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Flopropione

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Flopropione Basic information

Product Name:
Flopropione
Synonyms:
  • 1-(2,4,6-trihydroxyphenyl)-1-propanon
  • 1-(2,4,6-Trihydroxyphenyl)-1-propanone
  • 13907 R. P.
  • 13907r.p.
  • Argobroda
  • Flopropione Phlopropiophenone
  • 1-(2,4,6-trihydroxyphenyl)propanone
  • 1-Propanone, 1-(2,4,6-trihydroxyphenyl)-
CAS:
2295-58-1
MF:
C9H10O4
MW:
182.17
EINECS:
218-942-8
Product Categories:
  • Aromatic Propiophenones (substituted)
Mol File:
2295-58-1.mol
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Flopropione Chemical Properties

Melting point:
177°C
Boiling point:
275.56°C (rough estimate)
Density 
1.2481 (rough estimate)
refractive index 
1.4500 (estimate)
storage temp. 
Inert atmosphere,Room Temperature
solubility 
Soluble in DMSO
form 
powder to crystal
pka
7.49±0.45(Predicted)
color 
White to Orange to Green
Merck 
14,4106
LogP
2.600 (est)
CAS DataBase Reference
2295-58-1(CAS DataBase Reference)
NIST Chemistry Reference
Flopropione(2295-58-1)
EPA Substance Registry System
1-Propanone, 1-(2,4,6-trihydroxyphenyl)- (2295-58-1)
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Safety Information

Risk Statements 
36/37/38
Safety Statements 
26-36/37/39
RTECS 
UH4429100
HS Code 
2914.50.3000
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Flopropione Usage And Synthesis

Uses

antispasmodic

Preparation

Preparation by reaction of propionitrile with phlo-roglucinol (Hoesch reaction);
Preparation by reaction of propionic anhydride with phloroglucinol
in the presence of concentrated sulfuric acid (one drop) at 130° for 5 min ? (65%)
in the presence of Amberlite IR-120 (cation exchange resin sulfonic acid ? type) at 160° for 2–3 h (42%). N.B.: Zeokarb 225 was found to be as effective
in the presence of boron trifluoride etherate at 10° (62–65%)
Preparation by reaction of propionyl chloride with phloroglucinol
in the presence of aluminium chloride in nitrobenzene/carbon disulfide ? solution (76%), in nitrobenzene at 60° (55%) or without solvent at 50° (70%)
in the presence of boron trifluoride etherate at 10° (compound ? 3) (62–65%).

Definition

ChEBI: Flopropione is an organic molecular entity.

Synthesis

108-73-6

79-03-8

2295-58-1

General procedure: Anhydrous AlCl3 (4 eq.) was slowly added to a stirred suspension of resorcinol (1 eq.) in CS2. Subsequently, nitrobenzene was added dropwise over 30 minutes. The reaction mixture was refluxed at 55 °C for 30 min. Next, propionyl chloride (1 eq.) dissolved in nitrobenzene was slowly added over 30 min and the reaction mixture continued to be heated for 30 min. Upon completion of the reaction, the mixture was allowed to cool to room temperature with stirring, followed by slow pouring into an ice water bath. 3M HCl was added to quench the reaction. The organic solvent was removed by distillation under reduced pressure and the resulting oily residue was extracted with Et2O. After extraction, Et2O was removed by evaporation and the crude product was purified by fast chromatography (eluent: petroleum ether (boiling point 50-70 °C)/ethyl acetate, ratio tapered from 5:1 to 3:1).

in vivo

The effect of Flopropione as an antispasmodic agent on the rate of passing a calculus from the urinary tract has been compared retrospectively with patients in whom passage was spontaneous. Flopropine has been shown, with statistical significance, to be superior to the control in cumulative passage rate after initiation of administration. Flopropine has been shown to exert a spasmolytic effect not only on smooth muscle of the gastrointestinal tract but also on smooth muscle of the pancreatobiliary and urinary systems[3].

IC 50

5-HT1A Receptor; COMT

References

[1] Agricultural and Biological Chemistry, 1985, vol. 49, # 3, p. 719 - 724
[2] European Journal of Medicinal Chemistry, 2014, vol. 85, p. 621 - 628
[3] Australian Journal of Chemistry, 2005, vol. 58, # 7, p. 551 - 555
[4] European Journal of Medicinal Chemistry, 2018, vol. 155, p. 255 - 262
[5] Bioorganic and Medicinal Chemistry, 2006, vol. 14, # 13, p. 4402 - 4409

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