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Tyteca Eva

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Main Referenced Co-authors
Desmet, G. (13)
Guillarme, D. (5)
Eeltink, S. (4)
Haddad, P. R. (4)
Lognay, Georges  (4)
Main Referenced Keywords
Article (8); Chromatography (8); Forecasting (8); Liquid chromatography (7); Retention modeling (6);
Main Referenced Unit & Research Centers
CIRM - Centre Interdisciplinaire de Recherche sur le Médicament - ULiège [BE] (1)
Main Referenced Disciplines
Chemistry (23)
Pharmacy, pharmacology & toxicology (1)
Entomology & pest control (1)

Publications (total 24)

The most downloaded
368 downloads
Tyteca, E., Guillarme, D., & Desmet, G. (2014). Use of individual retention modeling for gradient optimization in hydrophilic interaction chromatography: Separation of nucleobases and nucleosides. Journal of Chromatography. A, 1368, 125-131. doi:10.1016/j.chroma.2014.09.065 https://hdl.handle.net/2268/208794

The most cited

87 citations (Scopus®)

Caparros Megido, R., Poeleart, C., Ernens, M., Liotta, M., Blecker, C., Danthine, S., Tyteca, E., Haubruge, E., Alabi, T., Bindelle, J., & Francis, F. (2018). Effect of household cooking techniques on the microbiological load and the nutritional quality of mealworms (Tenebrio molitor L. 1758). Food Research International. doi:10.1016/j.foodres.2018.01.002 https://hdl.handle.net/2268/218077

Dispas, A., Jambo, H., André, S., Tyteca, E., & Hubert, P. (January 2018). Supercritical fluid chromatography: a promising alternative to current bioanalytical techniques. Bioanalysis, 10 (2), 107-124. doi:10.4155/bio-2017-0211
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Glineur, A., Barbera, B., Nott, K., Carbonnelle, P., Ronkart, S., Lognay, G., & Tyteca, E. (2018). Trace analysis of estrogenic compounds in surface and groundwater by ultra high performance liquid chromatography-tandem mass spectrometry as pyridine-3-sulfonyl derivatives. Journal of Chromatography. A, 1534, 43-54. doi:10.1016/j.chroma.2017.12.042
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Tyteca, E., De Vos, J., Tassi, M., Cook, K., Liu, X., Kaal, E., & Eeltink, S. (2018). Generic approach to the method development of intact protein separations using hydrophobic interaction chromatography. Journal of Separation Science, 41 (5), 1017-1024. doi:10.1002/jssc.201701202
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Caparros Megido, R., Poeleart, C., Ernens, M., Liotta, M., Blecker, C., Danthine, S., Tyteca, E., Haubruge, E., Alabi, T., Bindelle, J., & Francis, F. (2018). Effect of household cooking techniques on the microbiological load and the nutritional quality of mealworms (Tenebrio molitor L. 1758). Food Research International. doi:10.1016/j.foodres.2018.01.002
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Glineur, A., Ronkart, S., Nott, K., Carbonnelle, P., Lognay, G., & Tyteca, E. (22 June 2017). UHPLC-ESI-MS/MS quantitation of natural estrogens in aqueous matrices as pyridine-3-sulfonyl derivatives [Paper presentation]. HPLC 2017.

Vanderplanck, M., Glauser, G., Tyteca, E., Michez, D., & Praz, C. (19 June 2017). Chromatographic analysis of alkaloids in Aconitum pollen : towards new insights in plant protection mechanisms [Paper presentation]. 45th International Symposium on High-Performance Liquid Phase Separations and Hyphenated Techniques, Prague, Czechia.

Glineur, A., Ronkart, S., Nott, K., Lognay, G., & Tyteca, E. (07 February 2017). Development and validation of an UHPLC-ESI-MS/MS method to quantify estrogenic compounds as pyridine-3-sulfonyl derivatives in aqueous matrices [Paper presentation]. National Symposium for Applied Biological Sciences (NSABS).

Vanderplanck, M., Vancraenenbroeck, S., Lognay, G., & Tyteca, E. (02 February 2017). Comparison of performance of state-of-the-art polar ionic liquid and traditional non-polar GC column for analysis of essential oils [Paper presentation]. 8th International Symposium on the Separation and Characterization of Natural and Synthetic Macromolecules, Amsterdam, Netherlands.

Park, S. H., Haddad, P. R., Talebi, M., Tyteca, E., Amos, R. I. J., Szucs, R., Dolan, J. W., & Pohl, C. A. (2017). Retention prediction of low molecular weight anions in ion chromatography based on quantitative structure-retention relationships applied to the linear solvent strength model. Journal of Chromatography. A, 1486, 68-75. doi:10.1016/j.chroma.2016.12.048
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Park, S. H., Talebi, M., Amos, R. I. J., Tyteca, E., Haddad, P. R., Szucs, R., Pohl, C. A., & Dolan, J. W. (2017). Towards a chromatographic similarity index to establish localised Quantitative Structure-Retention Relationships for retention prediction. II Use of Tanimoto similarity index in ion chromatography. Journal of Chromatography. A. doi:10.1016/j.chroma.2017.02.054
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Tyteca, E., Talebi, M., Amos, R., Park, S. H., Taraji, M., Wen, Y., Szucs, R., Pohl, C. A., Dolan, J. W., & Haddad, P. R. (2017). Towards a chromatographic similarity index to establish localized quantitative structure-retention models for retention prediction: Use of retention factor ratio. Journal of Chromatography. A, 1486, 50-58. doi:10.1016/j.chroma.2016.09.062
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Tyteca, E., De Vos, J., Vankova, N., Cesla, P., Desmet, G., & Eeltink, S. (2016). Applicability of linear and nonlinear retention-time models for reversed-phase liquid chromatography separations of small molecules, peptides, and intact proteins. Journal of Separation Science, 39 (7), 1249-1257. doi:10.1002/jssc.201501395
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Tyteca, E., Veuthey, J.-L., Desmet, G., Guillarme, D., & Fekete, S. (2016). Computer assisted liquid chromatographic method development for the separation of therapeutic proteins. Analyst, 141 (19), 5488-5501. doi:10.1039/c6an01520d
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Tyteca, E., Bieber, S., Letzel, T., & Desmet, G. (2016). Possibilities and Limitations of Computer-Assisted Method Development in HILIC: A Case Study. Chromatographia, 1-11. doi:10.1007/s10337-016-3127-8
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Tyteca, E., Desfontaine, V., Desmet, G., & Guillarme, D. (2015). Possibilities of retention modeling and computer assisted method development in supercritical fluid chromatography. Journal of Chromatography. A, 1381, 219-228. doi:10.1016/j.chroma.2014.12.077
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Tyteca, E., Park, S. H., Shellie, R. A., Haddad, P. R., & Desmet, G. (2015). Computer-assisted multi-segment gradient optimization in ion chromatography. Journal of Chromatography. A, 1381, 101-109. doi:10.1016/j.chroma.2014.12.085
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Tyteca, E., & Desmet, G. (2015). On the inherent data fitting problems encountered in modelingretention behavior of analytes with dual retention mechanism. Journal of Chromatography. A, 1403, 81-95. doi:10.1016/j.chroma.2015.05.031
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Vaňková, N., De Vos, J., Tyteca, E., Desmet, G., Edge, T., Česlová, L., Česla, P., & Eeltink, S. (2015). Effect of gradient steepness on the kinetic performance limits and peak compression for reversed-phase gradient separations of small molecules. Journal of Chromatography. A, 1409, 152-158. doi:10.1016/j.chroma.2015.07.061
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Tyteca, E., Guillarme, D., & Desmet, G. (2014). Use of individual retention modeling for gradient optimization in hydrophilic interaction chromatography: Separation of nucleobases and nucleosides. Journal of Chromatography. A, 1368, 125-131. doi:10.1016/j.chroma.2014.09.065
Peer Reviewed verified by ORBi

Tyteca, E., Périat, A., Rudaz, S., Desmet, G., & Guillarme, D. (2014). Retention modeling and method development in hydrophilic interaction chromatography. Journal of Chromatography. A, 1337, 116-127. doi:10.1016/j.chroma.2014.02.032
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Tyteca, E., Vanderlinden, K., Favier, M., Clicq, D., Cabooter, D., & Desmet, G. (2014). Enhanced selectivity and search speed for method development using one-segment-per-component optimization strategies. Journal of Chromatography. A, 1358, 145-154. doi:10.1016/j.chroma.2014.06.097
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Vaast, A., Tyteca, E., Desmet, G., Schoenmakers, P. J., & Eeltink, S. (2014). Gradient-elution parameters in capillary liquid chromatography for high-speed separations of peptides and intact proteins. Journal of Chromatography. A, 1355, 149-157. doi:10.1016/j.chroma.2014.06.010
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Tyteca, E., & Desmet, G. (2014). A universal comparison study of chromatographic response functions. Journal of Chromatography. A, 1361, 178-190. doi:10.1016/j.chroma.2014.08.014
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Tyteca, E., Liekens, A., Clicq, D., Fanigliulo, A., Debrus, B., Rudaz, S., Guillarme, D., & Desmet, G. (2012). Predictive elution window stretching and shifting as a generic search strategy for automated method development for liquid chromatography. Analytical Chemistry, 84 (18), 7823-7830. doi:10.1021/ac301331g
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