Generic approach in a gradient elution HPLC method development that enables troubleshooting free method transfer
Authorized Users Only
2022
Authors
Milenković, Milan
Rašević, Marija

Otašević, Biljana

Zečević, Mira

Malenović, Anđelija

Protić, Ana

Article (Published version)

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Nowadays, method development is strongly focused on reducing time needed for method development and execution. This subject specially concerns gradient elution methods regarding the usual need for trouble shooting assistance with uncertain outcome during the method transfer from one laboratory to another. One of the main reasons for this situation is the dwell volume difference between HPLC systems. Therefore, the aim of this study was to propose a novel method development methodology that would integrate the dwell volumes differences in the optimization process. The proposed approach could be quite useful in industry that has insight in HPLC instruments planned to be used during the method life cycle. It was tested on the model mixture consisting of dabigatran etexilate mesylate and its nine impurities by use of perimental design methodology. Three different (U)HPLC instruments with high dwell volume differences were selected to challenge the methodology. Plan of experiments was defin...ed with Plackett-Burman design for screening phase and D-optimal design for optimization phase. Initial and final amount of organic modifier, time of the gradient elution and pH value of the aqueous phase were selected as variables nificant for the gradient programme profile and included in the optimization stage along with dwell volume values. The separation criteria s between critical peak pairs was selected as output for method optimization while indirect modelling together with Monte Carlo simulations enabled selection of optimal and robust chromatographic conditions. They included 24% (v/v) of initial amount of acetonitrile, 54% (v/v) of the final amount of acetonitrile, 15 min of gradient elution run time and pH value equal to 4.9. The proposed method was successfully validated, met all validation criteria and thus proved its utility.
Keywords:
(U)HPLC / Design of experiments / Dwell volume / Gradient elution method / Method optimization / Method transferSource:
Journal of Pharmaceutical and Biomedical Analysis, 2022, 207Publisher:
- Elsevier B.V.
Funding / projects:
DOI: 10.1016/j.jpba.2021.114367
ISSN: 0731-7085
WoS: 000706129700009
Scopus: 2-s2.0-85116113013
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Institution/Community
PharmacyTY - JOUR AU - Milenković, Milan AU - Rašević, Marija AU - Otašević, Biljana AU - Zečević, Mira AU - Malenović, Anđelija AU - Protić, Ana PY - 2022 UR - https://farfar.pharmacy.bg.ac.rs/handle/123456789/3977 AB - Nowadays, method development is strongly focused on reducing time needed for method development and execution. This subject specially concerns gradient elution methods regarding the usual need for trouble shooting assistance with uncertain outcome during the method transfer from one laboratory to another. One of the main reasons for this situation is the dwell volume difference between HPLC systems. Therefore, the aim of this study was to propose a novel method development methodology that would integrate the dwell volumes differences in the optimization process. The proposed approach could be quite useful in industry that has insight in HPLC instruments planned to be used during the method life cycle. It was tested on the model mixture consisting of dabigatran etexilate mesylate and its nine impurities by use of perimental design methodology. Three different (U)HPLC instruments with high dwell volume differences were selected to challenge the methodology. Plan of experiments was defined with Plackett-Burman design for screening phase and D-optimal design for optimization phase. Initial and final amount of organic modifier, time of the gradient elution and pH value of the aqueous phase were selected as variables nificant for the gradient programme profile and included in the optimization stage along with dwell volume values. The separation criteria s between critical peak pairs was selected as output for method optimization while indirect modelling together with Monte Carlo simulations enabled selection of optimal and robust chromatographic conditions. They included 24% (v/v) of initial amount of acetonitrile, 54% (v/v) of the final amount of acetonitrile, 15 min of gradient elution run time and pH value equal to 4.9. The proposed method was successfully validated, met all validation criteria and thus proved its utility. PB - Elsevier B.V. T2 - Journal of Pharmaceutical and Biomedical Analysis T1 - Generic approach in a gradient elution HPLC method development that enables troubleshooting free method transfer VL - 207 DO - 10.1016/j.jpba.2021.114367 ER -
@article{ author = "Milenković, Milan and Rašević, Marija and Otašević, Biljana and Zečević, Mira and Malenović, Anđelija and Protić, Ana", year = "2022", abstract = "Nowadays, method development is strongly focused on reducing time needed for method development and execution. This subject specially concerns gradient elution methods regarding the usual need for trouble shooting assistance with uncertain outcome during the method transfer from one laboratory to another. One of the main reasons for this situation is the dwell volume difference between HPLC systems. Therefore, the aim of this study was to propose a novel method development methodology that would integrate the dwell volumes differences in the optimization process. The proposed approach could be quite useful in industry that has insight in HPLC instruments planned to be used during the method life cycle. It was tested on the model mixture consisting of dabigatran etexilate mesylate and its nine impurities by use of perimental design methodology. Three different (U)HPLC instruments with high dwell volume differences were selected to challenge the methodology. Plan of experiments was defined with Plackett-Burman design for screening phase and D-optimal design for optimization phase. Initial and final amount of organic modifier, time of the gradient elution and pH value of the aqueous phase were selected as variables nificant for the gradient programme profile and included in the optimization stage along with dwell volume values. The separation criteria s between critical peak pairs was selected as output for method optimization while indirect modelling together with Monte Carlo simulations enabled selection of optimal and robust chromatographic conditions. They included 24% (v/v) of initial amount of acetonitrile, 54% (v/v) of the final amount of acetonitrile, 15 min of gradient elution run time and pH value equal to 4.9. The proposed method was successfully validated, met all validation criteria and thus proved its utility.", publisher = "Elsevier B.V.", journal = "Journal of Pharmaceutical and Biomedical Analysis", title = "Generic approach in a gradient elution HPLC method development that enables troubleshooting free method transfer", volume = "207", doi = "10.1016/j.jpba.2021.114367" }
Milenković, M., Rašević, M., Otašević, B., Zečević, M., Malenović, A.,& Protić, A.. (2022). Generic approach in a gradient elution HPLC method development that enables troubleshooting free method transfer. in Journal of Pharmaceutical and Biomedical Analysis Elsevier B.V.., 207. https://doi.org/10.1016/j.jpba.2021.114367
Milenković M, Rašević M, Otašević B, Zečević M, Malenović A, Protić A. Generic approach in a gradient elution HPLC method development that enables troubleshooting free method transfer. in Journal of Pharmaceutical and Biomedical Analysis. 2022;207. doi:10.1016/j.jpba.2021.114367 .
Milenković, Milan, Rašević, Marija, Otašević, Biljana, Zečević, Mira, Malenović, Anđelija, Protić, Ana, "Generic approach in a gradient elution HPLC method development that enables troubleshooting free method transfer" in Journal of Pharmaceutical and Biomedical Analysis, 207 (2022), https://doi.org/10.1016/j.jpba.2021.114367 . .
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