Spectrophotometric determination of rosuvastatin in pharmaceutical formulations using quinalizarin

ABSTRACT This work presents the development of a methodology based on the formation of a charge transfer complex between quinalizarin and rosuvastatin, allowing for the spectrophotometric determination of rosuvastatin at 579 nm. The factors involved in the sensitivity of the technique were studied (...

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Main Authors: Monica Força Lima, Ricardo Jorgensen Cassella, Wagner Felippe Pacheco
Format: Article
Language:English
Published: Universidade de São Paulo 2017-07-01
Series:Brazilian Journal of Pharmaceutical Sciences
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1984-82502017000300603&lng=en&tlng=en
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spelling doaj-f93199cb8f1f48dfb519e3f6acd2af342020-11-24T22:42:42ZengUniversidade de São PauloBrazilian Journal of Pharmaceutical Sciences2175-97902017-07-0153310.1590/s2175-97902017000300075S1984-82502017000300603Spectrophotometric determination of rosuvastatin in pharmaceutical formulations using quinalizarinMonica Força LimaRicardo Jorgensen CassellaWagner Felippe PachecoABSTRACT This work presents the development of a methodology based on the formation of a charge transfer complex between quinalizarin and rosuvastatin, allowing for the spectrophotometric determination of rosuvastatin at 579 nm. The factors involved in the sensitivity of the technique were studied (nature and proportion of the solvent, reaction time, pH of aqueous phase and quinalizarin concentration). The proposed spectrophotometric procedures were validated with respect to linearity, ranges, precision, accuracy, detection and quantification limits. Calibration curves of the formed color products showed good linear relationships over the concentration range of 6-15 mg L-1. The proposed method has been successfully applied, which can be confirmed by interference test (comparison between the standard curves and addition of analyte), method precision (RSD 2.3% to 6 mg L-1), and by accuracy (statistically equivalent results between the proposed method and a chromatographic method of reference).http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1984-82502017000300603&lng=en&tlng=enRosuvastatin/spectrophotometric determinationRosuvastatin/charge transfer complexQuinalizarin/charge transfer complexPharmaceutical formulations.
collection DOAJ
language English
format Article
sources DOAJ
author Monica Força Lima
Ricardo Jorgensen Cassella
Wagner Felippe Pacheco
spellingShingle Monica Força Lima
Ricardo Jorgensen Cassella
Wagner Felippe Pacheco
Spectrophotometric determination of rosuvastatin in pharmaceutical formulations using quinalizarin
Brazilian Journal of Pharmaceutical Sciences
Rosuvastatin/spectrophotometric determination
Rosuvastatin/charge transfer complex
Quinalizarin/charge transfer complex
Pharmaceutical formulations.
author_facet Monica Força Lima
Ricardo Jorgensen Cassella
Wagner Felippe Pacheco
author_sort Monica Força Lima
title Spectrophotometric determination of rosuvastatin in pharmaceutical formulations using quinalizarin
title_short Spectrophotometric determination of rosuvastatin in pharmaceutical formulations using quinalizarin
title_full Spectrophotometric determination of rosuvastatin in pharmaceutical formulations using quinalizarin
title_fullStr Spectrophotometric determination of rosuvastatin in pharmaceutical formulations using quinalizarin
title_full_unstemmed Spectrophotometric determination of rosuvastatin in pharmaceutical formulations using quinalizarin
title_sort spectrophotometric determination of rosuvastatin in pharmaceutical formulations using quinalizarin
publisher Universidade de São Paulo
series Brazilian Journal of Pharmaceutical Sciences
issn 2175-9790
publishDate 2017-07-01
description ABSTRACT This work presents the development of a methodology based on the formation of a charge transfer complex between quinalizarin and rosuvastatin, allowing for the spectrophotometric determination of rosuvastatin at 579 nm. The factors involved in the sensitivity of the technique were studied (nature and proportion of the solvent, reaction time, pH of aqueous phase and quinalizarin concentration). The proposed spectrophotometric procedures were validated with respect to linearity, ranges, precision, accuracy, detection and quantification limits. Calibration curves of the formed color products showed good linear relationships over the concentration range of 6-15 mg L-1. The proposed method has been successfully applied, which can be confirmed by interference test (comparison between the standard curves and addition of analyte), method precision (RSD 2.3% to 6 mg L-1), and by accuracy (statistically equivalent results between the proposed method and a chromatographic method of reference).
topic Rosuvastatin/spectrophotometric determination
Rosuvastatin/charge transfer complex
Quinalizarin/charge transfer complex
Pharmaceutical formulations.
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1984-82502017000300603&lng=en&tlng=en
work_keys_str_mv AT monicaforcalima spectrophotometricdeterminationofrosuvastatininpharmaceuticalformulationsusingquinalizarin
AT ricardojorgensencassella spectrophotometricdeterminationofrosuvastatininpharmaceuticalformulationsusingquinalizarin
AT wagnerfelippepacheco spectrophotometricdeterminationofrosuvastatininpharmaceuticalformulationsusingquinalizarin
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