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Strategies for the detection, removal and elimination of antidepressants |
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| Kazim Köse, Demet Yalçin Kehribar, Vahabodin Goodarzi, Lokman Uzun |
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| International Journal of Environmental Analytical Chemistry. 2022; : 1 |
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Simultaneous determination of fluoxetine, venlafaxine, vortioxetine and their active metabolites in human plasma by LC–MS/MS using one-step sample preparation procedure |
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| Martin Kertys, Michaela Krivosova, Igor Ondrejka, Igor Hrtanek, Ingrid Tonhajzerova, Juraj Mokry |
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| Journal of Pharmaceutical and Biomedical Analysis. 2020; 181: 113098 |
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Ultrasound-assisted dispersive liquid–liquid microextraction coupled with field-amplified capillary electrophoresis for sensitive and quantitative determination of fluoxetine and norfluoxetine enantiomers in biological fluids |
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| Zheng Ren Wang, Ming Mu Hsieh |
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| Analytical and Bioanalytical Chemistry. 2020; 412(21): 5113 |
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Simultaneous quantification of vortioxetine, fluoxetine and their metabolites in rat plasma by UPLC–MS/MS |
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| Qiong Wang, Zhe Chen, Dingwen Chen, Shunbin Luo, Lingping Xie |
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| Biomedical Chromatography. 2020; 34(12) |
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Analytical methodologies for the stereoselective determination of fluoxetine: An overview |
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| Gabriel Hancu,Melania Cârcu-Dobrin,Monica Budau,Aura Rusu |
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| Biomedical Chromatography. 2017; : e4040 |
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Pharmacokinetics and Tissue Distribution Kinetics of Puerarin in Rats Using Indirect Competitive ELISA |
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| Hui Kong,Xueqian Wang,Rongfeng Shi,Yan Zhao,Jinjun Cheng,Xin Yan,Xiaoman Liu,Yongzhi Wang,Meiling Zhang,Qingguo Wang,Huihua Qu |
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| Molecules. 2017; 22(6): 939 |
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Determination of enantiomeric composition of fluoxetine by synchronous fluorescence spectrometry coupled with multivariate calibration in biological samples |
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| Roman Polácek,Pavel Májek,Jana Sádecká |
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| Acta Chimica Slovaca. 2016; 9(2) |
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Application of Fluorescence Spectrometry With Multivariate Calibration to the Enantiomeric Recognition of Fluoxetine in Pharmaceutical Preparations |
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| Roman Polácek,Pavel Májek,Katarína Hrobonová,Jana Sádecká |
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Simultaneous enantioselective quantification of fluoxetine and norfluoxetine in human milk by direct sample injection using 2-dimensional liquid chromatography–tandem mass spectrometry |
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| Joel Alvim-Jr.,Bianca Rebelo Lopes,Quezia Bezerra Cass |
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| Journal of Chromatography A. 2016; 1451: 120 |
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Capillary gas chromatographic separation of organic bases using a pH-adjusted basic water stationary phase |
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| Ernest Darko,Kevin B. Thurbide |
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| Journal of Chromatography A. 2016; 1465: 184 |
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An UPLC–MS/MS method for the analysis of glimepiride and fluoxetine in human plasma |
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| Xiangjun Qiu,Hong-wei Wang,Ye Yuan,Ying-fei Wang,Ming Sun,Xue-sun Huang |
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| Journal of Chromatography B. 2015; 980: 16 |
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Sensitive and high-throughput bioanalysis of fluoxetine and nor-fluoxetine in rabbit and human plasma using SPE-LC-MS/MS |
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| Yarra Durga Prasad,Yashpal S. Chhonker,Hardik Chandasana,Tulsankar Sachin Laxman,Veenu Bala,Sanjeev Kanojiya,Sandeep Ghatak,Rabi S. Bhatta |
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Simultaneous determination of glimepiride and fluoxetine in human plasma by ultra performance liquid chromatography tandem mass spectrometry |
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| Zhe Wang,Li Wang,Mengming Xia,Yiming Ji,Ren-ai Xu |
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