| Literature DB >> 30853983 |
Xinxin Ren1,2, Zhipeng Wang1, Yunlei Yun1, Guangyi Meng1,3, Xialan Zhang1,4, Huamin Ding1,5, Ying Xu1,6, Hansheng Bai1,7, Jing Liu1,8, Xia Li1,9, Shouhong Gao1, Lifeng Huang1, Wansheng Chen1.
Abstract
OBJECTIVE: To establish and validate a simple, sensitive, and rapid liquid chromatography tandem mass spectrometry (LC-MS/MS) method for the determination of methotrexate (MTX) and its major metabolite 7-hydroxy-methotrexate (7-OH-MTX) in human plasma.Entities:
Year: 2019 PMID: 30853983 PMCID: PMC6378003 DOI: 10.1155/2019/1536532
Source DB: PubMed Journal: Int J Anal Chem ISSN: 1687-8760 Impact factor: 1.885
Figure 1The chemical structures of MTX, 7-OH-MTX, and MTX-d3.
Figure 2The product ion plots and fragmentor structures of MTX, 7-OH-MTX, and IS in positive mode. (a) MTX; (b) 7-OH-MTX; (c) IS.
Figure 3The chromatograms of MTX, 7-OH-MTX, and IS under MRM mode: (a) blank sample; (b) blank plasma spiked with MTX (5 ng/mL); (c) blank plasma spiked with 7-OH-MTX (5 ng/mL); (d) blank plasma spiked with IS; (e) lower limit of quantification sample; (f) real sample collected at 44 h after the administration of MTX from one patient.
Recovery and matrix effect for the analytes in human plasma (n=3).
| Analyte | Nominal concentration (ng/mL) | Recovery | Matrix Effect | ||
|---|---|---|---|---|---|
| Mean ± SD | RSD | Mean ± SD | RSD | ||
| (%) | (%) | (%) | (%) | ||
| MTX | 10 | 92.76 ± 2.50 | 2.70 | 116.38 ± 1.33 | 1.15 |
| 500 | 97.87 ± 4.81 | 4.92 | 117.60 ± 7.07 | 6.01 | |
| 5000 | 92.47 ± 8.18 | 8.85 | 116.07 ± 1.26 | 1.08 | |
| 7-OH-MTX | 10 | 97.61 ± 4.69 | 4.80 | 102.96 ± 9.08 | 8.82 |
| 500 | 95.17 ± 3.51 | 3.69 | 97.90 ± 7.28 | 7.42 | |
| 5000 | 91.45 ± 4.27 | 4.67 | 99.57 ± 4.94 | 4.96 | |
| IS | 500 | 100.50 ± 6.16 | 6.13 | 116.24 ± 3.06 | 2.63 |
Linearity regression parameters for MTX and 7-OH-MTX (n=5).
| Analyte | Linearity Range | Calibration curve |
| LLOQ | Measured Concentration | Accuracy |
|---|---|---|---|---|---|---|
| MTX | 5~10000 |
| 0.9977 | 5 | 5.23 ± 0.21 | 4.57 |
| 7-OH-MTX | 5~10000 |
| 0.9978 | 5 | 5.12 ± 0.56 | 2.35 |
∗RE is expressed as [(mean measured concentration)/(nominal concentration)-1]×100%
Intraday and interday precision and accuracy of MTX and 7-OH-MTX in human plasma (n=5).
| Analyte | Nominal concentration | Intra-day(n = 5) | Inter-day(n = 15) | ||||
|---|---|---|---|---|---|---|---|
| Measured concentration | Precision | Accuracy | Measured concentration | Precision | Accuracy | ||
| MTX | 10 | 9.48 ± 0.23 | 2.47 | -5.22 | 9.30 ± 0.32 | 3.41 | -7.05 |
| 500 | 514.84 ± 4.56 | 0.89 | 2.97 | 515.67 ± 9.49 | 1.84 | 3.13 | |
| 5000 | 5265.35 ± 92.88 | 1.76 | 5.31 | 5305.42 ± 118.95 | 2.24 | 6.11 | |
| 7-OH-MTX | 10 | 9.69 ± 0.66 | 6.86 | -3.15 | 9.70 ± 0.62 | 6.40 | -3.04 |
| 500 | 456.43 ± 8.69 | 1.90 | -8.71 | 469.16 ± 14.98 | 3.19 | -6.17 | |
| 5000 | 4772.84 ± 267.84 | 5.61 | -4.54 | 4772.93 ± 189.12 | 3.96 | -4.54 | |
Stability of MTX and 7-OH-MTX in different conditions (n=5).
| Analyte | Nominal concentration | three freeze-thaw cycles | Short-term | Long-term | Bench-top (RE/%) |
|---|---|---|---|---|---|
| MTX | 10 | -5.60 | -5.99 | -2.27 | -0.03 |
| 500 | 4.02 | 1.56 | -7.29 | 5.10 | |
| 5000 | 4.58 | 4.99 | 6.83 | 8.22 | |
| 7-OH-MTX | 10 | -0.91 | -5.96 | -9.10 | 7.22 |
| 500 | -8.04 | -8.66 | -12.91 | -0.77 | |
| 5000 | -7.02 | -5.80 | -5.26 | 2.41 |
Figure 4Determined concentrations of MTX and 7-OH-MTX (Mean ± SD).