| Literature DB >> 32471141 |
Anna Petruczynik1, Karol Wróblewski2,3, Krzysztof Wojtanowski4, Tomasz Mroczek4, Dariusz Juchnowicz5, Hanna Karakuła-Juchnowicz6,7, Tomasz Tuzimski8.
Abstract
Background: Determination of psychotropic drugs in clinical study is significant, and the establishment of methodologies for these drugs in biological matrices is essential for patients' safety. The search for new methods for their detection is one of the most important challenges of modern scientific research. The methods for analyzing of psychotropic drugs and their metabolites in different biological samples should be based on combining a very efficient separation technique including high-performance liquid chromatography (HPLC), with a sensitive detection method and effectively sample preparation methods. Objective: Retention, peaks symmetry and system efficiency of vortioxetine on Hydro RP, Polar RP, HILIC A (with silica stationary phase), HILIC-B (with aminopropyl stationary phase), and ACE HILIC-N (with polyhydroxy stationary phase and SCX columns were investigated. Various mobile phases containing methanol or acetonitrile as organic modifiers and different additives were also applied to obtained optimal retention, peaks shape, and systems efficiency. The best chromatographic procedure was used for simultaneous analysis of vortioxetine and its metabolites in human serum, urine and saliva samples.Entities:
Keywords: HPLC-DAD; HPLC-QTOF-MS; SPE; lipophilicity; saliva; serum; urine; vortioxetine
Mesh:
Substances:
Year: 2020 PMID: 32471141 PMCID: PMC7321162 DOI: 10.3390/molecules25112483
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Values of tR, log k, AS, and N/m obtained for vortioxetine in various chromatographic systems.
| Stationary Phase | Mobile Phase | tR | As | N/m |
|---|---|---|---|---|
| HILIC A | 90% ACN and formate buffer pH 3.8 | 4.89 | 1.01 | 394,510 |
| HILIC A | 90% ACN 0.1 M HCOONH4 | 6.26 | 0.91 | 10,290 |
| HILIC B | 90% ACN and formate buffer pH 3.8 | 3.06 | 1.17 | 183,320 |
| HILIC B | 90% ACN 0.1 M HCOONH4 | 3.10 | 1.01 | 88,800 |
| HILIC N | 90% ACN and formate buffer pH 3.8 | 3.49 | 1.08 | 136,170 |
| HILIC N | 90% ACN 0.1 M HCOONH4 | 3.45 | 1.01 | 153,230 |
| SCX | 25% ACN, and formate buffer 2.5 | 3.15 | 1.15 | 15,810 |
| SCX | 25% ACN and formate buffer pH 3.8 | 6.93 | 1.02 | 32,260 |
| Hydro RP | 80% MeOH, acetate buffer at pH 3.6 0.01 M OSNa | 4.74 | 0.77 | 13,170 |
| Hydro RP | 75% MeOH acetate buffer at pH 3.6 0.01 M OSNa | 8.72 | 0.80 | 19,370 |
| Hydro RP | 70% MeOH acetate buffer at H 3.6 0.01 M OSNa | 17.41 | 0.80 | 27,540 |
| Hydro RP | 65% MeOH acetate buffer at pH 3.6 0.01 M OSNa | 39.40 | 0.89 | 36,800 |
| Hydro RP | 60% MeOH acetate buffer at pH 3.6 0.01 M OSNa | 90.92 | 0.95 | 51,910 |
| Polar RP | 80% MeOH acetate buffer at pH 3.6 0.01 M OSNa | 3.66 | 1.12 | 18,890 |
| Polar RP | 75% MeOH acetate buffer at pH 3.6 0.01 M OSNa | 5.00 | 0.96 | 18,060 |
| Polar RP | 70% MeOH acetate buffer at pH 3.6 0.01 M OSNa | 7.34 | 0.92 | 19,190 |
| Polar RP | 65% MeOH acetate buffer at pH 3.6 0.01 M OSNa | 12.59 | 0.91 | 22,290 |
| Polar RP | 60% MeOH acetate buffer at pH 3.6 0.01 M OSNa | 25.80 | 0.94 | 27,890 |
| Polar RP | 55% MeOH acetate buffer at pH 3.6 0.01 M OSNa | 59.32 | 1.01 | 36,550 |
Recovery, extraction efficiency and matrix effect obtained for vortioxetine.
| Sample | Concentration Added (ng/mL) | Recovery (%) | Extraction Efficiency (%) | Matrix Effect (%) |
|---|---|---|---|---|
| Serum | 40 | 105.26 | 111.05 | 105.51 |
| Urine | 40 | 76.11 | 81.41 | 106.96 |
| Saliva | 40 | 101.93 | 75.62 | 74.19 |
Figure 1HPLC-DAD chromatogram obtained for vortioxetine standard at concentration 20 µg/mL.
Chemical structure of vortioxetine and its metabolites.
| Compound | Structure |
|---|---|
| Vortioxetine |
|
| Lu AA34442 |
|
| Lu AE22404 |
|
Figure 2HPLC-DAD chromatogram obtained for serum sample from patent treated by vortioxetine. The sample was taken 24 h after drug administration.
Figure 3HPLC-DAD chromatogram obtained for urine sample from patent treated by vortioxetine. The sample was taken 24 h after drug administration.
Figure 4HPLC-DAD chromatogram obtained for saliva sample from patient treated by vortioxetine. The sample was taken (A). 1 h and (B). 24 h after drug administration.
Retention time, formula, molecular ion, fragment ion for vortioxetine and its metabolites, biological samples where vortioxetine/metabolites were detected.
| No | Tentatively Assignment | Retention Time [min] | Formula | Molecular Ion | Fragment Ions | Biological Samples Where Vortioxetine/ Metabolite was Detected | |||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Serum | Saliva | Urine | |||||||||||
| 1 h | 2 h | 4 h | 8 h | 10 h | 24 h | ||||||||
| Vortioxetine | 15.09 | C18H23N2S+ | 299.1557 | 150.0341; 109.0068 | + | + | + | + | + | + | + | + | |
| 1 | LU AE22404 | 3.36 | C18H23N2OS+ | 315.1539 | 191.0625; 120.0780 | + | + | + | + | + | + | + | + |
| 2 | LU AA34443 (M0) | 11.24 | C18H23N2O2S+ | 329.1366 | 286.0877; 150.0367; | - | - | - | - | - | - | - | + |
+ detected, - not detected.
Figure 5LC-MS chromatogram obtained for serum sample from patient treated with vortioxetine.
Figure 6LC-MS chromatogram obtained for urine sample from patient treated with vortioxetine.
Figure 7LC-MS chromatogram obtained for saliva sample from patient treated with vortioxetine. The sample was taken (A). 1 h and (B). 24 h after drug administration.
List of tested columns and their physicochemical properties.
| Column | Functional Group | Lenght (mm) | I.D. (mm) | Endcaped | Particle Size (μm) | Pore Size (Å) | Surface Area (m2/g) | Carbon Load (%) |
|---|---|---|---|---|---|---|---|---|
| Synergi Polar RP | Ether-linked phenyl | 150 | 4.6 | Proprietary (polar group) | 4 | 80 | 475 | 11 |
| Synergi Hydro-RP | Octadecyl (C18) | 150 | 4.6 | Proprietary (polar group) | 4 | 80 | 475 | 19 |
| ACE HILIC-A | Proprietary SIL | 150 | 4.6 | NO | 5 | 100 | 300 | - |
| ACE HILIC-B | Proprietary Aminopropyl | 150 | 4.6 | NO | 5 | 100 | 300 | 4 |
| ACE HILIC-C | Proprietary Polyhydroxy | 150 | 4.6 | NO | 5 | 100 | 300 | 7 |
| Luna SCX | Benzene Sulfonic Acid | 150 | 4.6 | NO | 5 | 100 | 400 | 0.55 Sulfur Load |
| Chromatographic System | Log | |
|---|---|---|
| Column | Mobile Phase | |
| Hydro RP | MeCN + 0.1% HCOOH | 4.06 |
| MeOH + 0.1% HCOOH | 4.73 | |
| MeOH, acetic buffer at pH 3.5 + 0.025 M DEA | 4.00 | |
| MeCN, acetic buffer at pH 3.5 + 0.025 M DEA | 6.52 | |
| MeOH, acetic buffer at pH 3.6 + 0.01 M OSA-Na | 6.10 | |
| Polar RP | MeOH, acetic buffer at pH 3.5 + 0.025 M DEA | 4.25 |
| MeCN, acetic buffer at pH 3.5 + 0.025 M DEA | 4.23 | |
| MeOH b.oct. pH 3.6 0.01 M OSA-Na | 4.65 | |
| Average | 4.82 | |
| Program | Log |
|---|---|
| miLogP | 4.08 |
| ALOGPS | 4.51 |
| ChemAxon | 4.76 |
| ALogP | 3.86 |
| CLOGP | 4.92 |
| XLogP3-AA | 4.20 |
| cLogP | 4.76 |
| Average | 4.44 |