Development and Validation of Conditions for the Determination of Residual Organic Solvents – Acetic Acid in the Silver Salt Substance 4-[4-(atsetilaminosul'fonil)fenil]-6-(4-bromfenil)-5-(2-nitrofenil)-3,5-digidropirrolo[3,4-с]pirazol-3-ona

Author:

Lyust E. N.1ORCID,Bobrovskaya O. V.1ORCID,Gein V. L.1ORCID

Affiliation:

1. Federal State Budgetary Educational Institution of Higher Education "Perm State Pharmaceutical Academy" of the Ministry of Health of the Russian Federation

Abstract

Introduction. For new synthesized pharmacologically active compounds, already at the stage of standardization, it is necessary to develop methods for determining their quality indicators, normalized by a pharmacopoeial article for pharmaceutical substances. One of these indicators is the residual organic solvents, for the analysis of which chromatographic methods are suitable, for example, gas-liquid chromatography.Aim. To develop conditions for the determination of residual organic solvents - acetic acid in a new pharmacologically active compound (substance of silver salt 4-[4-(acetylaminosulfonyl)phenyl]-6-(4-bromophenyl)-5-(2-nitrophenyl)-3,5-dihydropyrrolo[3,4-c]pyrazol-3-one), to validate the developed method.Materials and methods. The substance of the silver salt 4-[4-(acetylaminosulfonyl)phenyl]-6-(4-bromophenyl)-5-(2-nitrophenyl)-3,5-dihydropyrrolo[3,4-c]pyrazole-3-one, synthesized at the Perm State Pharmaceutical Academy. The study was carried out by the gas chromatographic method (gas-liquid chromatograph Chromatec-Crystal 5000, JSC SDO «Chromatec», Russia).Results and discussion. This paper reflects the results of the choice of gas chromatographic conditions for determining the residual organic solvent (acetic acid) in the substance, these conditions are evaluated according to the validation indicators required for analytical methods.Conclusion. A procedure has been developed for determining the residual organic solvent in the substance of the silver salt 4-[4-(acetylaminosulfonyl)phenyl]-6-(4-bromophenyl)-5-(2-nitrophenyl)-3,5-dihydropyrrolo[3,4-c]pyrazole-3-one, the methodology was validated.

Publisher

Center of Pharmaceutical Analytics Ltd

Subject

Drug Discovery,Pharmaceutical Science

Reference12 articles.

1. Gein V. L., Bobrovskaya O. V., Russkikh A. A., Petukhova N. N. Synthesis of 4-Aryl-2-hydroxy-4-oxo-N-{4-[(1,3-thiazol-2-yl)-sulfamoyl]phenyl}but-2-eneamides. Russian Journal of General Chemistry. 2018;88(2):334–337. (In Russ.) DOI: 10.1134/S1070363218020238.

2. Gein V. L., Zamaraeva T. M., Gorgopina E. V., Igidov N. M., Bobrovskaya O. V., Dmitriev M. V. Synthesis and Structure (Z)-N-Aryl-2-hydroxy-4-oxo-4-phenylbut-2-enamides. Russian Journal of General Chemistry. 2018;88(4):832–835. (In Russ.) DOI:10.1134/S1070363218040321.

3. Gein V. L., Bobrovskaya O. V., Dmitriev M. V., Makhmudov R. R., Belonogova V. D. Synthesis and Biological Activity of Compounds Obtained by Reacting Methyl Aroylpyruvates with Sulfadimidine. Russian Journal of General Chemistry. 2018;88(6):1095–1102. (In Russ.) DOI: 10.1134/S1070363218060087.

4. Gein V. L., Bobrovskaya O. V., Russkikh A. A., Novikova V. V., Gein O. N., Karpenko Yu. N., Chashchina S. V., Dmitriev M. V., Yankin A. N. Synthesis and Biological Activity of 5-Aryl-N-{4-[(1,3-thiazol-2-yl)sulfamoyl]phenyl}-1-phenyl-1H-pyrazole-3-carboxamides and Their Salts. Russian Journal of General Chemistry. 2019;89(4):680–688. (In Russ.) DOI: 10.1134/S1070363219040078.

5. Gein V. L., Bobrovskaya O. V., Russkikh A. A., Dmitriev M. V., Yankin A. N. Synthesis of Methyl 4-Aryl-4-oxo-2-{4-[(1,3-thiazol-2-yl)-sulfamoyl]phenylamino}but-2-enoates and Their Reactions with Ninhydrin. Russian Journal of Organic Chemistry. 2019;55(5):602–607. (In Russ.) DOI: 10.1134/S107042801905004X.

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