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Lacidipine

pharmaceutical raw materials
Lacidipine structure

Lacidipine 

structure
  • CAS No:

    103890-78-4

  • Formula:

    C26H33NO6

  • Chemical Name:

    Lacidipine

  • Synonyms:

    3,5-Pyridinedicarboxylic acid,4-[2-[(1E)-3-(1,1-dimethylethoxy)-3-oxo-1-propen-1-yl]phenyl]-1,4-dihydro-2,6-dimethyl-,3,5-diethyl ester;3,5-Pyridinedicarboxylic acid,4-[2-[3-(1,1-dimethylethoxy)-3-oxo-1-propenyl]phenyl]-1,4-dihydro-2,6-dimethyl-,diethyl ester,(E)-;3,5-Pyridinedicarboxylic acid,4-[2-[(1E)-3-(1,1-dimethylethoxy)-3-oxo-1-propenyl]phenyl]-1,4-dihydro-2,6-dimethyl-,diethyl ester;Lacidipine;GR 43659X;Caldine;Lacirex;Motens;Lacipil;GX 1048;Lacimen;Midotens;141910-84-1

  • Categories:

    Active Pharmaceutical Ingredients  >  Circulatory System Drugs

Description

White-to-Off-White Crystalline SolidLacidipine is a new second-generation dihydropyridine calcium antagonist introduced as a once a day treatment for mild to moderate hypertension. It is reported to have high selectivity for vascular smooth muscle and also a long duration of action. The use of lacidipine as an antiatherosclerotic agent is currently under investigation.

Lacidipine Basic Attributes

455.54

455.54

1312995-182-4

2933399090

Characteristics

90.9

4.5

White-to-Off-White Crystalline Solid

1.127±0.06 g/cm3(Predicted)

174-175 °C

558.4±50.0 °C(Predicted)

291.5±30.1 °C

1.540

DMSO: soluble20mg/mL, clear

-20°C Freezer

1.67E-12mmHg at 25°C

Safety Information

III

8

UN 3265 8/PG 2

3

22

S26-S36/37/39-S45

US7970200

Xn

P264, P270, P301+P312, P330, P501

H302

Lacidipine Use and Manufacturing

Methods of Manufacturing

18 liters of dichloromethane was taken into a reactor and 5 kg of tertiary-butoxy carbonyl methyl triphenyl phosphonium bromide (obtained using a similar process as described in Example 1) was added to it. 2.05 kg of ortho-phtalaldehyde was added to the reaction mass and another 1 liter of dichloromethane was added to it. The reaction mass was stirred for about 15 minutes and then cooled to about -5° C. A solution of 2.65 kg of sodium hydroxide flakes in 5 liters of water at about 25° C. was added to the reaction mass at -3° C. and maintained at -3° C. for 2.5 hours. Reaction completion was checked using thin layer chromatography. After the reaction was completed, the temperature of the reaction mass was raised to 25° C. and stirred for 30 minutes. The organic layer was separated from the reaction mass and distilled without vacuum at a temperature of 52° C. The residue obtained was maintained at 52° C. for 15 minutes. 35 liters of n-heptane was added to the reaction mass at 52° C. 4 liters of the n-heptane was distilled off from the reaction mass under a vacuum of 500 mm Hg at 63° C. The reaction mass was then cooled to 35° C. and maintained for 1.5 hours. The reaction mass was then filtered under vacuum to remove the undissolved material. The filtered cake was washed with 7.5 liters of n-heptane. The filtrate was taken into another reactor and the solvent was distilled off completely under a vacuum of 610 mm Hg and at 68° C. The reaction mass was then cooled to 33° C. and 11.5 liters of isopropanol was charged into it. The reaction mass was then cooled to -7° C. A solution of 4.25 kg of ethyl-3-aminocrotonate in 12.5 liters of isopropanol was added to the reaction mass at -7° C. 2.8 liters of trifluoroacetic acid was added to the reaction mass at -7° C. followed by addition of 1 liter of isopropanol. The reaction mass was maintained at -7° C. for 2 hours 45 minutes. Reaction completion was checked using thin layer chromatography. A solution of 2.6 kg of sodium bicarbonate in 50 liters of water was added to the reaction mass 0° C. and 25 liters of ethyl acetate was added to it. The temperature of the reaction mass was heated to 25° C. and stirred for 20 minutes. The aqueous layer was separated and extracted with 12.5 liters of ethyl acetate. The combined organic layer was taken into a separate reactor and the solvent was distilled off atmospherically at 81° C. The residue was distilled off completely, and then 5 liters of isopropanol was added to it. The reaction mass was distilled off completely and again 5 liters of isopropanol was added to the residue obtained. The reaction mass was again distilled off completely and finally the residue was dissolved in 63 liters of isopropanol by heating to 85° C. to get clear dissolution. The reaction mass was then cooled to 2° C. and maintained for 1.5 hours. The isolated material was filtered and washed with 2.5 liters of isopropanol. The wet material was dried at 50° C. for 30 minutes. The dry material was taken into another reactor and 23 liters of isopropanol was added to it. The reaction mass was heated to 65° C. and maintained for 30 minutes. The reaction mass was then cooled to 2° C. and maintained for 1 hour. The reaction mass was filtered and washed with 1.5 liters of isopropanol. The wet solid was dried at a temperature of 60° C. and a vacuum of 630 mm Hg for 5 hours to yield 2.04 kg (yield: 40.9percent) of the title compound. Triphenyl phosphine oxide content: less than 0.0011 area-percent.52.4 g of triphenylphosphine and 45.0 g of tert-butyl chloroacetate, Set microwave reactor, added toluene 200g, titanium dioxide 1g, Select the microwave frequency of 2450MHz, heating to 105 ~ 110 , The reaction for 1 hour, cooled, filtered, the filter cake was washed with an appropriate amount of isopropyl ether, Dried to give a white solid, add water 100g, stirred for 10 minutes, Sodium hydroxide solution was added dropwise, filtered and dried to give a white solid, Add methylene chloride, madeTert-butyl triphenylphosphinoacetate dichloromethane solution;5.0 g of o-phthalaldehyde was added to 50 g of methylene chloride, and in an ice-salt bath, Tert-butyl triphenylphosphinyl acetate methylene chloride solution, the reaction 40 minutes, The methylene chloride was distilled off, the filter cake was washed with an appropriate amount of isopropyl ether, Isopropyl ether evaporated to give a yellow oil, addedEthyl aminocrotonate 12g, Ammonium sulfate 1g, dissolved in an appropriate amount of anhydrous ethanol, ice-salt bath, The reaction 1.5 hours, the reaction was added aqueous sodium bicarbonate, Get tan solid, filtered, dried, set ultrasound reactor, Add 200g of ethyl acetate, heat to dissolve, filter hotly, Select ultrasonic frequency 15kHz, cooling, precipitation of crystals, suction filtration, Dry, doxepin dihydrate crystals, yield 82.45percent.

Uses

antihypertensive;dihydropyridinr calcium channel blocker

Drug Function and Efficacy

No specific pharmacological effects are clearly mentioned from the above information

This ingredient has been used in drugs with the following functions (note: it does not mean that the ingredient itself has the following health functions)

Related Drugs

Registered Holders

  • Shandong Chenghuishuangda Pharmaceutical Co., Ltd.

    China China
    Active
  • Venturpharm Pharmaceutical(Hainan)Limited.

    China China
    Active
  • Hunan Jiudian HONGYANG Pharmaceutical Co., Ltd.

    China China
    Active

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