Compositions and methods using at least one glycine or its derivatives, at least one n-acetylcysteine or its derivatives, and at least one nicotinamide riboside or NAD+ precursors

JP2024170571A5Pending Publication Date: 2025-09-12SOCIETE DES PRODUITS NESTLE SA
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Patent Information

Application Number
JP2024154026
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2018-09-27
Filing Date
2024-09-06
Publication Date
2025-09-12

AI Technical Summary

Technical Problem

Aging-related cognitive decline and oxidative stress are significant issues associated with decreased glutathione concentrations, leading to conditions such as neurodegenerative diseases and cardiovascular diseases, with existing treatments lacking comprehensive solutions.

Method used

Combinations of glycine or its derivatives, N-acetylcysteine or its derivatives, and nicotinamide riboside or NAD+ precursors are administered to enhance mitochondrial function and reduce oxidative stress, thereby improving cellular health and treating conditions related to decreased glutathione concentrations.

Benefits of technology

The combination effectively reduces oxidative stress, improves mitochondrial function, and treats conditions like neurodegenerative diseases and cardiovascular diseases by increasing glutathione levels and enhancing metabolic processes.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide compositions capable of treating or preventing at least one physical condition selected from oxidation stress, conditions associated with oxidation stress, reduced glutathione level and conditions associated with reduced glutathione level.SOLUTION: The composition comprises an effective amount of a combination of at least one glycine or its functional derivatives, at least one N-acetylcysteine or its functional derivatives, and at least one nicotinamide riboside or NAD+ precursors. The composition may be orally administered, for example, as one or more of a food product, a food for special medical purposes (FSMP), a nutritional supplement, a ready to drink formula, a dairy-based drink, a low-volume liquid supplement, powder formats for liquid reconstitution or a meal replacement beverage.SELECTED DRAWING: None
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Description

[Background technology]

[0001]

[0001] The present disclosure relates generally to compositions and methods that can treat or prevent oxidative stress, conditions associated with oxidative stress, reduced glutathione levels, or conditions associated with reduced glutathione levels. Alternatively, or in addition, the compositions and methods can improve athletic performance and physical function.

[0002]

[0002] Population ageing is a significant demographic phenomenon. Due to longer life spans, the middle-aged and elderly population is growing faster than the overall population, resulting in a large increase in their share of the rest of the population. For example, in the 1950s, one in twelve people was aged 60 or older; by the end of the 2000s, one in ten people was aged 60 or older. It is projected that by the end of the 2050s, one in five people worldwide will be aged 60 or older.

[0003]

[0003] Middle-aged and elderly people often suffer some degree of cognitive impairment, including a progressive decline in cognitive function with age, and age-related changes in brain morphology and cerebrovascular function are commonly observed. Cognitive decline has been reported in conjunction with aging in a wide range of cognitive domains, including processing speed, attention, episodic memory, spatial ability, and executive function. Brain imaging studies have shown that these normal age-related cognitive declines are associated with a decrease in both gray and white matter volume in the brain, with the fronto-striatal system being the most severely damaged with aging. This decrease in cortical volume may be due to many deleterious cellular processes involved in normal aging, such as the long-term accumulation of damage from free radicals resulting in oxidative damage, chronic low-grade inflammation, accumulation of homocysteine ​​(which, if increased, is a risk factor for cognitive impairment and dementia), and reduced mitochondrial function. In addition to direct cellular damage, the brain also suffers indirect damage from damage to the microvasculature. It is clear that the pathology of aging, and even dementia, involves a complex interplay between these interrelated factors. For example, mitochondrial dysfunction results in increased oxidative stress, which can trigger inflammation and vascular damage.

[0004]

[0004] Furthermore, cognitive decline is an early predictor of Alzheimer's disease and begins before the onset of dementia. In this case, a total cognitive score provides a reliable means of assessing cognitive decline that occurs before dementia. A large body of evidence suggests that maintaining brain health and preventing age-related cognitive decline can prevent or slow the progression of dementia due to Alzheimer's disease and other age-related neuropathologies.

[0005]

[0005] In biology and psychology, the term "stress" refers to the consequences of the failure of humans or other animals to respond appropriately to a physiological, emotional, or physical threat, whether real or imagined. Psychobiologically, stress may be characterized as a manifestation of oxidative stress, i.e., a state in which the production and expression of reactive oxygen species is out of balance with the ability of the living system to rapidly detoxify reactive intermediates or to rapidly repair the damage caused. When the normal redox state of tissues is disturbed, toxic effects can be caused by the production of peroxides and free radicals that damage all components of the cell, such as proteins, lipids, and DNA. Some reactive oxidative species can also act as messengers through a phenomenon called "redox signaling".

[0006]

[0006] In humans, oxidative stress is involved in many diseases, including atherosclerosis, Parkinson's disease, heart failure, myocardial infarction, Alzheimer's disease, schizophrenia, bipolar disorder, fragile X syndrome, and chronic fatigue syndrome.

[0007]

[0007] One of the sources of ROS under normal conditions in humans is the leakage of ROS from mitochondria during oxidative phosphorylation. Other enzymes that can produce superoxide (O2-) include xanthine oxidase, NADPH oxidase, and cytochrome P450. Another strong oxidant, hydrogen peroxide, is produced by a variety of enzymes, including several oxidases. ROS plays an important role in the cell signaling process, called redox signaling. Therefore, a balance must be achieved between the production and consumption of ROS to maintain proper cellular homeostasis.

[0008]

[0008] Oxidative stress contributes to tissue damage following ultraviolet irradiation and hyperoxia, and is suspected to be important in neurodegenerative diseases, including Alzheimer's disease, Parkinson's disease, amyotrophic lateral sclerosis (ALS), and Huntington's disease.

[0009]

[0009] Oxidative stress is also thought to be associated with certain cardiovascular diseases, since oxidation of low density lipoprotein (LDL) in the vascular endothelium is a precursor to plaque formation. Oxidative stress also plays a role in the ischemic cascade resulting from injury due to reperfusion of oxygen after hypoxia, including both stroke and heart attack. Oxidative stress has also been implicated in chronic fatigue syndrome.

[0010]

[0010] Furthermore, the free radical theory of aging suggests that the biological process of aging is caused by increased oxidative stress in elderly people. The ability of cells to resist damage that can be caused by oxidative stress depends on the balance between the production of oxidant free radicals in the organism and the number of protective antioxidants available to the cells. Among the multiple antioxidant defense systems, glutathione (GSH) is the most abundant intracellular component involved in the overall antioxidant defense. The tripeptide GSH is synthesized from the precursor amino acids glutamate, cysteine, and glycine in two steps catalyzed by glutamate cysteine ​​ligase (GCL, also known as γ-glutamylcysteine ​​synthetase, EC 6.3.2.2) and γ-L-glutamyl-L-cysteine:glycine ligase (also known as glutathione synthetase, EC 6.3.2.3). The synthesis of GSH occurs de novo in cells.

[0011] Nicotinamide riboside promotes the synthesis of nicotinamide adenine dinucleotide (NAD) in cells and tissues. +) to promote increased intracellular concentrations of glycine and N-acetylcysteine ​​(NAC) to improve maintenance of cell and tissue health. Furthermore, the combination of glycine and N-acetylcysteine ​​(NAC) can be used as an indicator of the need for treatment and / or prevention in a mammal. For example, the combination of glycine and N-acetylcysteine ​​(NAC) can have beneficial effects on impaired glutathione metabolism and / or increased oxidative stress and / or oxidant damage in a mammal, for example impaired glutathione metabolism and / or increased oxidative stress and / or oxidant damage in aging or diabetes, and can be combined with nicotinamide riboside.

[0012] In addition, the NAD can be increased in cells using the disclosures herein (e.g., by combining glycine with NAC). + Regarding NAD, all living cells utilize a pathway involving NAD. + is the oxidized form of NAD. In metabolism, NAD participates in redox reactions and transports electrons from one reaction to another. NAD + accepts electrons from other molecules and is reduced to form NADH, which is then used as an electron-donating reducing agent. Although these electron transfer reactions are NAD's primary function, NAD is also used in other cellular processes, most notably as a substrate for enzymes that add or remove chemical groups from proteins in post-translational modifications.

[0013] [Summary of the Invention]

[0013] The various combinations of compounds disclosed herein reduce oxidative stress and improve mitochondrial function, both of which are mechanistically related. Mitochondrial dysfunction is related to cell damage, in part, through reactive oxygen species (ROS) and metabolic disorders (due to the inability to metabolize nutrients), which in turn leads to metabolic and degenerative diseases. Without being bound by theory, the inventors believe that the various combinations of compounds disclosed herein can reduce oxidative stress and improve mitochondrial function to treat, reduce the incidence, or reduce the severity of metabolic and degenerative diseases, at least due to a combined effect that may be mutually reinforcing or synergistic.

[0014]

[0014] Thus, in a general embodiment, the present disclosure provides a method for treating or preventing at least one physical condition selected from the group consisting of oxidative stress, conditions associated with oxidative stress, reduced glutathione levels, and conditions associated with reduced glutathione levels, the method comprising combining at least one glycine or a functional derivative thereof, at least one N-acetylcysteine ​​or a functional derivative thereof, and at least one nicotinamide riboside or NAD + administering to an individual in need thereof an effective amount of the combination with a precursor.

[0015] In one embodiment, the method comprises the step of: combining at least one glycine or a functional derivative thereof with at least one nicotinamide riboside or NAD + administering to an individual in need thereof an effective amount of the combination with a precursor.

[0016] In one embodiment, the method comprises combining at least one N-acetylcysteine ​​or a functional derivative thereof and at least one nicotinamide riboside or NAD + administering to an individual in need thereof an effective amount of the combination with a precursor.

[0017]

[0017] In one embodiment, the at least one physical condition is selected from the group consisting of adverse effects of aging, muscle loss, prediabetes, gestational diabetes, type I diabetes, type II diabetes, complications from diabetes, insulin resistance, metabolic syndrome, dyslipidemia, overweight, obesity, elevated cholesterol levels, elevated triglyceride levels, elevated fatty acid levels, fatty liver disease, renal disease, cardiovascular disease, neurodegenerative disease, cognitive impairment, myopathy such as statin-induced myopathy, non-alcoholic steatohepatitis, tinnitus, dizziness, hangover, hearing loss, osteoporosis, hypertension, atherosclerosis / coronary artery disease, myocardial injury after stress, traumatic brain injury, cystic fibrosis, inflammation, cancer, and HIV infection.

[0018] In one embodiment, the at least one glycine or functional derivative thereof is selected from the group consisting of L-glycine, L-glycine ethyl ester, D-allylglycine, N-[bis(methylthio)methylene]glycine methyl ester, Boc-allyl-Gly-OH (dicyclohexylammonium) salt, Boc-D-Chg-OH, Boc-Chg-OH, (R)-N-Boc-(2'-chlorophenyl)glycine, Boc-L-cyclopropylglycine, Boc-L-cyclopropylglycine, (R)-N-Boc-4-fluorophenylglycine, Boc-D-propargylglycine, glycine, Boc-(S)-3-thienylglycine, Boc-(R)-3-thienylglycine, Da-cyclohexylglycine, La-cyclopropylglycine, N-(2-fluorophenyl)-N-(methylsulfonyl)glycine, N-(4-fluorophenyl)-N-(methylsulfonyl)glycine, Fmoc-N-(2,4-dimethoxybenzyl)-Gly-OH, N-(2-furoyl)glycine, La-neopentylglycine, D-propargylglycine, sarcosine, Za-phosphonoglycine trimethyl ester, and mixtures thereof.

[0019] In one embodiment, the combination is administered orally.

[0020]

[0020] In one embodiment, the combination is administered as a composition selected from the group consisting of a food product, a food for special medical purposes (FSMP), a dietary supplement, a ready-to-drink formula, a milk-based beverage, a low-volume liquid nutritional supplement, a powder for reconstitution with liquid, a meal replacement beverage, and combinations thereof.

[0021]

[0021] In one embodiment, the combination is administered as a composition comprising a dipeptide providing at least a portion of at least one glycine or functional derivative thereof and at least one N-acetylcysteine ​​or functional derivative thereof.

[0022] In one embodiment, the present invention comprises at least one glycine or functional derivative thereof, at least one N-acetylcysteine ​​or functional derivative thereof, and at least one nicotinamide riboside or NAD + The precursors are administered in the same composition.

[0023] In one embodiment, the present invention comprises at least one glycine or functional derivative thereof, at least one N-acetylcysteine ​​or functional derivative thereof, and at least one nicotinamide riboside or NAD + One or more of the precursors are administered as a separate composition from the remainder of the combination.

[0024] In another embodiment, the present disclosure provides a method for delaying the onset of metabolic decline, preserving muscle mass, reducing oxidative stress, preserving immune function, and / or preserving cognitive function in healthy middle-aged and older adults, the method comprising administering to a subject a composition comprising at least one glycine or functional derivative thereof, at least one N-acetylcysteine ​​or functional derivative thereof, and at least one nicotinamide riboside or NAD + and administering to a healthy middle-aged or elderly person an effective amount of the combination of the precursor and the medicament for treating or preventing the disease. The healthy middle-aged or elderly person may be an elderly person.

[0025] In another embodiment, the present disclosure provides a method of enhancing reactive oxygen species metabolism, improving glucose regulation, and / or improving muscle function in an individual having at least one of obesity, prediabetes, or diabetes, comprising administering to the individual at least one of ... + administering to the individual an effective amount of a combination of the precursor.

[0026] In another embodiment, the present disclosure provides a method of improving mitochondrial function in an individual with sarcopenia, the method comprising administering to the individual at least one glycine or a functional derivative thereof, at least one N-acetylcysteine ​​or a functional derivative thereof, and at least one nicotinamide riboside or NAD + The method includes administering to an individual an effective amount of a combination of a precursor and a steroid hormone. An individual with sarcopenia may be otherwise healthy.

[0027] In another embodiment, the present disclosure provides a method for improving one or more of fetal metabolic programming to prevent future onset of obesity, prediabetes, and / or diabetes, maternal and fetal health in gestational diabetes, motor skills and physical function, quality of life, longevity, memory, cognition, recovery and survival after trauma, or recovery from trauma and surgery. The method comprises administering to the subject a composition comprising at least one glycine or a functional derivative thereof, at least one N-acetylcysteine ​​or a functional derivative thereof, and at least one nicotinamide riboside or NAD + The method includes administering to an individual an effective amount of a combination with a precursor. The individual may have at least one of cognitive impairment or disorder, and the composition may include the combination in an effective amount to improve cognition. The individual may not have a cognitive impairment or disorder, and the composition may include the combination in an effective amount to improve cognition.

[0028] In another embodiment, the present disclosure provides a method of improving at least one of muscle performance or muscle recovery after exercise, comprising administering to an individual engaging in exercise at least one of at least one glycine or functional derivative thereof, at least one N-acetylcysteine ​​or functional derivative thereof, and at least one nicotinamide riboside or NAD during at least one period selected from the group consisting of before, during, and after exercise. + administering an effective amount of a combination with a precursor.

[0029] In another embodiment, the present disclosure provides a method for the preparation of a medicament ... + The composition also includes a combination of at least one glycine or functional derivative thereof and at least one nicotinamide riboside or NAD precursor. + The composition may also include a combination of at least one N-acetylcysteine ​​or functional derivative thereof and at least one nicotinamide riboside or NAD + It may also include combination with a precursor.

[0030]

[0030] The composition comprises a combination of amounts effective for at least one of: (i) treating or preventing at least one physical condition selected from the group consisting of oxidative stress, conditions associated with oxidative stress, reduced glutathione levels, and conditions associated with reduced glutathione levels, or (ii) improving one or more of the following: fetal metabolic programming to prevent future onset of obesity, pre-diabetes, and / or diabetes, maternal and fetal health in gestational diabetes, athletic performance and physical function, quality of life, longevity, memory, cognition, recovery and survival after trauma, or recovery from trauma and surgery.

[0031] In one embodiment, the amount of the combination is effective to treat or prevent at least one physical condition selected from the group consisting of adverse effects of aging, muscle loss, prediabetes, gestational diabetes, type I diabetes, type II diabetes, complications from diabetes, insulin resistance, metabolic syndrome, dyslipidemia, overweight, obesity, elevated cholesterol levels, elevated triglyceride levels, elevated fatty acid levels, fatty liver disease, renal disease, cardiovascular disease, neurodegenerative disease, cognitive impairment, myopathy such as statin-induced myopathy, non-alcoholic steatohepatitis, tinnitus, dizziness, hangover, hearing loss, osteoporosis, hypertension, atherosclerosis / coronary artery disease, myocardial injury after stress, traumatic brain injury, cystic fibrosis, inflammation, cancer, and HIV infection.

[0032]

[0032] In one embodiment, the composition is selected from the group consisting of a food product, a food for special medical purposes (FSMP), a dietary supplement, a ready-to-drink formula, a milk-based beverage, a low-volume liquid nutritional supplement, a powder for reconstitution with liquid, a meal replacement beverage, and combinations thereof.

[0033] In another embodiment, the present disclosure provides a method for the treatment of a disease comprising administering to a patient a therapeutically effective amount of a compound in the form of a compound that is effective to treat or improve a patient's condition, the method ... +(xiv) treating, reducing the incidence, or reducing the severity of symptoms resulting from bariatric surgery; (xv) treating, reducing the incidence, or reducing the severity of non-alcoholic fatty liver disease (NAFLD); (xvi) treating, reducing the incidence, or reducing the severity of human immunodeficiency virus infection (HIV); and (xvii) combinations thereof, comprising at least one glycine or functional derivative thereof, at least one N-acetylcysteine ​​or functional derivative thereof, and at least one nicotinamide riboside or NAD + administering to the individual an effective amount of a combination of a precursor and

[0034] In another embodiment, the present disclosure provides a method for the preparation of a medicament ... + 16. A composition comprising a precursor in combination with a glycerol-containing glycerol analogue, comprising: (i) a glycerol analogue in combination with a glycerol analogue, comprising: a) a glycerol analogue in combination with a glycerol analogue, comprising: a) a glycerol analogue in combination with a glycerol analogue, comprising: a) a glycerol analogue in combination with a glycerol analogue, comprising: a) a glycerol analogue in combination with a glycerol analogue, comprising: a) a glycerol analogue in combination with a glycerol analogue, comprising: a) a glycerol analogue in combination with a glycerol analogue, comprising: a) a glycerol analogue in combination with a glycerol analogue, comprising: a) a glycerol analogue in combination with a glycerol analogue, comprising: a) a glycerol analogue in combination with a glycerol analogue, comprising: +(xiv) treating, reducing the incidence, or reducing the severity of symptoms resulting from bariatric surgery; (xv) treating, reducing the incidence, or reducing the severity of non-alcoholic fatty liver disease (NAFLD); or (xvi) treating, reducing the incidence, or reducing the severity of human immunodeficiency virus infection (HIV).

[0035] An advantage of one or more embodiments provided by the present disclosure is the enhanced effect on oxidative metabolism and the prevention of DNA damage.

[0036] Another advantage of one or more embodiments provided by the present disclosure is that NAD decreases with age. + The goal is to replenish the pool.

[0037] Yet another advantage of one or more embodiments provided by the present disclosure is that it helps compensate for the metabolic slowdown that accompanies aging.

[0038] Another advantage of one or more embodiments provided by the present disclosure is that it helps increase fatty acid metabolism.

[0039] An advantage of one or more embodiments provided by the present disclosure is that it helps maintain cardiac health, treat heart failure, and / or reduce the severity or incidence of heart failure.

[0040] Another advantage of one or more embodiments provided by the present disclosure is that it helps maintain healthy LDL cholesterol and fatty acid concentrations in the blood.

[0041] Yet another advantage of one or more embodiments provided by the present disclosure is that it supplements important amino acids that become less available in sufficient amounts in cells during aging.

[0042] An advantage of one or more embodiments provided by the present disclosure is that they provide amino acids that are precursors for the production of glutathione, which is important for cellular function.

[0043] Another advantage of one or more embodiments provided by the present disclosure is that they help increase intracellular glutathione concentrations.

[0044] Yet another advantage of one or more embodiments provided by the present disclosure is that they improve glutathione levels, which decline with age.

[0045] An advantage of one or more embodiments provided by the present disclosure is that it helps maintain healthy muscle mass.

[0046] Another advantage of one or more embodiments provided by the present disclosure is that they help reduce oxidative stress on the body.

[0047] Yet another advantage of one or more embodiments provided by the present disclosure is the preservation of a healthy immune system through glutathione regulation.

[0048]

[0048] Additional features and advantages are described herein, and will be apparent from the following drawings and detailed description of the invention. [Brief description of the drawings]

[0049] [Figure 1] 1 is a graph of data from an example experiment disclosed herein.

[0050] Figure 1. Effect of the combination of NAC and glycine and NR on mitochondrial respiration. High-resolution respirometry of mitochondria isolated from adult zebrafish muscle (N=5–6 / condition). Acute oxidative stress was induced by treatment with menadione (Men) for 2 h. Respiratory recovery was assessed by treatment with a low dose of NAC + glycine (glyNAC; NAC 100 μM, glycine 100 μM) and a low dose of NR (50 μM) for 2 h. Data from respirometry are shown in 1A. The theoretical additive effect (ΔglyNAC+ΔNR) was calculated as the sum of the mean values ​​of glyNAC and NR and compared to the synergistic effect (ΔglyNAC+NR) (1B). Men=menadione control; NAC=N-acetylcysteine; gly=glycine, NR=nicotinamide riboside. *p<0.05, **p<0.01, ****p<0.0001 DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

[0050]

[0051] definition

[0052] Some definitions are provided below. However, definitions may be found in the "Embodiments" section below, and the heading "Definitions" above does not imply that such disclosure in the "Embodiments" section is not a definition.

[0051]

[0053] All percentages stated herein are by total weight of the composition unless otherwise indicated. As used herein, "about," "approximately," and "substantially" are understood to refer to numbers within a numerical range, e.g., within -10% to +10% of the referenced number, preferably within -5% to +5%, more preferably within -1% to +1% of the referenced number, and most preferably within -0.1% to +0.1% of the referenced number. All numerical ranges herein should be understood to include all integers or fractions within the range. Furthermore, these numerical ranges should be interpreted as supporting claims directed to any number or subset of numbers within the range. For example, a disclosure of 1 to 10 should be interpreted as supporting ranges such as 1 to 8, 3 to 7, 1 to 9, 3.6 to 4.6, 3.5 to 9.9, etc.

[0052]

[0054] As used in this disclosure and the appended claims, the singular forms "a," "an," and "the" include plural references unless otherwise indicated. Thus, for example, reference to "a component" or "the component" includes two or more components.

[0053]

[0055] The terms "comprise", "comprises", and "comprising" are to be interpreted inclusively, not exclusively. Similarly, the terms "include", "including", and "or" are all to be interpreted as inclusive, unless such interpretation is clearly prevented by the context. However, the compositions disclosed herein may not include elements not specifically disclosed herein. Thus, disclosure of an embodiment using the term "comprising" includes disclosure of embodiments "consisting essentially of" and "consisting of" the specified component. A composition "consisting essentially of" means that the composition comprises at least 50% by weight of the referenced component, preferably at least 75% by weight of the referenced component, more preferably at least 85% by weight of the referenced component, and most preferably at least 95% by weight of the referenced component.

[0054]

[0056] The term "and / or" used in the context of "X and / or Y" shall be interpreted as "X" or "Y" or "X and Y". Similarly, "at least one of X or Y" shall be interpreted as "X" or "Y" or "X and Y". For example, "at least one glycine or a functional derivative thereof" shall be interpreted as "glycine" or "a functional derivative of glycine" or "both glycine and a functional derivative of glycine".

[0055]

[0057] As used herein, the terms "example" and "such as," especially when followed by a list of terms, are merely exemplary and illustrative and should not be considered exclusive or exhaustive. As used herein, a condition "related to" or "associated with" another condition means that these conditions occur simultaneously, preferably that these conditions are caused by the same underlying condition, and most preferably that one of the specified conditions is caused by the other specified condition.

[0056]

[0058] The terms "food," "food product," and "food composition" refer to a product or composition intended for consumption by an individual, such as a human, and providing at least one nutrient to such an individual. A food product typically comprises at least one of protein, lipid, carbohydrate, and optionally one or more vitamins and minerals. The compositions of the present disclosure, including the many embodiments described herein, can comprise, consist of, or consist essentially of the elements disclosed herein, as well as any additional or optional ingredients, components, or elements described or not described herein that are useful in the diet.

[0057]

[0059] As used herein, the term "isolated" means removed from one or more other compounds or components with which the compound may otherwise be found, e.g., in nature. Preferably, for example, "isolated" means that the specified compound is separated from at least a portion of the cellular material with which it is typically found in nature. In one embodiment, an isolated compound is pure, i.e., free of other compounds.

[0058]

[0060] "Prevention" includes reducing the risk and / or severity of a disease or disorder. The terms "treatment", "treat" and "to alleviate" include both prophylactic or preventive treatments (which prevent and / or delay the onset of the targeted condition or disorder) and curative, therapeutic or disease-modifying treatments, including therapeutic measures that cure, delay, attenuate the symptoms and / or halt the progression of a diagnosed condition or disorder; as well as treatment of patients who are ill or diagnosed as suffering from a disease or medical condition, in addition to treatment of patients at risk of or suspected of having a disease. The terms do not necessarily imply that a subject is treated until cured. The terms "treatment" and "treat" also refer to maintaining and / or promoting the health of individuals who are not afflicted by a disease but who may be susceptible to developing an unhealthy condition. The terms "treatment", "treat" and "alleviating" are also intended to include the synergistic or otherwise potentiating action of one or more primary preventative or therapeutic measures. The terms "treatment", "treat" and "alleviating" are further intended to include the dietary management of a disease or condition, or for the prophylaxis or prevention of a disease or condition. Treatment may be patient-related or physician-related.

[0059]

[0061] As used herein, the term "unit dosage form" refers to physically discrete units suitable as dosage units for human and animal subjects, each unit containing a predetermined amount of a composition disclosed herein, in an amount sufficient to produce the desired effect, together with a pharma- ceutically acceptable diluent, carrier, or vehicle. The specifications for the unit dosage form depend on the particular compound used, the effect to be achieved, and the pharmacodynamics associated with each compound in the host.

[0060]

[0062] A "subject" or "individual" is a mammal, preferably a human. The term "elderly" in the human context means a postnatal age of 60 years or more, preferably above 63 years, more preferably above 65 years, and most preferably above 70 years. The term "older adult" in the human context means a postnatal age of 45 years or more, preferably above 50 years, and more preferably above 55 years, and includes elderly individuals.

[0061]

[0063] As used herein, an "effective amount" is an amount that prevents a deficiency, treats a disease or medical condition of an individual, or, more generally, alleviates symptoms, manages the progression of a disease, or provides a nutritional, physiological, or medical benefit to an individual. The relative terms "improved," "increased," "enhanced," and the like refer to the amount of the composition disclosed herein, i.e., at least one glycine or functional derivative thereof, at least one N-acetylcysteine ​​or functional derivative thereof, and at least one nicotinamide riboside or NAD + and a precursor thereof, comprising at least one glycine or a functional derivative thereof, at least one N-acetylcysteine ​​or a functional derivative thereof, and at least one nicotinamide riboside or NAD + "Promoting" refers to an effect compared to an otherwise identical composition that does not contain the precursor. As used herein, "promoting" refers to enhancing or inducing compared to levels prior to administration of the compositions disclosed herein.

[0062]

[0064] Sarcopenia is defined as the age-related decline in muscle mass and muscle function, including strength and walking speed. As used herein, "frailty" is defined as a clinically recognizable condition in which increased vulnerability results from aging-related declines in reserve and function across multiple physiological systems, resulting in impaired ability to cope with routine or acute stressors. In the absence of established quantitative standards, frailty has been defined functionally by Fried et al. as meeting three of the following five phenotypic criteria indicative of impaired energetics: (1) muscle weakness (grip strength in the bottom 20% of the population at baseline, adjusted for sex and body mass index), (2) poor endurance and energy (self-reported fatigue related to VO2 max), (3) bradykinesia (baseline in the bottom 20% of the population based on 15-foot walking time, adjusted for sex and height), (4) reduced physical activity (weighted score of kilocalories expended per week at baseline, lowest quintile of physical activity identified for each sex; e.g., <383 kcal / week for men, <270 kcal / week for women), and / or unintentional weight loss (10 pounds in the past year). Fried LP, Tangen CM, Walston J, et al., "Frailty in older adults: evidence for a phenotype." J. Gerontol. A. Biol. Sci. Med. Sci. 56(3):M146-M156 (2001). The presence of one or two of these criteria identifies the pre-frailty stage as being at high risk for progression to frailty.

[0063]

[0065] "Cachexia" is a severely debilitating condition characterized by severe weight loss, anorexia, asthenia, and anemia. Cachexia is a common feature of many diseases, including cancer, sepsis, chronic heart failure, rheumatoid arthritis, and acquired immune deficiency syndrome (AIDS).

[0064]

[0066] "Overweight" is defined in humans as a body mass index (BMI) between 25 and 30 kg / m 2"Obesity" is defined in humans as a BMI of at least 30 kg / m 2 , for example 30 to 39.9 kg / m 2 "Weight loss / weight loss" is a reduction in total body weight. Weight loss can refer to a reduction in total body weight to improve one or more of, for example, health, fitness, or appearance.

[0065]

[0067] "Diabetes" encompasses both types I and II of the disease. Non-limiting examples of risk factors for diabetes include waist circumference greater than 40 inches for men or greater than 35 inches for women, blood pressure equal to or greater than 130 / 85 mmHg, triglycerides greater than 150 mg / dL, fasting blood glucose greater than 100 mg / dL, or high density lipoprotein less than 40 mg / dL for men or less than 50 mg / dL for women.

[0066]

[0068] As used herein, the term "metabolic syndrome" refers to a combination of medical abnormalities that, when occurring together, increase the risk of developing cardiovascular disease and diabetes. Metabolic syndrome affects one in five people in the United States, with prevalence increasing with age. Some studies suggest that the prevalence in the United States is estimated at 25% of the population. According to the International Diabetes Foundation's consensus worldwide definition (2006), metabolic syndrome is central obesity in combination with any two of the following:

[0069] Elevated triglycerides: greater than 150 mg / dL (1.7 mmol / L) or treatments targeted to this lipid abnormality;

[0070] Reduction of HDL cholesterol: less than 40 mg / dL (1.03 mmol / L) in men and less than 50 mg / dL (1.29 mmol / L) in women, or treatment targeted to this lipid abnormality;

[0071] Elevated blood pressure: systolic BP > 130 or diastolic BP > 85 mmHg, or treatment of previously diagnosed hypertension; and

[0072] Elevated fasting plasma glucose: (FPG) greater than 100 mg / dL (5.6 mmol / L) or previously diagnosed type 2 diabetes.

[0067]

[0073] As used herein, "neurodegenerative disease" or "neurodegenerative disorder" refers to any condition in the central nervous system that results in a gradual loss of functional neurons. In one embodiment, the neurodegenerative disease is associated with age-related cell death. Non-limiting examples of neurodegenerative diseases include Alzheimer's disease, Parkinson's disease, Huntington's disease, amyotrophic lateral sclerosis (also known as ALS and Lou Gehrig's disease), AIDS dementia, adrenoleukodystrophy, Alexander disease, Alpers disease, ataxia-telangiectasia, Batten disease, bovine spongiform encephalopathy (BSE), Canavan disease, corticobasal degeneration, Creutzfeldt-Jakob disease, dementia with Lewy bodies, fatal familial insomnia, prefrontal cortex syndrome, and pulmonary tuberculosis. These include temporotemporal lobar degeneration, Kennedy disease, Krabbe disease, Lyme disease, Machado-Joseph disease, multiple sclerosis, multiple system atrophy, neuroacanthocytosis, Niemann-Pick disease, Pick's disease, primary lateral sclerosis, progressive supranuclear palsy, Refsum disease, Sandhoff disease, diffuse myelinating sclerosis, spinocerebellar ataxia, subacute combined spinal degeneration, tabes dorsalis, Tay-Sachs disease, toxic encephalopathy, transmissible spongiform encephalopathy, and wobbly hedgehog syndrome.

[0068]

[0074] As used herein, "cognitive ability" refers to the degree to which a subject performs one or more cognitive functions well.As used herein, "cognitive function" refers to any mental process by which a person becomes aware of, perceives, or understands ideas.This function includes all aspects of perception, thinking, reasoning, and remembering, including, for example, perception, memory, attention, language comprehension, language expression, reading comprehension, mental recall, learning, and reasoning.Usually, cognitive function refers to at least memory.

[0069]

[0075] Methods for measuring cognitive function are well known and can include, for example, individual tests or battery tests for any aspect of cognitive function. One such test is the Prudhoe Cognitive Function Test by Margallo-Lana et al. (2003) J.Intellect.Disability Res.47:488-492. Another such test is the Mini Mental State Exam (MMSE), which is designed to assess orientation to time and place, memory, attention and calculation, recall, language use and comprehension, repetition, and complex commands. Folstein et al. (1975) J.Psych.Res.12:189-198. Other tests useful for measuring cognitive function include the Alzheimer's Disease Assessment Scale-Cognitive (ADAS-Cog) (Rosen et al. (1984) AM. J. Psychinatry. 141(11):1356-64), and the CANTAB (Cambridge Neuropsychological Test Automated Battery) (Robbins et al. (1994) Dementia. 5(5):266-81). Such tests can be used to objectively assess cognitive function, such that changes in cognitive function can be measured and compared, for example, in response to treatment according to the methods disclosed herein.

[0070]

[0076] As used herein, "cognitive disorder" refers to any condition that reduces cognitive function. Non-limiting examples of cognitive disorders include delirium, dementia, learning disabilities, attention deficit disorder (ADD), and attention deficit hyperactivity disorder (ADHD).

[0071]

[0077] Embodiment

[0078] The present disclosure provides a method for the preparation of a medicament ... +As used herein, "nicotinamide riboside" includes L-valine and L-phenylalanine esters of nicotinamide riboside. + Non-limiting examples of precursors include tryptophan, nicotinic acid, nicotinamide, reduced nicotinamide riboside (NRH), nicotinamide mononucleotide (NMN), trigonelline, nicotinic acid mononucleotide, nicotinic acid riboside, and mixtures thereof. + Without being limited to a particular embodiment of the precursor, NAD + The precursor is NAD + The compound may be any compound that stimulates

[0072]

[0079] Each compound can be administered simultaneously with the other compound (i.e., in a single unit) or separately at intervals (i.e., in separate units). The present disclosure provides a method for administering a medicament comprising administering to a subject ... + and a precursor, for example as two or more solutions or dry powders in separate containers, for mixing to form one or more of the compositions disclosed herein and / or for use in one or more of the methods disclosed herein. In some embodiments, one or more of these compounds may be isolated compounds.

[0073]

[0080] The combination of at least one glycine or functional derivative thereof and at least one N-acetylcysteine ​​or functional derivative thereof can be provided by any of the compositions disclosed in U.S. Pat. Nos. 8,362,080, 8,802,730, and 9,084,760, each entitled "Increasing Glutathione Levels for Therapy," and WO 2016 / 191468, entitled "Effect of Nutritional Supplementation with N-Acetylcysteine ​​and Glycine to Improve Glutathione Concentrations," each of which is incorporated herein by reference in its entirety.

[0074]

[0081] Nicotinamide riboside can be provided by any of the compositions disclosed in U.S. Pat. Nos. 8,383,086 and 8,197,807, each entitled "Nicotinamide Riboside Kinase Compositions and Methods of Use," and U.S. Pat. No. 8,106,184, entitled "Nicotinoyl Riboside Compositions and Methods of Use," each of which is incorporated by reference in its entirety.

[0075]

[0082] Thus, one aspect of the present disclosure is a method for producing a soluble glycine derivative comprising the steps of: at least one glycine or a functional derivative thereof; at least one N-acetylcysteine ​​or a functional derivative thereof; and at least one nicotinamide riboside or NAD +and a precursor thereof, comprising: a) a precursor for use in treating the adverse effects of aging, muscle mass loss (e.g., for any reason including at least sarcopenia, HIV infection, aging, cachexia, the deleterious effects of weightlessness), pre-diabetes, gestational diabetes, diabetes (Type I or Type II), complications from diabetes (e.g., diabetic dyslipidemia and / or diabetic microvascular complications, such as nephropathy, retinopathy, and / or neuropathy), insulin resistance, metabolic syndrome, dyslipidemia, overweight, obesity, elevated cholesterol levels, elevated triglyceride levels, elevated fatty acid levels, fatty liver disease (e.g., non-alcoholic fatty liver disease with or without inflammation), renal The composition is an amount effective for the treatment or prevention of at least a condition selected from the group consisting of: cardiovascular disease (e.g., heart failure and / or impaired cardiovascular function, e.g., by treating heart failure and / or reducing the severity or incidence of heart failure), neurodegenerative disease (e.g., from aging), cognitive dysfunction, myopathy, e.g., statin-induced myopathy, non-alcoholic steatohepatitis, tinnitus, dizziness, hangover, hearing loss, osteoporosis, hypertension, atherosclerosis / coronary artery disease, myocardial injury after stress (e.g., from burns or trauma), traumatic brain injury (including concussion), cystic fibrosis, inflammation, cancer, and HIV infection. Further, with respect to aging, NAD + It is noted that a decrease in glutathione may be associated with aging. Furthermore, with respect to cardiovascular disease (CVD), it is noted that increased homocysteine ​​is a validated risk factor for CVD.

[0076]

[0083] Another aspect of the present disclosure is a method of treating at least one of these conditions, comprising administering to a subject a therapeutically effective amount of at least one glycine or functional derivative thereof, at least one N-acetylcysteine ​​or functional derivative thereof, and at least one nicotinamide riboside or NAD +Another aspect of the present disclosure is a method of preventing at least one of these conditions, comprising administering to an individual a composition comprising a therapeutically effective amount of a combination of at least one glycine or functional derivative thereof, at least one N-acetylcysteine ​​or functional derivative thereof, and at least one nicotinamide riboside or NAD precursor. + administering to an individual at risk for at least one condition a composition comprising a prophylactically effective amount of a combination of a precursor.

[0077]

[0084] The compositions may treat or prevent sarcopenia, sarcopenic obesity, or cachexia, such as cachexia due to an underlying medical condition, such as chronic disease, HIV, cancer, chronic obstructive pulmonary disease (COPD), and / or aging, in otherwise healthy individuals. In this regard, aging is associated with a decline in NAD + This may be accompanied by a decrease in insulin and glutathione (GSH).

[0078]

[0085] The compositions can treat or prevent eye conditions that result directly or indirectly from low GSH concentrations, such as low concentrations in the lens where glutathione is known to be present in high concentrations. Non-limiting examples of such conditions include cataracts and / or glaucoma, presbyopia (age-related loss of near vision that requires magnifying glasses), and presbycusis (age-related loss of hearing that requires hearing aids).

[0079]

[0086] In one embodiment, the composition improves at least one of muscle performance or muscle recovery from muscle tone, including muscle tone associated with exercise. The exercise can be of any type, including, for example, aerobic ("cardio") exercise and / or weight training. The composition can be administered during at least one period selected from the group consisting of before exercise (e.g., within less than one hour before exercise), during exercise, and after exercise (e.g., within less than one hour after exercise).

[0080]

[0087] Yet another aspect of the present disclosure is a method of delaying the onset of metabolic decline, preserving muscle mass, reducing oxidative stress, preserving immune function, and / or preserving cognitive function in healthy middle-aged or older adults by administering to the healthy middle-aged or older adults at least one glycine or functional derivative thereof, at least one N-acetylcysteine ​​or functional derivative thereof, and at least one nicotinamide riboside or NAD + administering an effective amount of a combination with a precursor.

[0081]

[0088] Another aspect of the present disclosure is a method of improving mitochondrial function in an individual with sarcopenia, the method comprising administering to the individual at least one glycine or a functional derivative thereof, at least one N-acetylcysteine ​​or a functional derivative thereof, and at least one nicotinamide riboside or NAD + administering to the individual an effective amount of a combination of the precursor.

[0082]

[0089] Yet another aspect of the present disclosure is a method of enhancing reactive oxygen species metabolism, improving glucose regulation, and / or improving muscle function in an individual having at least one of obesity, prediabetes, or diabetes, comprising administering to said individual at least one of at least one glycine or functional derivative thereof, at least one N-acetylcysteine ​​or functional derivative thereof, and at least one nicotinamide riboside or NAD + administering to the individual an effective amount of a combination of the precursor.

[0083]

[0090] Another aspect of the present disclosure is a method of improving mitochondrial function (preferably with at least one of benefit to metabolism or muscle strength) in an individual with sarcopenia, comprising administering to the individual at least one glycine or functional derivative thereof, at least one N-acetylcysteine ​​or functional derivative thereof, and at least one nicotinamide riboside or NAD + administering to the individual an effective amount of a combination of the precursor.

[0084]

[0091] In another aspect, the present disclosure provides a method for improving cognitive function, the method comprising administering to a subject a subject, the subject being conscious of at least one of glycine or a functional derivative thereof, at least one N-acetylcysteine ​​or a functional derivative thereof, and at least one nicotinamide riboside or NAD + and administering to the individual an effective amount of a combination of the precursor. The cognitive function can be selected from the group consisting of perception, memory, attention, language comprehension, language expression, reading comprehension, imagery recall, learning, reasoning, and combinations thereof. In one embodiment, the individual does not have a cognitive impairment, or the individual has a cognitive impairment. The individual may be elderly and / or have aging-related cognitive decline.

[0085]

[0092] Yet another aspect of the present disclosure provides a method for improving one or more of fetal metabolic programming to prevent future onset of obesity, prediabetes, and / or diabetes, maternal and fetal health in gestational diabetes, motor skills and physical function, quality of life, longevity, memory, cognition, recovery and survival after trauma (e.g., after surgery, after sepsis, or after penetrating injury from accident or physical violence), or recovery from trauma and surgery. The method comprises administering to a subject a therapeutically effective amount of at least one glycine or functional derivative thereof, at least one N-acetylcysteine ​​or functional derivative thereof, and at least one nicotinamide riboside or NAD + administering to the individual an effective amount of a combination of the precursor.

[0086]

[0093] In another aspect, the present disclosure provides a method for the treatment of a disease comprising administering to a subject a therapeutically effective amount of a compound in the form of a compound that is capable of: (i) reducing the severity and / or incidence of the effects of aging; (ii) maintaining or improving cellular function and / or overall health; (iii) supporting at least one of normal mitochondrial function, cellular protection, or energy metabolism; (iv) increasing daily energy levels; (v) reducing fatigue; (vi) maintaining or improving physical energy and / or cognitive performance; (vii) promoting healthy aging by promoting health or normal cellular function; (viii) supporting healthy skin; (ix) treating heart failure; and / or improving cardiovascular health. (x) treating, reducing the incidence, or reducing the severity of oxidative stress and / or reduced glutathione (GSH) during periods including intensive care unit (ICU) admission; (xi) treating, reducing the incidence, or reducing the severity of another condition associated with oxidative stress and / or reduced GSH; (xii) facilitating rehabilitation from injury, illness, or surgery, for example, specific rehabilitation for neurological conditions such as traumatic brain injury or stroke; (xiii) promoting NAD in patients with cancer or in remission from cancer. + (xiv) treating, reducing the incidence, or reducing the severity of symptoms resulting from bariatric surgery; (xv) treating, reducing the incidence, or reducing the severity of non-alcoholic fatty liver disease (NAFLD); (xvi) treating, reducing the incidence, or reducing the severity of human immunodeficiency virus infection (HIV); and (xvii) combinations thereof, comprising at least one glycine or functional derivative thereof, at least one N-acetylcysteine ​​or functional derivative thereof, and at least one nicotinamide riboside or NAD + administering to the individual an effective amount of a combination of a precursor and

[0087]

[0094] A particularly preferred embodiment is a method of treating, reducing the incidence, or reducing the severity of at least one condition selected from the group consisting of metabolic syndrome, age-related decline in metabolic regulation, and muscle conditions, comprising administering to a subject a therapeutically effective amount of at least one glycine or functional derivative thereof, at least one N-acetylcysteine ​​or functional derivative thereof, and at least one nicotinamide riboside or NAD + administering to an individual in need of or at risk of administering an effective amount of a combination with a precursor.

[0088]

[0095] In each of the compositions and methods disclosed herein, the composition is preferably a food product, including a food additive, a food ingredient, a functional food, a nutritional supplement, a medical food, a dietary supplement, or a supplement.For example, the composition may be selected from the group consisting of a food product, a food for special medical purposes (FSMP), a dietary supplement, a ready-to-drink formula, a milk-based beverage, a low-volume liquid nutritional supplement (i.e., about 50 mL or less, for example about 30 mL or less), a powder to be reconstituted with liquid, a meal replacement beverage, and combinations thereof.

[0089]

[0096] As used herein, a "functional derivative" of glycine is a functional derivative of glycine that is effective in combination with N-acetylcysteine ​​or a functional derivative thereof to increase intracellular GSH concentrations in an individual. A "functional derivative" of N-acetylcysteine ​​is a functional derivative of N-acetylcysteine ​​that is effective by itself, or in combination with glycine (or a functional derivative thereof), to increase intracellular GSH concentrations in an individual.

[0090]

[0097] Glycine is preferably L-glycine and / or L-glycine ethyl ester. Non-limiting examples of suitable glycine functional derivatives include D-allylglycine, N-[bis(methylthio)methylene]glycine methyl ester, Boc-allyl-Gly-OH (dicyclohexylammonium) salt, Boc-D-Chg-OH, Boc-Chg-OH, (R)-N-Boc-(2'-chlorophenyl)glycine, Boc-L-cyclopropylglycine, Boc-L-cyclopropylglycine, (R)-N-Boc-4-fluorophenylglycine, Boc-D-propargylglycine, Boc-(S)-3-thiophenyl ... Examples of suitable glycine include N-acetyl-enylglycine, Boc-(R)-3-thienylglycine, Da-cyclohexylglycine, La-cyclopropylglycine, N-(2-fluorophenyl)-N-(methylsulfonyl)glycine, N-(4-fluorophenyl)-N-(methylsulfonyl)glycine, Fmoc-N-(2,4-dimethoxybenzyl)-Gly-OH, N-(2-furoyl)glycine, La-neopentylglycine, D-propargylglycine, sarcosine, Za-phosphonoglycine trimethyl ester, and mixtures thereof. In one embodiment, both glycine and N-acetylcysteine ​​can be provided as a dipeptide, such as N-acetylcysteinylglycine or cysteinylglycine.

[0091]

[0098] The composition may be administered at least 1 day per week, preferably at least 2 days per week, more preferably at least 3 or 4 days per week (e.g., every other day), most preferably at least 5 days per week, 6 days per week, or 7 days per week. The administration period may be at least 1 week, preferably at least 1 month, more preferably at least 2 months, most preferably at least 3 months, e.g., at least 4 months. In one embodiment, administration is at least daily, e.g., the subject may be administered one or more times per day. In some embodiments, administration continues for the remainder of the individual's life. In another embodiment, administration is administered until there is no detectable symptom of the medical condition. In certain embodiments, administration is administered until there is a detectable improvement in at least one symptom, and in further cases, administration is continued to maintain remission.

[0092]

[0099] Glycine and N-acetylcysteine ​​can be formulated in specific ratios, in some embodiments, the formulation may include these components in the following exemplary ratios: 1:1, 1:2, 1:3, 1:4, 1:5, 1:6, 1:7, 1:8, 1:9, 1:10, 1:12, 1:15, 1:20, 1:25, 1:30, 1:35, 1:40, 1:45, 1:50, 1:55, 1:60, 1:65, 1:70, 1:75, 1:80, 1:85, 1:90, 1:95, 1:100, 1:150, 1:200, 1:300, 1:400, 1:500, 1:600, 1:750, 1:1000, and 1:10,000. In certain embodiments, the formulation may include these ingredients in the following weight percentages (the amount percentages are the same for both glycine and N-acetylcysteine ​​or the weight percentages for each are different), for example, 1%, 2%, 3%, 4%, 5%, 6%, 7%, 8%, 9%, 10%, 12%, 15%, 20%, 25%, 30%, 40%, 45%, 50%, 55%, 60%, 65%, 70%, 75%, 80%, 85%, 90%, 95%, 97%, or 99% by weight.

[0093]

[0100] N-acetylcysteine ​​or a functional derivative thereof can be administered in an amount of about 0.1-100 milligrams (mg) of N-acetylcysteine ​​(NAC) or a functional derivative thereof per kilogram (kg) of the subject's body weight. Glycine (GLY) or a functional derivative thereof can be administered in an amount of about 0.1-100 milligrams (mg) of glycine or a functional derivative thereof per kilogram (kg) of the subject's body weight. In some embodiments, these amounts are provided at least in part by a dipeptide comprising both N-acetylcysteine ​​or a functional derivative thereof and glycine or a functional derivative thereof.

[0094]

[0101] In a specific, non-limiting example, the daily dose for a 60 kg subject may be as follows: NAC or its derivatives: 6 to 6,000 mg / day GLY or its derivatives: 6 to 6,000 mg / day Nicotinamide riboside: 0.001 to 1,000 mg / day

[0095]

[0102] Nicotinamide Riboside or NAD +The precursor can be administered in an amount of about 0.001 mg / day to about 2000 mg / day, preferably about 0.001 mg / day to about 1000 mg / day, more preferably about 0.001 mg / day to about 750 mg / day, even more preferably about 0.001 mg / day to about 500 mg / day, and most preferably about 0.001 mg / day to about 250 mg / day, such as about 0.001 mg / day to about 100 mg / day, about 0.001 mg / day to about 75 mg / day, about 0.001 mg / day to about 50 mg / day, about 0.001 mg / day to about 25 mg / day, about 0.001 mg / day to about 10 mg / day, or about 0.001 mg / day to about 1 mg / day. Of course, the daily dose can be administered in smaller doses at various times throughout the day. In any case, however, the amount of compound administered will vary depending on factors such as the solubility of the active ingredient, the formulation used, the condition of the subject (e.g., body weight), and / or the route of administration. For example, the daily doses of nicotinamide riboside disclosed above are non-limiting and may vary in some embodiments, in particular, the compositions disclosed herein may be utilized as Food for Special Medical Purposes (FSMP) for first aid, containing up to about 2.0 mg / day of nicotinamide riboside.

[0096]

[0103] The compositions disclosed herein can be administered to a subject orally or parenterally.Non-limiting examples of parenteral administration include intravenous, intramuscular, intraperitoneal, subcutaneous, intra-articular, intrasynovial, intraocular, intrathecal, topical, and by inhalation.Non-limiting examples of the form of the composition therefore include natural foods, processed foods, natural fruit juices, concentrates and extracts, injections, microcapsules, nanocapsules, liposomes, plasters, inhalation forms, nasal sprays, nasal drops, eye drops, sublingual tablets, and sustained release formulations.

[0097]

[0104] The compositions disclosed herein can be used in any of a variety of formulations for therapeutic administration. More specifically, the pharmaceutical compositions can include suitable pharma-ceutically acceptable carriers or diluents and can be formulated as solid, semi-solid, liquid or gaseous formulations, such as tablets, capsules, powders, granules, ointments, liquids, suppositories, injections, inhalants, gels, microspheres and aerosols. Thus, administration of the compositions can be accomplished in a variety of ways, including oral, buccal, rectal, parenteral, intraperitoneal, intradermal, transdermal and intratracheal administration. The active agent may be systemic after administration or may be localized by using topical administration, intramural administration or by using an implant that acts to retain an effective dose at the implantation site.

[0098]

[0105] In pharmaceutical dosage forms, the compounds may be administered as pharma- ceutically acceptable salts. They may also be used in appropriate association with other pharma- ceutically active compounds. The following methods and excipients are merely illustrative and in no way limiting.

[0099]

[0106] In oral formulations, the compounds may be used alone or in combination with suitable additives for producing tablets, powders, granules or capsules, e.g., with conventional additives such as lactose, mannitol, corn starch, or potato starch; with binders such as crystalline cellulose, functional derivatives of cellulose, gum arabic, corn starch or gelatin; with disintegrants such as corn starch, potato starch, or sodium carboxymethylcellulose; with lubricants such as talc or magnesium stearate; and, if desired, with diluents, buffers, wetting agents, preservatives and flavoring substances.

[0100]

[0107] The compounds can be formulated as injectable preparations by dissolving, suspending or emulsifying in aqueous or non-aqueous solvents, such as vegetable oils or other similar oils, synthetic aliphatic acid glycerides, esters of higher aliphatic acids, or propylene glycol, together with conventional additives, such as solubilizers, isotonicity agents, suspending agents, emulsifying agents, stabilizers, and preservatives, if desired.

[0101]

[0108] The compounds can be utilized in aerosol formulations to be administered via inhalation. For example, the compounds can be placed into pressurized acceptable propellants, such as dichlorodifluoromethane, propane, and nitrogen.

[0102]

[0109] In addition, the compound can be prepared as a suppository by mixing with various bases such as emulsifying bases or water-soluble bases.The compound can be administered rectally by suppository.The suppository can include vehicles such as cocoa butter, carbowax, and polyethylene glycol, which melt at body temperature but solidify at room temperature.

[0103]

[0110] Unit dosage forms for oral or rectal administration, such as syrups, elixirs, and suspensions, may be provided, with each dosage unit, e.g., teaspoon, tablespoon, tablet, or suppository, containing a predetermined amount of the composition. Similarly, unit dosage forms for injection or intravenous administration may contain the compound in a composition as a solution in sterile water, saline, or another pharma- ceutically acceptable carrier, with each dosage unit, e.g., mL or L, containing a predetermined amount of a composition containing one or more of the compounds. EXAMPLES

[0104]

[0112] The following non-limiting hypothetical examples discuss experimental data that have been and / or will be investigated to further support the compounds, compositions, and methods disclosed herein.

[0113] Chronic oxidative stress induces changes in the rate of cellular respiration.

[0114] Menadione-induced oxidative stress in HepG2 cells treated with BSO (GSH synthesis inhibitor), measured by Seahorse (respiratory rate)

[0115] Synergistic Reduction of Oxidative Stress and Its Derivatives with Glycine, NAC, and NR

[0116] Menadione-induced oxidative stress, NAC+ / -glycine+ / -NR, and cell proliferation (protein concentration) in HepG2 cells treated with BSO (GSH synthesis inhibitor).

[0117] Menadione-induced oxidative stress, NAC+ / -glycine+ / -NR, and GSH production in HepG2 cells treated with BSO (GSH synthesis inhibitor)

[0118] Menadione-induced oxidative stress, NAC+ / -glycine+ / -NR, metabolic profiling in HepG2 cells treated with BSO (GSH synthesis inhibitor)

[0119] Menadione-induced oxidative stress in HepG2 cells treated with BSO (GSH synthesis inhibitor), NAC+ / -Glycine+ / -NR, Seahorse measurements (respiration rate)

[0120] Menadione-induced oxidative stress, NAC+ / -glycine+ / -NR, and NAPD-NAD redox state in HepG2 cells treated with BSO (GSH synthesis inhibitor)

[0121] Menadione-induced oxidative stress in zebrafish treated with BSO (GSH synthesis inhibitor), NAC+ / -glycine+ / -NR, oxidative stress measurement

[0122] Menadione-induced oxidative stress, NAC+ / -glycine+ / -NR, and GSH production in zebrafish treated with BSO (GSH synthesis inhibitor)

[0123] Menadione-induced oxidative stress, NAC+ / -glycine+ / -NR, and metabolic profiling in zebrafish treated with BSO (GSH synthesis inhibitor)

[0124] Menadione-induced oxidative stress, NAC+ / -Glycine+ / -NR, and mitochondrial function (Oroboros respiration rate, complex activity, etc.) in zebrafish treated with BSO (GSH synthesis inhibitor)

[0105] Example: A low dose of the Gly / NAC-NR combination induces recovery of mitochondrial respiration after acute oxidative stress.

[0106]

[0125] Materials and Methods

[0126] Zebrafish

[0127] Adult AB zebrafish were kept at 28°C under standard housing conditions. Four-month-old fish were exposed to 3 μM menandione (Sigma-Aldrich) in water for 2 h at 28°C to induce acute oxidative stress. The oxidative stress control was then incubated in clear water for 2 h at 28°C. The exposed fish were then incubated in water containing the compound of interest for 2 h at 28°C. The compounds used were N-acetylcysteine ​​(NAC) (Sigma-Aldrich), glycine (Sigma-Aldrich), and nicotinamide riboside (NR) (Chromadex).

[0107]

[0128] Mitochondrial isolation and high-resolution respiration measurements

[0129] Crude mitochondrial extracts were prepared from fish trunk muscle using a slightly modified methodology as previously described (Frezza et al. 2007). After quantification of protein concentration by BCA, 150 μg of crude extract was used for quantification by high-resolution respirometry. An Oxygraph-2k (O2k, OROBOROS Instruments) was used for respiration measurements. Up to two O2k devices (four chambers) were used simultaneously. Experiments were performed at 28 °C in a modified MiR05 (110 mM sucrose, 0.5 mM EGTA, 3 mM MgCl2, 20 mM taurine, 10 mM KH2PO4, 20 mM HEPES, and 0.1% BSA, essentially fatty acid free). Respiration of isolated mitochondria was measured using a modified substrate-uncoupler-inhibitor titration (SUIT) protocol (Pesta and Gnaiger, 2012). Complex I (CI) respiration was induced in the presence of ADP (1 mM) using pyruvate, glutamate, and malate (5 mM, 10 mM, 2 mM, respectively) as substrates. Complex II (CII) respiration was induced by adding succinate (10 mM) in the presence of ADP. CI respiration was calculated as the difference between total respiration (CI + CII) and addition of the CI inhibitor rotenone (0.5 μM). CII respiration was calculated as the difference between inhibited CI respiration and addition of the CII inhibitor malonate (5 mM). Total respiration (CI + CII, Tot respiration) was assessed as the difference between respiration in the presence of all substrates and the sum of inhibition of CI and CII.

[0108]

[0130] statistics:

[0131] All numerical data are expressed as mean ± SEM and reported as histograms. Statistical analysis used two-way ANOVA with Tukey's post-hoc test, and differences were considered statistically significant when p<0.05.

[0109]

[0132] result

[0133] Figure 1 shows the effect of the combination of GlyNAC and NR on high-resolution respiration measurements. Fish (N=5-6 / condition) were treated with low doses of NAC (100 μM), glycine (100 μM), and NR (50 μM) for 2 h, and single treatments of GlyNAC and NR were compared to treatments of the three compounds combined. When used alone, none of the selected concentrations showed any significant effect. Thus, in Figure 1A, it is shown that the combination at low doses significantly improved CI and total respiration compared to the menadione control and the single compounds. In Figure 1B, synergistic effects were calculated as the difference between the mean values ​​of each condition and the menadione control. The theoretical additive effect (ΔGlyNAC+ΔNR) was calculated as the sum of the mean values ​​of the ΔGlyNAC and ΔNR conditions. The effect of the combination treatment (ΔGlyNAC+NR) was significantly higher when compared to the single compounds (ΔGlyNAC and ΔNR), while there was some trend but not significant when compared to the additive effect (ΔGlyNAC+ΔNR).

[0110]

[0134] It should be understood that various changes and modifications to the presently preferred embodiments described herein will be apparent to those skilled in the art. Such changes and modifications can be made without departing from the spirit and scope of the subject matter of the present invention and without diminishing its intended advantages. Therefore, such changes and modifications are intended to be encompassed within the scope of the appended claims.

Claims

1. 1. A composition for use in a method for treating or preventing at least one physical condition selected from the group consisting of oxidative stress, a condition associated with oxidative stress, reduced glutathione levels, and a condition associated with reduced glutathione levels, comprising: the method comprising administering the composition to an individual in need thereof; the composition comprises a combination of glycine, N-acetylcysteine, and nicotinamide riboside; wherein the physical condition is selected from the group consisting of adverse effects of aging, muscle loss, type II diabetes, complications from diabetes, insulin resistance, dyslipidemia, overweight, obesity, elevated cholesterol levels, elevated triglyceride levels, elevated fatty acid levels, fatty liver disease, kidney disease, cardiovascular disease, neurodegenerative disease, cognitive impairment, myopathy such as statin-induced myopathy, non-alcoholic steatohepatitis, tinnitus, dizziness, hangover, hearing loss, osteoporosis, high blood pressure, atherosclerosis / coronary artery disease, myocardial injury after stress, traumatic brain injury, cystic fibrosis, inflammation, cancer, and HIV infection.

2. The composition of claim 1 , which is administered orally.

3. 10. The composition of claim 1, wherein the composition is selected from the group consisting of a food product, a food for special medical purposes (FSMP), a dietary supplement, a ready-to-drink formula, a dairy-based beverage, a low-volume liquid nutritional supplement, a powder for reconstitution with liquid, a meal replacement beverage, and combinations thereof.

4. 10. The composition of claim 1, wherein the combination is administered as a composition comprising a dipeptide that provides at least a portion of the glycine and the N-acetylcysteine.

5. 2. The composition of claim 1, wherein the glycine, the N-acetylcysteine, and the nicotinamide riboside are administered in the same composition.

6. 10. The composition of claim 1, wherein one or more of the glycine, the N-acetylcysteine, and the nicotinamide riboside are administered in a composition separate from the remainder of the combination.