Simulataneous determination of nimesulide and its impurities in pharmaceutical formulations by reversed-phase high-performance liquid chromatography
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A simple, rapid and reproducible reversed-phase high-performance liquid chromatography method for the analysis of nimesulide and its impurities both in the bulk drug and pharmaceutical formulations is reported. The method is suitable for monitoring the stability of nimesulide. The presence of nimesulide impurities C (2- phenoxyaniline) and D (2- phenoxy4- nitroaniline) was observed. The best separation was achieved using an Agilent Zorbax Extend C-18 column ( 150 x 4.6 mm, particle size 5 mu m) at 40 C and flow rate of 1.0 mLmin(-1). The analytes were monitored at 230 nm. The mobile phase consisted of acetonitrile - triethylamine (TEA) - water (45:0.5:54.5 v/v/v), adjusted to pH 5.2 with formic acid. Under these conditions the retention times were of 7.11, 7.98 and 8.66 min for nimesulide, D and C, respectively. The resolution of nimesulide and impurity D was 3.20 and that of impurity D and impurity C 2.40, indicating that the compounds were well separated. Evaluation of linearity, acc...uracy, precision, selectivity, sensitivity and robustness of the method produced satisfactory results. The developed method was successfully applied to assay nimesulide in different solid pharmaceutical formulations.
Ključne reči:
nimesulide / impurities / degradation products / RP-HPLCIzvor:
Acta Chimica Slovenica, 2007, 54, 3, 583-590Izdavač:
- Slovensko Kemijsko Drustvo, Ljubljana
Finansiranje / projekti:
Institucija/grupa
PharmacyTY - JOUR AU - Tubić, Biljana AU - Ivković, Branka AU - Zečević, Mira AU - Vladimirov, S. PY - 2007 UR - https://farfar.pharmacy.bg.ac.rs/handle/123456789/992 AB - A simple, rapid and reproducible reversed-phase high-performance liquid chromatography method for the analysis of nimesulide and its impurities both in the bulk drug and pharmaceutical formulations is reported. The method is suitable for monitoring the stability of nimesulide. The presence of nimesulide impurities C (2- phenoxyaniline) and D (2- phenoxy4- nitroaniline) was observed. The best separation was achieved using an Agilent Zorbax Extend C-18 column ( 150 x 4.6 mm, particle size 5 mu m) at 40 C and flow rate of 1.0 mLmin(-1). The analytes were monitored at 230 nm. The mobile phase consisted of acetonitrile - triethylamine (TEA) - water (45:0.5:54.5 v/v/v), adjusted to pH 5.2 with formic acid. Under these conditions the retention times were of 7.11, 7.98 and 8.66 min for nimesulide, D and C, respectively. The resolution of nimesulide and impurity D was 3.20 and that of impurity D and impurity C 2.40, indicating that the compounds were well separated. Evaluation of linearity, accuracy, precision, selectivity, sensitivity and robustness of the method produced satisfactory results. The developed method was successfully applied to assay nimesulide in different solid pharmaceutical formulations. PB - Slovensko Kemijsko Drustvo, Ljubljana T2 - Acta Chimica Slovenica T1 - Simulataneous determination of nimesulide and its impurities in pharmaceutical formulations by reversed-phase high-performance liquid chromatography VL - 54 IS - 3 SP - 583 EP - 590 UR - https://hdl.handle.net/21.15107/rcub_farfar_992 ER -
@article{ author = "Tubić, Biljana and Ivković, Branka and Zečević, Mira and Vladimirov, S.", year = "2007", abstract = "A simple, rapid and reproducible reversed-phase high-performance liquid chromatography method for the analysis of nimesulide and its impurities both in the bulk drug and pharmaceutical formulations is reported. The method is suitable for monitoring the stability of nimesulide. The presence of nimesulide impurities C (2- phenoxyaniline) and D (2- phenoxy4- nitroaniline) was observed. The best separation was achieved using an Agilent Zorbax Extend C-18 column ( 150 x 4.6 mm, particle size 5 mu m) at 40 C and flow rate of 1.0 mLmin(-1). The analytes were monitored at 230 nm. The mobile phase consisted of acetonitrile - triethylamine (TEA) - water (45:0.5:54.5 v/v/v), adjusted to pH 5.2 with formic acid. Under these conditions the retention times were of 7.11, 7.98 and 8.66 min for nimesulide, D and C, respectively. The resolution of nimesulide and impurity D was 3.20 and that of impurity D and impurity C 2.40, indicating that the compounds were well separated. Evaluation of linearity, accuracy, precision, selectivity, sensitivity and robustness of the method produced satisfactory results. The developed method was successfully applied to assay nimesulide in different solid pharmaceutical formulations.", publisher = "Slovensko Kemijsko Drustvo, Ljubljana", journal = "Acta Chimica Slovenica", title = "Simulataneous determination of nimesulide and its impurities in pharmaceutical formulations by reversed-phase high-performance liquid chromatography", volume = "54", number = "3", pages = "583-590", url = "https://hdl.handle.net/21.15107/rcub_farfar_992" }
Tubić, B., Ivković, B., Zečević, M.,& Vladimirov, S.. (2007). Simulataneous determination of nimesulide and its impurities in pharmaceutical formulations by reversed-phase high-performance liquid chromatography. in Acta Chimica Slovenica Slovensko Kemijsko Drustvo, Ljubljana., 54(3), 583-590. https://hdl.handle.net/21.15107/rcub_farfar_992
Tubić B, Ivković B, Zečević M, Vladimirov S. Simulataneous determination of nimesulide and its impurities in pharmaceutical formulations by reversed-phase high-performance liquid chromatography. in Acta Chimica Slovenica. 2007;54(3):583-590. https://hdl.handle.net/21.15107/rcub_farfar_992 .
Tubić, Biljana, Ivković, Branka, Zečević, Mira, Vladimirov, S., "Simulataneous determination of nimesulide and its impurities in pharmaceutical formulations by reversed-phase high-performance liquid chromatography" in Acta Chimica Slovenica, 54, no. 3 (2007):583-590, https://hdl.handle.net/21.15107/rcub_farfar_992 .