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CAS No 146-14-5 , Riboflavin5'-(trihydrogen diphosphate), P'®

  • Name: Riboflavin5'-(trihydrogen diphosphate), P'®
  • Synonyms: Riboflavine, 5'-ester with adenosine5'-diphosphate (8CI); Riboflavin-adenine dinucleotide;Riboflavin5'-(trihydrogen diphosphate), P'®Riboflavin 5'-adenosine diphosphate; Flavineadenosine diphosphate; Adenine-flavin dinucleotide; FAD; Flavitan; Benzo[g]pteridine, riboflavin5'-(trihydrogen diphosphate) deriv.; Flavine-adenine dinucleotide;Adenosine5'-(trihydrogen pyrophosphate), 5'® Adenine-flavinedinucleotide; Adenine-riboflavin dinucleotide;5'-ester with riboflavine (8CI);5'-ester with adenosine; Adenine-riboflavinedinucleotide; NSC 112207; Flavin-adenine dinucleotide; Fademin; Flavinat;Riboflavine-adenine dinucleotide;
  • CAS Registry Number:
  • Flash Point: °C
  • Boiling Point: °Cat760mmHg
  • Density: 2.08g/cm3
  • Safety Statements: Moderately toxic by intravenous route. When heated to decomposition it emits toxic vapors of NOx and POx.
  • Flash Point: °C
  • EINECS: 282-733-8
  • Molecular Weight: 785.63
  • InChI: InChI=1S/C27H33N9O15P2/c1-10-3-12-13(4-11(10)2)35(24-18(32-12)25(42)34-27(43)33-24)5-14(37)19(39)15(38)6-48-52(44,45)51-53(46,47)49-7-16-20(40)21(41)26(50-16)36-9-31-17-22(28)29-8-30-23(17)36/h3-4,8-9,14-16,19-21,26,37-41H,5-7H2,1-2H3,(H,44,45)(H,46,47)(H2,28,29,30)(H,34,42,43)/t14-,15+,16+,19-,20+,21+,26+/m0/s1
  • Molecular Formula: C27H33 N9 O15 P2
  • Molecular Structure:CAS No:146-14-5 Riboflavin5'-(trihydrogen diphosphate), P'®
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146-14-5 FAD-Na2

  • FAD-Na2
  • France SORACHIM [Manufacturer]
  • Tel: +33153949800
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  • Address: 37 rue louise Weiss75013 PARISFRANCE PARIS,nullFrance
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146-14-5 Flavin adenine dinucleotide disodium salt; 95%

  • Flavin adenine dinucleotide disodium salt; 95%
  • Germany ABCR GmbH & Co KG [Manufacturer]
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  • Address: Im Schlehert 10
    76187 Karlsruhe
    Germany null,nullGermany
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146-14-5 FLAVIN ADENINE DINUCLEOTIDE DISODIUM SALT FOR CELL CULTURE

  • FLAVIN ADENINE DINUCLEOTIDE DISODIUM SALT FOR CELL CULTURE
  • Hong kong Advanced Technology & Industrial Co., Ltd. [Manufacturer]
  • Tel: (852) 2390 2293/ (852) 2394 5546
  • Fax: (852) 2789 8314
  • Address: Unit B, 1/F., Cheong Shing Bldg.,
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    Hong Kong null,nullHong kong
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References of Riboflavin5'-(trihydrogen diphosphate), P'®
Title: Flavine-Adenine Dinucleotide
CAS Registry Number: 146-14-5
CAS Name: Riboflavine 5¢-(trihydrogen diphosphate) 5¢?5¢-ester with adenosine
Synonyms: adenosine 5¢-(trihydrogen diphosphate) 5¢?5¢-ester with riboflavine; FAD; riboflavine 5¢-adenosine diphosphate; isoalloxazine-adenine dinucleotide
Trademarks: Fademin (Chugai); Flamitajin (Teisan; Iwaki); Flanin F (Tokyo Tanabe); Flavitan
Molecular Formula: C27H33N9O15P2
Molecular Weight: 785.55
Percent Composition: C 41.28%, H 4.23%, N 16.05%, O 30.55%, P 7.89%
Literature References: The prosthetic group of certain flavoproteins including D-amino acid oxidase, glucose oxidase, glycine oxidase, fumaric hydrogenase, histaminase, and xanthine oxidase. Isoln from yeast: Warburg et al., Biochem. Z. 297, 417 (1938). Structure and isoln from liver, kidneys, hearts, muscles: Warburg, Christian, ibid. 298, 150 (1938); isoln from the mycelium of Eremothecium ashbyii: Yagi, Tada, Biochem. Prep. 7, 51 (1959); Masuda et al., US 2973305 (1961 to Takeda). Synthesis: Christie et al., J. Chem. Soc. 1954, 46; Huennekens, Kilgour, J. Am. Chem. Soc. 77, 6716 (1955); DeLuca, Kaplan, J. Biol. Chem. 223, 569 (1956); Moffatt, Khorana, J. Am. Chem. Soc. 80, 3756 (1958). Review: A. Holmgren, Experientia 36 (Suppl), 149-180 (1980). Review of FAD and other flavin coenzymes: Beinert, The Enzymes vol. 2, P. D. Boyer et al., Eds. (Academic Press, New York, 2nd ed., 1960) pp 339-416; see also vol. XIII Part B (Academic Press, New York, 3rd ed., 1975), several authors.
 
Derivative Type: Barium salt
Molecular Formula: C27H31BaN9O15P2
Molecular Weight: 920.86
Percent Composition: C 35.22%, H 3.39%, Ba 14.91%, N 13.69%, O 26.06%, P 6.73%
Properties: Small yellow spheres clustered like grapes. Absorption max: 366, 445 nm. The absorption curve is practically identical with that of riboflavine. There is some stronger absorption between 450 and 510 nm resulting in aq solns which are more reddish and less green than those of riboflavine. The appearance of a strong greenish fluorescence indicates decomposition and loss of catalytic activity.
Absorption maximum: Absorption max: 366, 445 nm