Liquid Chromatography Coupled with Linear Ion Trap Hybrid OrbitrapMass Spectrometry for Determination of Alkaloids in Sinomeniumacutum
Abstract
:1. Introduction
2. Results and Discussion
2.1. Detection of Morphinan Alkaloids
2.1.1. Fragmentation Analysis of Standard Sinomenine
2.1.2. Detection of Sinomenine Analogues
2.2. Detection of Aporphines and Benzylisoquinolines
2.3. Detection of Protoberberines
2.4. Other Alkaloids
3. Materials and Methods
3.1. Materials and Chemicals
3.2. Sample Preparation
3.3. Chromatographic Separation Conditions
3.4. MS Conditions
3.5. Simulation
4. Conclusions
Supplementary Materials
Author Contributions
Funding
Conflicts of Interest
References
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Sample Availability: Samples of the compounds are available from the authors. |
No. | tR (min) | m/z | Formula ([M + H]+) | ppm | Identification |
---|---|---|---|---|---|
1 | 1.97 | 492.2225 | C25H34O9N | −0.308 | Sinomenine glucoside |
2 | 2.00 | 346.1650 | C19H24O5N | 0.111 | Sinomenine N-oxide |
3 | 2.05 | 434.1818 | C22H28O8N | 0.817 | Higenamine glucoside |
4 | 2.74 | 522.2331 | C26H36O10N | −0.283 | Cephatonine glucoside |
5 | 3.21 | 346.1643 | C19H24O5N | −1.789 | Unknown |
6 | 3.76 | 318.1699 | C18H24O4N | −0.065 | N-demethyl dihydrosinomenine |
7 1 | 4.48 | 272.1285 | C16H18O3N | 0.330 | Higenamine |
8 | 4.88 | 384.1209 | C18H23O6NCl | 0.256 | Acutumidine |
9 | 4.93 | 344.1854 | C20H26O4N | −0.215 | N-methyl sinomenine |
10 | 4.99 | 316.1545 | C18H22O4N | 0.145 | N-demethyl sinomenine |
11 | 5.59 | 332.1854 | C19H26O4N | −0.827 | Dihydrosinomenine |
12 | 5.69 | 448.1973 | C23H30O8N | 0.707 | Coclaurine glucoside |
13 | 5.78 | 478.2079 | C24H32O9N | 1.656 | 3′-hydroxy-N-methyl coclaurine glucoside |
14 1 | 6.61 | 330.1700 | C19H24O4N | 0.167 | Sinomenine |
15 | 6.74 | 398.1362 | C19H25O6NCl | −0.657 | Acutumine |
16 | 7.64 | 316.1543 | C18H22O4N | −0.110 | 3′-hydroxy-N-methylcoclaurine |
17 | 7.94 | 314.1394 | C18H20O4N | 2.182 | Feruloyltyramine |
18 | 8.62 | 476.2283 | C25H34O8N | 0.407 | Magnocurarine4′-O-glucopyranoside |
19 | 8.92 | 358.1646 | C20H24O5N | −0.319 | Hydroxyl magnoflorine |
20 | 9.23 | 360.1438 | C19H22O6N | −0.334 | 1-hydroxy-10-oxo-sinomenine |
21 | 9.25 | 358.1646 | C20H24O5N | −0.319 | Hydroxyl magnoflorine |
22 | 9.56 | 286.1442 | C17H20O3N | 0.400 | Coclaurine |
23 | 9.57 | 657.3165 | C38H45O8N2 | −0.780 | Disinomenine |
24 | 9.69 | 360.1802 | C20H26O5N | −0.309 | Cephatonine |
25 | 9.79 | 300.1595 | C18H22O3N | 0.030 | N-methylcoclaurine |
26 | 9.86 | 298.1442 | C18H20O3N | 1.442 | Stepharine |
27 | 9.98 | 358.1647 | C20H24O5N | −0.229 | Hydroxyl magnoflorine |
28 | 10.47 | 344.1852 | C20H26O4N | −1.147 | Tembetarine |
29 | 10.56 | 328.1547 | C19H22O4N | 0.325 | Unknown |
30 | 10.70 | 370.1646 | C21H24O5N | −0.863 | Unknown |
31 1 | 10.91 | 342.1698 | C20H24O4N | −0.185 | Magnoflorine |
32 | 11.16 | 328.1545 | C19H22O4N | 0.145 | Unknown |
33 | 11.52 | 330.1699 | C19H24O4N | −0.196 | Isosinomenine |
34 | 11.59 | 328.1547 | C19H22O4N | 0.991 | Sinoacutine |
35 | 11.85 | 360.1437 | C19H22O6N | −1.177 | Unknown |
36 | 11.96 | 340.1543 | C20H22O4N | −0.102 | N-Methyl bulbocapnine |
37 | 12.19 | 314.1753 | C19H24O3N | 0.795 | Magnocurarine |
38 | 12.44 | 342.1698 | C20H24O4N | −0.54 | Laurifoline |
39 | 13.98 | 356.1856 | C21H26O4N | −0.238 | N-methyl isocorydine |
40 | 14.62 | 390.1548 | C20H24O7N | −0.406 | Unknown |
41 | 14.67 | 368.1492 | C21H22O5N | −0.215 | Oxypalmatine |
42 | 15.34 | 322.1078 | C19H16O4N | 1.166 | Menisporphine |
43 | 15.43 | 324.1231 | C19H18O4N | 0.048 | Stepharanine |
44 | 15.74 | 322.1076 | C19H16O4N | 0.793 | Menisporphine |
45 | 15.77 | 356.1854 | C21H26O4N | −0.603 | N-methyl corydine |
46 | 16.15 | 374.1596 | C20H24O6N | −0.625 | Unknown |
47 | 17.77 | 338.1386 | C20H20O4N | −0.221 | Dehydrocorydalmine or its isomer |
48 | 18.15 | 338.1387 | C20H20O4N | −0.043 | Dehydrocorydalmine or its isomer |
49 1 | 18.42 | 338.1384 | C20H20O4N | −0.842 | Jatrorrhizine |
50 | 18.42 | 336.1231 | C20H18O4N | 0.314 | Pseudoberberine |
51 1 | 18.74 | 338.1383 | C20H20O4N | −1.108 | Columbamin |
52 1 | 21.38 | 352.1543 | C21H22O4N | −0.098 | Palmatine |
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Shan, J.; Zhao, X.; Shen, C.; Ji, J.; Xu, J.; Wang, S.; Xie, T.; Tong, W. Liquid Chromatography Coupled with Linear Ion Trap Hybrid OrbitrapMass Spectrometry for Determination of Alkaloids in Sinomeniumacutum. Molecules 2018, 23, 1634. https://doi.org/10.3390/molecules23071634
Shan J, Zhao X, Shen C, Ji J, Xu J, Wang S, Xie T, Tong W. Liquid Chromatography Coupled with Linear Ion Trap Hybrid OrbitrapMass Spectrometry for Determination of Alkaloids in Sinomeniumacutum. Molecules. 2018; 23(7):1634. https://doi.org/10.3390/molecules23071634
Chicago/Turabian StyleShan, Jinjun, Xia Zhao, Cunsi Shen, Jianjian Ji, Jianya Xu, Shouchuan Wang, Tong Xie, and Wenjun Tong. 2018. "Liquid Chromatography Coupled with Linear Ion Trap Hybrid OrbitrapMass Spectrometry for Determination of Alkaloids in Sinomeniumacutum" Molecules 23, no. 7: 1634. https://doi.org/10.3390/molecules23071634
APA StyleShan, J., Zhao, X., Shen, C., Ji, J., Xu, J., Wang, S., Xie, T., & Tong, W. (2018). Liquid Chromatography Coupled with Linear Ion Trap Hybrid OrbitrapMass Spectrometry for Determination of Alkaloids in Sinomeniumacutum. Molecules, 23(7), 1634. https://doi.org/10.3390/molecules23071634