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Basic Information
CAS No.: 3771-19-5
Name: Nafenopin
Article Data: 2
Molecular Structure:
Molecular Structure of 3771-19-5 (Nafenopin)
Formula: C20H22 O3
Molecular Weight: 310.42
Synonyms: Propionicacid, 2-methyl-2-[p-(1,2,3,4-tetrahydro-1-naphthyl)phenoxy]- (7CI,8CI); 2-Methyl-2-[4-(1,2,3,4-tetrahydro-1-naphthyl)phenoxy]propionicacid; 2-Methyl-2-[p-(1,2,3,4-tetrahydro-1-naphthyl)phenoxy]propionate;2-Methyl-2-[p-(1,2,3,4-tetrahydro-1-naphthyl)phenoxy]propionic acid; C 13437Su;CH 13-437; CIBA 13,437SU; CIBA 13437Su; Melipan; Nafenopin; SU 13.437; Su13437; TPIA
Density: 1.155g/cm3
Boiling Point: 466.4°Cat760mmHg
Flash Point: 164.4°C
Safety: Confirmed carcinogen with experimental carcinogenic and tumorigenic data. Moderately toxic by ingestion. Mutation data reported. A drug for the treatment of hypercholesterolemia or hypertriglyceridemia. When heated to decomposition it emits acrid smoke and irritating fumes.
PSA: 46.53000
LogP: 4.39680
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Chemistry

 Molecular Structure of Melipan (CAS NO.3771-19-5):

IUPAC Name: 2-methyl-2-[4-(1,2,3,4-tetrahydronaphthalen-1-yl)phenoxy]propanoic acid 
General Description :Crystals,combustible
Empirical Formula: C20H22O3 
Molecular Weight: 310.3869 
Surface Tension: 46 dyne/cm 
Density: 1.155 g/cm
Flash Point: 164.4 °C 
Enthalpy of Vaporization: 76.72 kJ/mol 
Boiling Point: 466.4 °C at 760 mmHg 
Vapour Pressure: 1.69E-09 mmHg at 25°C 
Index of Refraction: 1.581 
Synonyms of Melipan (CAS NO.3771-19-5):
 2-Methyl-2-[4-(1,2,3,4-tetrahydro-1-naphthalenyl)phenoxy]propanoic acid ; propanoic acid, 2-methyl-2-[4-(1,2,3,4-tetrahydro-1-naphthalenyl)phenoxy]- ; 2-Methyl-2-(4-(1,2,3,4-tetrahydro-1-naphthale*))   ; 2-Methyl-2-(4-(1,2,3,4-tetrahydro-1-naphthalenyl)phenoxy)propanoic acid ; 2-Methyl-2-(4-(1,2,3,4-tetrahydro-1-naphthyl)phenoxy)propanoic acid ; 2-methyl-2-(4-tetralin-1-ylphenoxy)propanoic acid ; 2-Methyl-2-(p-(1,2,3,4-tetrahydro-1-naphthyl)phenoxy)propionic acid ; 2-methyl-2-{[4-(1,2,3,4-tetrahydronaphthalen-1-yl)phenyl]oxy}propanoic acid

Toxicity Data With Reference

1.    

dns-rat:lvr 10 mg/L

    CRNGDP    Carcinogenesis. 5 (1984),1033.
2.    

dni-mus:oth 100 µmol/L

    CNREA8    Cancer Research. 40 (1980),36.
3.    

orl-rat TDLo:39 g/kg/92W-C:CAR

    JNCIAM    Journal of the National Cancer Institute. 59 (1977),1645.
4.    

orl-mus TDLo:56 g/kg/81W-C:CAR

    CNREA8    Cancer Research. 36 (1976),1211.
5.    

orl-rat TD:33 g/kg/78W-C:ETA

    CNREA8    Cancer Research. 36 (1976),1211.
6.    

orl-rat LD50:900 mg/kg

    TXAPA9    Toxicology and Applied Pharmacology. 18 (1971),185.

Consensus Reports

IARC Cancer Review: Group 2B IMEMDT    IARC Monographs on the Evaluation of Carcinogenic Risk of Chemicals to Man . 7 ,1987,p. 56.(World Health Organization, Internation Agency for Research on Cancer,Lyon, France.: ) (Single copies can be ordered from WHO Publications Centre U.S.A., 49 Sheridan Avenue, Albany, NY 12210) ; Human Limited Evidence IMEMDT    IARC Monographs on the Evaluation of Carcinogenic Risk of Chemicals to Man . 24 ,1980,p. 125.(World Health Organization, Internation Agency for Research on Cancer,Lyon, France.: ) (Single copies can be ordered from WHO Publications Centre U.S.A., 49 Sheridan Avenue, Albany, NY 12210) ; Animal Sufficient Evidence IMEMDT    IARC Monographs on the Evaluation of Carcinogenic Risk of Chemicals to Man . 24 ,1980,p. 125.(World Health Organization, Internation Agency for Research on Cancer,Lyon, France.: ) (Single copies can be ordered from WHO Publications Centre U.S.A., 49 Sheridan Avenue, Albany, NY 12210) .

Safety Profile

Confirmed carcinogen with experimental carcinogenic and tumorigenic data. Moderately toxic by ingestion. Mutation data reported. A drug for the treatment of hypercholesterolemia or hypertriglyceridemia. When heated to decomposition it emits acrid smoke and irritating fumes.

Specification

 Reactivity profile of Melipan (CAS NO.3771-19-5) is an organic acid. Carboxylic acids donate hydrogen ions if a base is present to accept them. They react in this way with all bases, both organic (for example, the amines) and inorganic. Their reactions with bases, called "neutralizations", are accompanied by the evolution of substantial amounts of heat. Neutralization between an acid and a base produces water plus a salt. Carboxylic acids in aqueous solution and liquid or molten carboxylic acids can react with active metals to form gaseous hydrogen and a metal salt. Such reactions occur in principle for solid carboxylic acids as well, but are slow if the solid acid remains dry. Even "insoluble" carboxylic acids may absorb enough water from the air and dissolve sufficiently in Nafenopin to corrode or dissolve iron, steel, and aluminum parts and containers. Carboxylic acids, like other acids, react with cyanide salts to generate gaseous hydrogen cyanide. The reaction is slower for dry, solid carboxylic acids. Insoluble carboxylic acids react with solutions of cyanides to cause the release of gaseous hydrogen cyanide. Flammable and/or toxic gases and heat are generated by the reaction of carboxylic acids with diazo compounds, dithiocarbamates, isocyanates, mercaptans, nitrides, and sulfides. Carboxylic acids, especially in aqueous solution, also react with sulfites, nitrites, thiosulfates (to give H2S and SO3), dithionites (SO2), to generate flammable and/or toxic gases and heat. Their reaction with carbonates and bicarbonates generates a harmless gas (carbon dioxide) but still heat. Like other organic compounds, carboxylic acids can be oxidized by strong oxidizing agents and reduced by strong reducing agents. These reactions generate heat. A wide variety of products is possible.