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  • Beta NMN/BETA-NICOTINAMIDE Nicotinatmide Mononucleotide CAS1094-61-7

    Beta NMN/BETA-NICOTINAMIDE Nicotinatmide Mononucleotide CAS1094-61-7

    Beta NMN Nicotinamide mononucleotide (NMN), a product of the NAMPT reaction and a key NAD+ intermediate, ameliorates glucose intolerance by restoring NAD+ levels in HFD-induced T2D mice. NMN also enhances hepatic insulin sensitivity and restores gene expression related to oxidative stress, inflammatory response, and circadian rhythm, partly through SIRT1 activation. NMN is used for studying binding motifs within RNA aptamers and ribozyme activation processes involving β-nicotinamide mononucleotide (Beta-NMN)-activated RNA fragments.

    Nicotinamide mononucleotide in human cells play an important role in energy generation, it involved in intracellular NAD (nicotinamide adenine dinucleotide, cell energy conversion important coenzyme) synthesis, used in anti-aging, fall blood sugar and other health care products.

    Nicotinamide Mononucleotide widely used for cosmetics and pharmaceutical.In cosmetics has anti-aging and anti-allergic agents effects etc.

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  • NADH/beta-Nicotinamide Adenine Dinucleotide Disodium Salt(NADH 3Na) CAS 606-68-8

    NADH/beta-Nicotinamide Adenine Dinucleotide Disodium Salt(NADH 3Na) CAS 606-68-8

    NADH is the reduced form of NAD+, and NAD+ is the oxidized form of NADH, a coenzyme composed of ribosylnicotinamide 5'-diphosphate coupled to adenosine 5'-phosphate by pyrophosphate linkage. NADH is found widely in nature and is involved in numerous enzymatic reactions in which it serves as an electron carrier by being alternately oxidized (NAD+) and reduced (NADH). It forms NADP with the addition of a phosphate group to the 2' position of the adenosyl nucleotide through an ester linkage.

    NADH is synthesized by the body and thus is not an essential nutrient. NADH does require the essential nutrient nicotinamide for its synthesis, and NADH role in energy production is certainly an essential one. In addition to NADH role in the mitochondrial electron transport chain, NADH is produced in the cytosol. The mitochondrial membrane is impermeable to NADH, and this permeability barrier effectively separates the cytoplasmic from the mitochondrial NADH pools. However, cytoplasmic NADH can be used for biologic energy production. This occurs when the malate-aspartate shuttle introduces reducing equivalents from NADH in the cytosol to the electron transport chain of the mitochondria. This shuttle mainly occurs in the liver and heart.

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  • NAD+/β-Nicotinamide Adenine Dinucleotide CAS 53-84-9

    NAD+/β-Nicotinamide Adenine Dinucleotide CAS 53-84-9

    Nicotinamide Adenine Dinucleotide NAD+ is a water-soluble vitamin, Nicotinamide Adenine Dinucleotide NAD+ is white crystalline powder, odorless or nearly odorless, bitter in taste, freely soluble in water or ethanol, dissolvable in glycerin.

    Nicotinamide Adenine Dinucleotide NAD+ is easy to absorb oral, and can be widely distributed in the body, the excess metabolites or prototype quickly expel from urine. Nicotinamide is part of coenzyme I and coenzyme II, plays the role of hydrogen delivery in biological oxidation respiratory chain, can promote biological oxidation processes and tissue metabolism, maintain normal tissue (especially the skin, digestive tract and nervous system) integrity has an important role.

    In addition, Nicotinamide Adenine Dinucleotide NAD+ has prevention and treatment of heart block, sinus node function and anti-fast experimental arrhythmias, nicotinamide can significantly improve the heart rate and atrioventricular block caused by verapamil.

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  • Fullerene C60 CAS99685-96-8

    Fullerene C60 CAS99685-96-8

    Fullerene C60 has a special spherical configuration, fullerene C60 is the best round of all the molecules. Fullerene C60 has sea of advantages that useful for reinforced metal, new catalyst, gas storage, manufacturing optical material, manufacturing bioactive materials and so on.

    Fullerene C60 is very hopefully to translate into a new abrasive material with high hardness as a result of C60 molecules’special shape and strong ability to resist external pressures. Besides, it is because using C60 films to do with the matrix material, which can be made into dentate combination of capacitors.

    The chemical sensors made by fullerene C60 have superiorities with smaller sizes, simple, renewable and lower price.
    Also, fullerenes C60 has memory function, which can be used as memory materials.

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  • NR/Nicotinamide Ribose;NRC/Nicotinamide Riboside Chloride CAS 1341-23-7 CAS 23111-00-4

    NR/Nicotinamide Ribose;NRC/Nicotinamide Riboside Chloride CAS 1341-23-7 CAS 23111-00-4

    Nicotinamide Riboside is a natural ingredient that is found in milk. It is actually related to niacin and other forms of vitamin B3.
    Nicotinamide Riboside has become more and more popular today because of various scientific studies that prove Nicotinamide Riboside ability to prevent obesity by helping you fight weight gain. Researchers have found that Nicotinamide Riboside can serve as a unique supplement that will boost one’s metabolism to help burn off more calories and prevent weight gain.
    Apart from preventing weight gain,Nicotinamide Riboside also helps boost muscle performance, increase energy expenditure, and minimize the risk factors of diabetes.

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  • N,N-Dimethyl-3-Phenylethylamine Hydrochloride/ Citrate Acid / CAS:10275-21-5

    N,N-Dimethyl-3-Phenylethylamine Hydrochloride/ Citrate Acid / CAS:10275-21-5

    N-phenethyl Dimethylamie(Eria Jarensis Extract) was claimed to be a assy extracted from a plant called Eria Jarensis. It is a new PEA-like molecule that has very nice euphoric effect. However the effect are quite mild which is not as strong as DMAA. N-Phenethyl Dimethylamine(Eria Jarensis Extract) has similar effects and functions as a neuromodulartor in the central nervous system. Although naturally-occurring,it is frequently supplemented as for its therapeutic mood-boosting benefits,so it actually boost our dopamine levels which may make our brain feel better.

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    Fullerene C70 CAS 115383-22-7

    Fullerene C70 CAS 115383-22-7

    C70 fullerene is the fullerene molecule consisting of 70 carbon atoms. C70 fullerene is a cage-like fused-ring structure which resembles a rugby ball, made of 25 hexagons and 12 pentagons, with a carbon atom at the vertices of each polygon and a bond along each polygon edge. A related fullerene molecule, named buckminsterfullerene (C60 fullerene), consists of 60 carbon atoms.

    C70 fullerene was first intentionally prepared in 1985 by Harold Kroto, James R. Heath, Sean O'Brien, Robert Curl and Richard Smalley at Rice University. Kroto, Curl and Smalley were awarded the 1996 Nobel Prize in Chemistry for their roles in the discovery of cage-like fullerenes. The name is a homage to Buckminster Fuller, whose geodesic domes these molecules resemble.

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  • NADP/Nicotinamide Adenine Dinucleotide Phosphate CAS 53-59-8

    NADP/Nicotinamide Adenine Dinucleotide Phosphate CAS 53-59-8

    Nicotinamide adenine dinucleotide (NAD) and its relative nicotinamide adenine dinucleotide phosphate (NADP) are two of the most important coenzymes in the cell. NADP is simply NAD with a third phosphate group attached as shown at the bottom of the figure.
    Enzymes which use NADP(H) as an electron acceptor or as a cofactor. Nicotinamide adenine dinucleotide phosphate, a redox coenzyme that participates in a variety of enzymatic reactions in which it serves as an electron carrier by being alternately oxidized (NADP+) and reduced (NADPH). Analogue of NAD, but NADPH is used extensively in biosynthetic, rather than catabolic pathways as well as in photosynthesis.

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