dosage of the non-racemic mixture of Examples 1-9. On the other hand, the inclusion of S-beta-hydroxybutyrate enantiomers provides a longer ketotic state and / or other benefits disclosed herein compared to compositions enriched with R-beta-hydroxybutyrate enantiomers.

[0094] Example 11 Non-racemic mixtures of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate are prepared by combining one or more S-beta-hydroxybutyrate compounds with a racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate compositions to provide 90%, 91%, 92%, 93%, 94%, 95%, 96%, 97%, 98%, 99%, and 99.5% S-beta-hydroxybutyrate enantiomers and 10%, 9%, 8%, 7%, 6%, 5%, 4%, 3%, 2%, 1%, or 0.5% R-beta-hydroxybutyrate enantiomers in enantiomeric equivalent amounts. The non-racemic mixture contains substantially less R-beta-hydroxybutyrate enantiomer, which significantly delays the onset of ketosis at a given dosage compared to the racemic mixture or the same dosage of the non-racemic mixtures of Examples 1-10, while the inclusion of S-beta-hydroxybutyrate enantiomer results in a longer state of ketosis and / or other benefits disclosed herein.

[0095] Example 12 A composition comprising one or more S-beta-hydroxybutyrate compounds is mixed with a carrier to form a composition having 100% equivalents of S-beta-hydroxybutyrate enantiomer and 0% equivalents of R-beta-hydroxybutyrate enantiomer. Since the composition does not contain the R-beta-hydroxybutyrate enantiomer, at a given dose, the onset of ketosis is significantly delayed compared to the same dose of the racemic mixture or the non-racemic mixture of Examples 1-11. On the other hand, the inclusion of the S-beta-hydroxybutyrate enantiomer results in a delayed and / or prolonged state of ketosis and / or other benefits disclosed herein.

[0096] Example 13 Any of the above examples are modified by combining optically pure S-beta-hydroxybutyrate, or a non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate, with a food or pharma- ceutically acceptable carrier.

[0097] Example 14 Any of the above embodiments are modified by combining optically pure S-beta-hydroxybutyrate, or a non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate, with one or more medium chain triglycerides and / or one or more medium chain fatty acids and / or one or more mono- or diglycerides of medium chain fatty acids.

[0098] Example 15 Any of the above embodiments are modified by combining optically pure S-beta-hydroxybutyrate, or a non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate, with one or more medium chain triglycerides and / or one or more short chain fatty acids and / or one or more mono- or diglycerides of short chain fatty acids.

[0099] Example 16 Any of the above embodiments are modified by combining optically pure S-beta-hydroxybutyrate, or a non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate, with one or more long chain triglycerides and / or one or more long chain fatty acids and / or one or more mono- or diglycerides of long chain fatty acids.

[0100] Example 17 Optically pure S-beta-hydroxybutyrate or a non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate is used as a vitamin D supplement. 3 Any of the foregoing embodiments may be modified by combining with one or more dietary supplements, such as vitamins, minerals and other dietary supplements known in the art.

[0101] Example 18 Any of the foregoing examples are modified by including one or more salts of optically pure S-beta-hydroxybutyrate or a non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate, and at least one of S-beta-hydroxybutyric acid or R-beta-hydroxybutyric acid to provide a mixture of S- and / or R-beta-hydroxybutyrate salts and free S- and / or R-beta-hydroxybutyric acid. wherein the mixture contains less than 100% of one or more beta-hydroxybutyrate salts and greater than 0% free beta-hydroxybutyric acid, and is at most one or more of 99.9%, 99.8%, 99.7%, 99.6%, 99.5%, 99.4%, 99.3%, 99.2%, 99.1%, 99%, 98.8%, 98.65%, 98.5%, 98.35%, 98.2%, 98%, 97.75%, 97.5%, 97.25%, or 97% by molar equivalent. S-beta-hydroxybutyrate and / or R-beta-hydroxybutyrate salts and containing at least 0.1%, 0.2%, 0.3%, 0.4%, 0.5%, 0.6%, 0.7%, 0.8%, 0.9%, 1%, 1.2%, 1.35%, 1.5%, 1.65%, 1.8%, 2%, 2.25%, 2.5%, 2.75%, or 3% free S-beta-hydroxybutyrate and / or free R-beta-hydroxybutyrate by molar equivalent.

[0102] Example 19 Any of the preceding examples may be modified by including one or more esters of S-beta-hydroxybutyrate and / or R-beta-hydroxybutyrate and at least one of S-beta-hydroxybutyric acid or R-beta-hydroxybutyric acid to provide a mixture of beta-hydroxybutyrate esters and free S- and / or R-beta-hydroxybutyric acid, wherein the mixture includes less than 100% one or more beta-hydroxybutyrate esters and greater than 0% free beta-hydroxybutyric acid.

[0103] The present invention may be embodied in other specific forms without departing from its spirit or essential characteristics. The described embodiments are to be considered in all respects as illustrative only and not limiting. The scope of the present invention is therefore indicated by the appended claims rather than the foregoing description. All modifications that come within the meaning and range of equivalency of the claims are to be embraced within their scope.

Claims

1. A composition for use in administering ketone bodies and / or ketone body precursors to a subject to increase blood ketone levels and to cause at least one of the following: appetite suppression, weight loss, fat loss, lowering blood glucose levels, improving mental alertness, increasing physical energy, improving cognitive function, reducing traumatic brain injury, reducing the effects of diabetes, improving neurological disorders, reducing cancer, reducing inflammation, anti-aging, anti-glycation, reducing epileptic seizures, improving mood, increasing physical strength, increasing muscle mass, or improving body composition, comprising: The composition, optically pure S-beta-hydroxybutyrate or a non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate comprising greater than 50% and less than 100% enantiomeric equivalent of S-beta-hydroxybutyrate and less than 50% and greater than 0% enantiomeric equivalent of R-beta-hydroxybutyrate; wherein the optically pure S-beta-hydroxybutyrate comprises a mixture of at least one optically pure S-beta-hydroxybutyrate salt and optically pure S-beta-hydroxybutyric acid, wherein the optically pure S-beta-hydroxybutyrate comprises 75% to 99.9% molar equivalents of at least one optically pure S-beta-hydroxybutyrate salt and 25% to 0.1% molar equivalents of optically pure S-beta-hydroxybutyric acid; or The non-lactating agent is a compound having a non-single bond with S-beta-hydroxybutyrate and R-beta-hydroxybutyrate. Semi-mixtures are at least one S-beta-hydroxybutyrate salt; at least one R-beta-hydroxybutyrate salt, and at least one S- or R-beta-hydroxybutyric acid, wherein the non-racemic mixture comprises 75% to 99.9% molar equivalents of a combination of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate salts and 25% to 0.1 molar equivalents of S-beta-hydroxybutyric acid and / or R-beta-hydroxybutyric acid.

2. 10. The composition of claim 1, wherein the composition comprises 80% to 99.8% by molar equivalent of total beta-hydroxybutyrate salts and 20% to 0.2% by molar equivalent of total beta-hydroxybutyric acid.

3. 3. The composition of claim 1 or 2, wherein the composition comprises 85% to 99.7% by molar equivalent of total beta-hydroxybutyrate salts and 15% to 0.3% by molar equivalent of total beta-hydroxybutyric acid.

4. The composition described in any one of claims 1 to 3, wherein the composition comprises, by molar equivalent, 90% to 99.6% total beta-hydroxybutyrate salts and 10% to 0.4% total beta-hydroxybutyric acid.

5. 5. The composition of any one of claims 1 to 4, wherein the non-racemic mixture comprises from 50.5% to 99.5% enantiomeric equivalent of S-beta-hydroxybutyrate and from 49.5% to 0.5% enantiomeric equivalent of R-beta-hydroxybutyrate.

6. 6. The composition of any one of claims 1 to 5, wherein the non-racemic mixture comprises from 51% to 99% enantiomeric equivalent of S-beta-hydroxybutyrate and from 49% to 1% enantiomeric equivalent of R-beta-hydroxybutyrate.

7. 7. The composition of any one of claims 1 to 6, wherein the composition is in a dosage form providing a unit dose of 0.5 g to 25 g of a combined total amount of beta-hydroxybutyrate salt and beta-hydroxybutyric acid.

8. 8. The composition of any one of claims 1 to 7, wherein the composition comprises at least one lithium, sodium, potassium, calcium, magnesium, or amino acid salt of S-beta-hydroxybutyrate and / or R-beta-hydroxybutyrate.

9. 9. The composition of any one of claims 1 to 8, further comprising at least one short chain fatty acid having less than 6 carbons, or a mono-, di-, or triglyceride of said at least one short chain fatty acid.

10. 10. The composition of any one of claims 1 to 9, further comprising at least one supplement selected from vitamins, minerals, nootropics, and herbal supplements.

11. A composition for use in administering ketone bodies and / or ketone body precursors to a subject to increase blood ketone levels and to cause at least one of the following: appetite suppression, weight loss, fat loss, lowering blood glucose levels, improving mental alertness, increasing physical energy, improving cognitive function, reducing traumatic brain injury, reducing the effects of diabetes, improving neurological disorders, reducing cancer, reducing inflammation, anti-aging, anti-glycation, reducing epileptic seizures, improving mood, increasing physical strength, increasing muscle mass, or improving body composition, comprising: The composition, Optically pure S-beta-hydroxybutyrate, or 50% by enantiomeric equivalent 5% and less than 100% S-beta-hydroxybutyrate and enantiomeric equivalents S-beta-hydroxybutyrate with less than 0% and greater than 0% R-beta-hydroxybutyrate a non-racemic mixture of R-beta-hydroxybutyrate and R-beta-hydroxybutyrate, wherein the optically pure S-beta-hydroxybutyrate comprises at least one Optically pure S-beta-hydroxybutyrate salt and optically pure S-beta-hydroxybutyrate salt and mixtures of optically pure S-beta-hydroxybutyric acid and S-beta-hydroxybutyric acid. At least one optically pure S-beta having a molar equivalent ratio of 75% to 99.9%. -hydroxybutyrate salt and 25% to 0.1% molar equivalent of optically pure S-beta -hydroxybutyric acid, or The non-lactating agent is a compound having a non-single bond with S-beta-hydroxybutyrate and R-beta-hydroxybutyrate. The semi-mixture comprises at least one S-beta-hydroxybutyrate salt, at least one and at least one S- or R-beta-hydroxybutyrate salt of ter-hydroxybutyric acid, wherein the non-racemic mixture is present in an amount of from 75% to 99% by molar equivalent. 9% S-beta-hydroxybutyrate salt and R-beta-hydroxybutyrate A combination of salts and 25% to 0.1 molar equivalents of S-beta-hydroxybutyric acid and / or or R-beta-hydroxybutyric acid, The composition may be formulated as a tablet, capsule, powder, food, food additive, flavored beverage, or the like. Foods, Vitamin-fortified beverages, Non-alcoholic beverages, Flavored beverage additives, Vitamin-fortified Beverage additives, non-alcoholic beverage additives, candy, lollipops, lozenges as a dietary supplement, flavored mouth spray, or suppository, or The composition is provided in

12. 12. The composition of claim 11, wherein the composition comprises 80% to 99.8% by molar equivalent of total beta-hydroxybutyrate salts and 20% to 0.2% by molar equivalent of total beta-hydroxybutyric acid.

13. 13. The composition of claim 11 or 12, wherein the composition comprises 85% to 99.7% by molar equivalent of total beta-hydroxybutyrate salts and 15% to 0.3% by molar equivalent of total beta-hydroxybutyric acid.

14. The composition of any one of claims 11 to 13, wherein the composition comprises 90% to 99.6% by molar equivalent total beta-hydroxybutyrate salts and 10% to 0.4% by molar equivalent total beta-hydroxybutyric acid.

15. 15. The composition of any one of claims 11 to 14, wherein the composition comprises, by enantiomeric equivalent, 50.5% to 99.5% S-beta-hydroxybutyrate and, by enantiomeric equivalent, 49.5% to 0.5% R-beta-hydroxybutyrate.

16. 16. The composition of any one of claims 11 to 15, wherein the composition comprises, in enantiomeric equivalents, 51% to 99% S-beta-hydroxybutyrate and, in enantiomeric equivalents, 49% to 1% R-beta-hydroxybutyrate.

17. 17. The composition of any one of claims 11 to 16, wherein the composition is in a dosage form providing a unit dose of 0.5 g to 25 g of a combined total amount of beta-hydroxybutyrate salt and beta-hydroxybutyric acid.

18. A composition for use in administering ketone bodies to a subject to increase blood ketone levels and to cause at least one of the following: appetite suppression, weight loss, fat loss, lowering blood glucose levels, improving mental alertness, increasing physical energy, improving cognitive function, reducing traumatic brain injury, reducing the effects of diabetes, improving neurological disorders, reducing cancer, reducing inflammation, anti-aging, anti-glycation, reducing epileptic seizures, improving mood, increasing physical strength, increasing muscle mass, or improving body composition, comprising: The composition, a dietary or pharma- ceutically acceptable carrier selected from the group consisting of tablets, capsules, powders, foods, food additives, flavored beverages, vitamin-enhanced beverages, non-alcoholic beverages, flavored beverage additives, vitamin-enhanced beverage additives, non-alcoholic beverage additives, candies, lollipops, lozenges, dietary supplements, flavored mouth sprays, and suppositories; optically pure S-beta-hydroxybutyrate or a non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate comprising greater than 50% and less than 100% enantiomeric equivalent of S-beta-hydroxybutyrate and less than 50% and greater than 0% enantiomeric equivalent of R-beta-hydroxybutyrate; wherein the optically pure S-beta-hydroxybutyrate comprises a mixture of at least one optically pure S-beta-hydroxybutyrate salt and optically pure S-beta-hydroxybutyric acid, wherein the optically pure S-beta-hydroxybutyrate comprises 75% to 99.9% molar equivalents of at least one optically pure S-beta-hydroxybutyrate salt and 25% to 0.1% molar equivalents of optically pure S-beta-hydroxybutyric acid; or the non-racemic mixture of S-beta-hydroxybutyrate and R-beta-hydroxybutyrate comprises at least one S-beta-hydroxybutyrate salt, at least one R-beta-hydroxybutyrate salt, and at least one S- or R-beta-hydroxybutyric acid, wherein the non-racemic mixture comprises 75% to 99.9% molar equivalents of a combination of S-beta-hydroxybutyrate salts and R-beta-hydroxybutyrate salts and 25% to 0.1 molar equivalents of S-beta-hydroxybutyric acid and / or R-beta-hydroxybutyric acid; wherein said dietary or pharma- ceutical acceptable carrier provides a unit dose of 0.5 g to 25 g of combined beta-hydroxybutyrate salt and beta-hydroxybutyric acid.

19. 1. A kit for administering ketone bodies to a subject, comprising: The composition according to any one of claims 1 to 18, a container in which the composition is placed; and a metering device configured to hold a unit dose or fraction thereof of the composition therein, the unit dose of the composition comprising 0.5 g to 25 g of a combined total amount of beta-hydroxybutyrate salt and beta-hydroxybutyric acid.

20. 20. The kit of claim 19, wherein the container is selected from the group consisting of a carton, a box, a can, a jar, a bag, a pouch, a bottle, a jug, and a keg, and the measuring device is selected from the group consisting of a cup, a scoop, a syringe, a dropper, a spatula, and a spoon.

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