Validation of a Column Liquid Chromatographic Method for the Analysis of Pramipexole and Its Five Impurities
Само за регистроване кориснике
2010
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In this paper, a previously optimized method for HPLC analysis of pramipexole and its impurities was subjected to method validation in accordance with official regulations. The optimized chromatographic conditions were as follows: mobile phase acetonitrile water phase [15 + 85, v/v, water phase contained 1% triethylamine (TEA), pH adjusted to 7.0 with orthophosphoric acid]; detection at 262 nm for pramipexole, BI-II 751 xx, BI-II 786 BS, BI-II 820 BS, and 2-aminobenzothiazole and at 326 nm for BI-II 546 CL; column temperature, 25 degrees C; and flow rate, 1 mL/min. Acetonitrile and TEA content, pH of the water phase, flow rate, column temperature, and column type were factors studied in robustness testing. According to the experimental plan defined by a Plackett-Burman design, five dummy variables were added in order to have 12 factors. As output, resolution factor was chosen. Robustness was assessed by graphical (half-normal probability plots and Pareto charts) and statistical (t-test...) methods. Also, nonsignificance intervals for significant factors were estimated, and limits for the system suitability test were determined. Finally, linearity, accuracy, and precision of the proposed HPLC method were defined. LOD and LOQ values for analyzed impurities were determined. The method was completely defined by these experiments.
Извор:
Journal of AOAC International, 2010, 93, 4, 1102-1112Издавач:
- AOAC Int, Gaithersburg
Финансирање / пројекти:
Институција/група
PharmacyTY - JOUR AU - Malenović, Anđelija AU - Jančić-Stojanović, Biljana AU - Vemić, Ana AU - Ivanović, Darko AU - Medenica, Mirjana PY - 2010 UR - https://farfar.pharmacy.bg.ac.rs/handle/123456789/1346 AB - In this paper, a previously optimized method for HPLC analysis of pramipexole and its impurities was subjected to method validation in accordance with official regulations. The optimized chromatographic conditions were as follows: mobile phase acetonitrile water phase [15 + 85, v/v, water phase contained 1% triethylamine (TEA), pH adjusted to 7.0 with orthophosphoric acid]; detection at 262 nm for pramipexole, BI-II 751 xx, BI-II 786 BS, BI-II 820 BS, and 2-aminobenzothiazole and at 326 nm for BI-II 546 CL; column temperature, 25 degrees C; and flow rate, 1 mL/min. Acetonitrile and TEA content, pH of the water phase, flow rate, column temperature, and column type were factors studied in robustness testing. According to the experimental plan defined by a Plackett-Burman design, five dummy variables were added in order to have 12 factors. As output, resolution factor was chosen. Robustness was assessed by graphical (half-normal probability plots and Pareto charts) and statistical (t-test) methods. Also, nonsignificance intervals for significant factors were estimated, and limits for the system suitability test were determined. Finally, linearity, accuracy, and precision of the proposed HPLC method were defined. LOD and LOQ values for analyzed impurities were determined. The method was completely defined by these experiments. PB - AOAC Int, Gaithersburg T2 - Journal of AOAC International T1 - Validation of a Column Liquid Chromatographic Method for the Analysis of Pramipexole and Its Five Impurities VL - 93 IS - 4 SP - 1102 EP - 1112 UR - https://hdl.handle.net/21.15107/rcub_farfar_1346 ER -
@article{ author = "Malenović, Anđelija and Jančić-Stojanović, Biljana and Vemić, Ana and Ivanović, Darko and Medenica, Mirjana", year = "2010", abstract = "In this paper, a previously optimized method for HPLC analysis of pramipexole and its impurities was subjected to method validation in accordance with official regulations. The optimized chromatographic conditions were as follows: mobile phase acetonitrile water phase [15 + 85, v/v, water phase contained 1% triethylamine (TEA), pH adjusted to 7.0 with orthophosphoric acid]; detection at 262 nm for pramipexole, BI-II 751 xx, BI-II 786 BS, BI-II 820 BS, and 2-aminobenzothiazole and at 326 nm for BI-II 546 CL; column temperature, 25 degrees C; and flow rate, 1 mL/min. Acetonitrile and TEA content, pH of the water phase, flow rate, column temperature, and column type were factors studied in robustness testing. According to the experimental plan defined by a Plackett-Burman design, five dummy variables were added in order to have 12 factors. As output, resolution factor was chosen. Robustness was assessed by graphical (half-normal probability plots and Pareto charts) and statistical (t-test) methods. Also, nonsignificance intervals for significant factors were estimated, and limits for the system suitability test were determined. Finally, linearity, accuracy, and precision of the proposed HPLC method were defined. LOD and LOQ values for analyzed impurities were determined. The method was completely defined by these experiments.", publisher = "AOAC Int, Gaithersburg", journal = "Journal of AOAC International", title = "Validation of a Column Liquid Chromatographic Method for the Analysis of Pramipexole and Its Five Impurities", volume = "93", number = "4", pages = "1102-1112", url = "https://hdl.handle.net/21.15107/rcub_farfar_1346" }
Malenović, A., Jančić-Stojanović, B., Vemić, A., Ivanović, D.,& Medenica, M.. (2010). Validation of a Column Liquid Chromatographic Method for the Analysis of Pramipexole and Its Five Impurities. in Journal of AOAC International AOAC Int, Gaithersburg., 93(4), 1102-1112. https://hdl.handle.net/21.15107/rcub_farfar_1346
Malenović A, Jančić-Stojanović B, Vemić A, Ivanović D, Medenica M. Validation of a Column Liquid Chromatographic Method for the Analysis of Pramipexole and Its Five Impurities. in Journal of AOAC International. 2010;93(4):1102-1112. https://hdl.handle.net/21.15107/rcub_farfar_1346 .
Malenović, Anđelija, Jančić-Stojanović, Biljana, Vemić, Ana, Ivanović, Darko, Medenica, Mirjana, "Validation of a Column Liquid Chromatographic Method for the Analysis of Pramipexole and Its Five Impurities" in Journal of AOAC International, 93, no. 4 (2010):1102-1112, https://hdl.handle.net/21.15107/rcub_farfar_1346 .