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STABILITY OF DRUG FORM OF PARACETAMOL, FORMED ON THE BASIS OF CRYSTALS OF ROMBIC MODIFICATION

Abstract

Drug form of paracetamol formed on the basis of molecular crystals of rhombic modification was studied. The studies included technological experiments, optical microscopy, differential scanning calorimetry, X-ray diffraction and IR spectroscopy. It is found that drug forms of paracetamol, synthesized by calorimetric method, together with enlarged solubility possess remarkable sensibility to temperature and mechanic grinding. It is presented X-ray patterns, IR spectra and curves of differential scanning calorimetry.

About the Authors

A. P. Belyaev
St. Petersburg Chemical and Pharmaceutical Academy
Russian Federation


V. P. Rubets
Saint-Petersburg State Institute of Technology (Technical University)
Russian Federation


V. V. Antipov
Saint-Petersburg State Institute of Technology (Technical University)
Russian Federation


E. Y. Rodionova
St. Petersburg Chemical and Pharmaceutical Academy
Russian Federation


References

1. H. Ahmed, M.R. Shimpi, S.P. Velaga. Relationship between mechanical properties and crystal structure in cocrystals and salt of paracetamol // Drug Development and Industrial Pharmacy. 2017. V. 43. № 1. P. 89-97.

2. F. Sun, B. Xu, Y. Zhang, S. Dai, X. Shi, Y. Qia. Latent variable modeling to analyze the effects of process parameters on the dissolution of paracetamol tablet // Bioengineered. 2017. V. 8. 1. P. 61-70.

3. Y. Boumrah, I. Bouzahia, S. Bouanani, K. Khimeche, A. Dahmani. Thermodynamic and analytical studies of drugs binary systems of paracetamol mixed with pseudoephedrine. HCl, dextropropoxyphene HCl and tramadol HCl // Thermochimica Acta. 2016. V. 634. № 6. P. 48-56.

4. А.П. Беляев, В.П. Рубец, В.В. Антипов. Калориметрическое получение лекарственной формы парацетамола // Разработка и регистрация лекарственных средств. 2017. № 19(2). С. 62-64.

5. J.M. Freitas, D.L.O. Ramos, R.M.F. Sousa, T.R.L.C. Paixão, M.H.P. Santana, R.A.A. Muñoz, E.M. Richter. A portable electrochemical method for cocaine quantification and rapid screening of common adulterants in seized samples // Sensors and Actuators, B: Chemical. 2017. V. 243. № 5. P. 557-565.

6. M. Taei, F. Hasanpour, M. Dinari, N. Sohrabi, M.S. Jamshidi. Synthesis of 5-[(2-hydroxynaphthalen-1-yl)diazenyl]isophthalic acid and its application to electrocatalytic oxidation and determination of adrenaline, paracetamol, and tryptophan // Chinese Chemical Letters. 2017. V. 28. № 2. P. 240-247.

7. A. Aliabadi, G.H. Rounaghi, M.H. Arbab Zavar. A new dropletbased polymeric banana electrochemical biosensor for analysis of one microliter solution of paracetamol // Sensors and Actuators, B: Chemical. 2017. V. 241. P. 182-189.

8. M.R. Carrasco-Díaz, E. Castillejos-López, A. Cerpa-Naranjo, M.L. Rojas-Cervantes. On the textural and crystalline properties of Fe-carbon xerogels. Application as Fenton-like catalysts in the oxidation ofparacetamolby H2O2 // Microporous and Mesoporous Materials. 2017. V. 237. № 1. P. 282-293.

9. L. Rimoldi, D. Meroni, E. Falletta, V. Pifferi, L. Falciola, G. Cappelletti, S. Ardizzone. Emerging pollutant mixture mineralization by TiO2 photocatalysts. The role of the water medium // Photochemical and Photobiological Sciences. 2017. V. 16. P. 60-66.

10. C. Tan, N. Gao, J. Deng, L. Deng. Efficient degradation of paracetamol with nanoscaled magnetic CoFe2O4 and MnFe2O4 as a heterogeneous catalyst of peroxymonosulfate // Separation and Purification Technology. 2017. V. 175. № 3. P. 47-57.

11. V.G. Bessergenev, M.C. Mateus, I.M. Morgado, M. Hantusch, E. Burkel. Photocatalytic reactor, CVD technology of its preparation and water purification from pharmaceutical drugs and agricultural pesticides // Chemical Engineering Journal. 2017. V. 312. № 1. P. 306-316.

12. E. Szabados, G. Sági, F. Somodi, B. Maróti, D. Srankó, A. Tungler. Wet air oxidation of paracetamol over precious metal / Ti mesh monolith catalyst // Journal of Industrial and Engineering Chemistry. 2017. V. 46. № 2. P. 364-372.

13. P. Di Martino, P. Conflant, M. Drache, J.-P. Huvenne, A.-M. Guyot-Hermann. Preparation and physical characterization of forms H and HI of paracetamol // Journal of Thermal Analysis. 1997. V. 48. P. 447-458.

14. А.П. Беляев, В.П. Рубец, И.П. Калинкин, М.Ю Нуждин. Эффекты упорядочения ансамбля дисперсных частиц в слабом поле упругих напряжений подложки при конденсации из паровой фазы в резко неравновесных условиях // Журнал физической химии. 2003. Т. 77. № 10. С. 1847-1852.

15. А.П. Беляев, В.П. Рубец, В.В. Антипов, Н.С Бордей. Особенности формирования структуры молекулярных кристаллов при вакуумном синтезе парацетамола // Журнал физической химии. 2015. Т. 89. № 4. С. 586.


Review

For citations:


Belyaev A.P., Rubets V.P., Antipov V.V., Rodionova E.Y. STABILITY OF DRUG FORM OF PARACETAMOL, FORMED ON THE BASIS OF CRYSTALS OF ROMBIC MODIFICATION. Drug development & registration. 2018;(1):162-164. (In Russ.)

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ISSN 2305-2066 (Print)
ISSN 2658-5049 (Online)