| Literature DB >> 35528661 |
Luya Li1, Xue Feng1, Yuting Chen1, Shenghao Li2, Yupeng Sun1, Lantong Zhang1.
Abstract
Eriocitrin, a main flavonoid in lemons, possesses strong antioxidant, lipid-lowering and anticancer activities and has long been used in food, beverages and wine. However, its metabolism in vivo and in vitro is still unclear. In this study, an efficient strategy was developed to detect and identify metabolites of eriocitrin by using ultra-high-performance liquid chromatography coupled with hybrid triple quadrupole time-of-flight mass spectrometry (UHPLC-Q-TOF-MS) based on online data acquisition and multiple data processing techniques. A total of 32 metabolites in vivo and 27 metabolites in vitro were obtained based on the above method. Furthermore, the main metabolic pathways of eriocitrin included reduction, hydrogenation, N-acetylation, ketone formation, oxidation, methylation, sulfate conjugation, glutamine conjugation, glycine conjugation, desaturation and demethylation to carboxylic acid. This study will lay a foundation for further studies on the metabolic mechanisms of eriocitrin. This journal is © The Royal Society of Chemistry.Entities:
Year: 2019 PMID: 35528661 PMCID: PMC9069865 DOI: 10.1039/c9ra03037a
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Summary of metabolites of eriocitrin in rat plasma, bile, urine and faeces samplesa
| Metabolites ID | Composition | Formula |
| Error (ppm) | R.T. (min) | Score (%) | MS/MS fragments | clog | Plasma | Bile | Urine | Faeces |
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| M1 | Loss of C12H20O9 [M − H]− | C15H12O6 | 287.0560 | −0.3 | 15.30 | 75.0 | 269.0458, 241.0489, 151.0032, 135.0447, 125.0242 | 1.84785 | − | − | +b | +a,b |
| M2 | Loss of C12H20O10 [M − H]− | C15H12O5 | 271.0615 | 1.3 | 16.99 | 75.0 | 253.0507, 243.0682, 227.0715, 135.0468 | 2.39694 | − | − | +a,b | +a,b |
| M3 | Loss of O and C12H20O10 [M − H]− | C15H12O4 | 255.0665 | 1.0 | 15.41 | 79.9 | 237.2257, 135.0064, 119.0480, 109.0795 | 2.2109 | − | − | +a | − |
| M4 | Loss of O and C12H20O10 [M − H]− | C15H12O4 | 255.0656 | −2.8 | 18.43 | 75.7 | 239.0307, 135.0082, 119.0495, 93.0350 | 2.99394 | − | − | +a | − |
| M5 | Loss of C12H20O9 + loss of CO [M − H]− | C14H12O5 | 259.0610 | −0.6 | 11.92 | 75.0 | 241.0487, 213.0566, 195.1086, 183.0853, 135.0081 | 1.59026 | − | − | +b | − |
| M6 | Loss of C12H20O10 + loss of water [M − H]− | C15H10O4 | 253.0507 | 0.3 | 18.18 | 75.0 | 225.0568, 209.0609, 181.0649, 119.0499 | 3.73694 | +a | +b | +a | +b |
| M7 | Loss of C12H20O10 + hydrogenation [M − H]− | C15H14O5 | 273.0772 | 1.3 | 16.57 | 75.0 | 245.0475, 227.1310, 209.1184, 165.1286, 135.0453 | 0.9752 | − | − | − | +a |
| M8 | Loss of O and C12H20O10 + hydrogenation [M − H]− | C15H14O4 | 257.0817 | −1.0 | 14.82 | 75.0 | 239.1684, 213.0584, 135.0454, 121.0226, 119.0503 | 1.462 | − | − | +a,b | − |
| M9 | Loss of O and C12H20O10 + hydrogenation [M − H]− | C15H14O4 | 257.0829 | 3.7 | 18.59 | 70.7 | 241.0750, 213.0224, 137.0357, 119.0472 | 1.5722 | − | − | +a,b | − |
| M10 | Loss of C12H20O10 + ketone formation [M − H]− | C15H10O6 | 285.0401 | −1.2 | 15.78 | 75.0 | 267.0283, 257.0428, 223.0290, 149.0245, 133.0294 | 1.48794 | − | − | +b | − |
| M11 | Loss of C6H10O4 + | C23H24O12 | 491.1167 | −5.8 | 15.07 | 65.5 | 473.0057, 367.1394, 287.1502, 125.0238 | 0.53447 | − | +a | +b | +a,b |
| M12 | Loss of C6H10O5 + | C23H24O11 | 475.1245 | −0.3 | 15.35 | 62.5 | 429.1966, 329.0920, 270.9431, 135.0438, 119.0481 | 0.0924672 | − | +a | − | − |
| M13 | Loss of O and C12H20O10 + di-acetylation of amines [M − H]− | C19H16O6 | 339.0869 | −0.7 | 11.63 | 75.3 | 310.9990, 254.9868, 218.9874, 119.0523 | 1.9929 | − | − | − | +b |
| M14 | Loss of O and C12H20O10 + di-acetylation of amines [M − H]− | C19H16O6 | 339.0871 | −1.1 | 11.85 | 75.5 | 311.0684, 254.9799, 177.2543, 161.0261 | 2.28159 | − | − | − | +b |
| M15 | Loss of C12H20O9 + oxidation [M − H]− | C15H12O7 | 303.0508 | −0.8 | 15.73 | 75.0 | 285.0379, 257.1777, 166.9987, 151.0021, 135.0440 | 1.13085 | − | − | +a | − |
| M16 | Loss of C6H10O4 + di-oxidation [M − H]− | C21H22O13 | 481.1023 | 7.3 | 15.44 | 49.3 | 463.2680, 435.2738, 345.2393, 319.0931 | −1.41361 | − | +a | − | − |
| M17 | Loss of C12H20O9 + di-oxidation [M − H]− | C15H12O8 | 319.0431 | −8.8 | 15.31 | 45.4 | 303.1599, 300.9846, 291.1541, 182.9905, 167.0013, 151.0379, 135.0470 | 0.533851 | − | − | − | +a |
| M18 | Methylation [M − H]− | C28H34O15 | 609.1825 | 0.0 | 13.20 | 75.0 | 301.0714, 286.0456, 254.5695, 165.0182, 151.0027 | −0.914082 | − | +a | − | − |
| M19 | Methylation [M − H]− | C28H34O15 | 609.1816 | −1.4 | 13.51 | 75.0 | 301.0708, 286.0455, 254.0735, 151.0023 | −0.290878 | − | +a | − | − |
| M20 | Loss of C6H10O5 + methylation [M − H]− | C22H24O10 | 447.1292 | −1.0 | 23.83 | 75.0 | 417.1150, 287.0628, 259.1729, 149.0006, 135.0779 | 0.662468 | − | +a,b | + a,b | − |
| M21 | Loss of C12H20O9 + methylation [M − H]− | C16H14O6 | 301.0718 | 0.2 | 16.81 | 75.0 | 287.0544, 285.0411, 165.0185, 135.0448 | 1.91062 | +a,b | +a | +a,b | +a,b |
| M22 | Loss of C12H20O9 + methylation [M − H]− | C16H14O6 | 301.0722 | 1.3 | 16.99 | 75.0 | 287.0544, 285.0411, 165.0185, 135.0448 | 2.37062 | +a,b | +a | +a,b | +a,b |
| M23 | Loss of C12H20O10 + methylation [M − H]− | C16H14O5 | 285.0763 | −2.0 | 14.06 | 75.0 | 266.9834, 239.0535, 149.0046, 135.0018 | 2.23859 | − | +a | − | − |
| M24 | Loss of O and C6H10O5 + methylation [M − H]− | C22H24O9 | 431.1382 | 7.9 | 23.43 | 60.3 | 398.9752, 351.1731, 297.1256, 134.9860, 133.0041, 119.0479 | 2.02247 | − | +b | +a,b | +b |
| M25 | Loss of O and C12H20O10 + methylation [M − H]− | C16H14O4 | 269.0828 | 3.1 | 16.37 | 59.7 | 253.0508, 241.1208, 225.0570, 223.1369, 179.1056, 135.0772, 132.9712 | 2.6571 | − | − | +a | − |
| M26 | Loss of C12H20O9 + oxidation and methylation [M − H]− | C16H14O7 | 317.0670 | 1.1 | 16.81 | 75.0 | 302.0435, 299.0569, 271.0616, 181.0141, 165.0187, 151.0036, 135.0447 | 1.30533 | − | − | +a,b | − |
| M27 | Loss of C12H20O9 + sulfate conjugation [M − H]− | C15H12O9S | 367.0125 | −1.0 | 13.47 | 50.0 | 349.2043, 321.1743, 287.0567, 269.0479, 231.1580, 151.0033, 135.0446 | −0.235379 | +a | − | +a,b | +a |
| M28 | Loss of C12H20O9 + sulfate conjugation [M − H]− | C15H12O9S | 367.0125 | −1.2 | 14.37 | 50.0 | 349.2022, 321.1694, 287.0567, 269.0451, 231.0159, 151.0032, 135.0446 | 0.224621 | +a | − | +a,b | +a |
| M29 | Loss of C12H20O9 + bis-sulfate conjugation [M − H]− | C15H12O12S2 | 446.9695 | −0.5 | 12.68 | 40.8 | 402.8724, 367.0135, 311.2528, 287.0566, 151.0041, 135.0434 | −3.72615 | +a | − | − | − |
| M30 | Loss of C12H20O10 + bis-sulfate conjugation [M − H]− | C15H12O11S2 | 430.9746 | −0.6 | 18.38 | 50.0 | 351.0581, 270.9703, 294.9822, 134.9922, 118.9923 | −0.62306 | − | +b | − | − |
| M31 | Loss of C12H20O10 + glutamine conjugation [M − H]− | C20H20N2O7 | 399.1164 | −8.4 | 13.97 | 59.1 | 353.1116, 335.0996, 291.1097, 263.0735 | 0.68033 | − | +a | − | − |
| M32 | Loss of O and C12H20O10 + glycine conjugation [M − H]− | C17H15NO5 | 312.0889 | 3.8 | 14.54 | 70.6 | 268.1001, 239.1068, 175.9600 | 2.62494 | − | +a | − | − |
+ detected; − undetected. aObtained by methanol precipitation protein; bobtained by ethyl acetate extraction; a + bobtained by methanol precipitation protein and ethyl acetate extraction.
Summary of metabolites of eriocitrin in rat liver microsomesa
| Metabolites ID | Composition | Formula |
| Error (ppm) | R.T. (min) | Score (%) | MS/MS fragments | clog | Blanks | Controls | Samples |
|---|---|---|---|---|---|---|---|---|---|---|---|
| N1 | Loss of C6H10O5 [M − H]− | C21H22O10 | 433.1159 | 4.4 | 15.87 | 85.9 | 417.0309, 353.1632, 271.0645, 135.2507 | 0.83947 | − | − | + |
| N2 | Loss of C12H20O9 [M − H]− | C15H12O6 | 287.0562 | 0.4 | 15.59 | 96.3 | 269.0391, 241.2241, 151.0039, 135.0451, 125.0236 | 1.84785 | − | − | + |
| N3 | Desaturation [M − H]− | C27H30O15 | 593.1508 | −0.6 | 12.59 | 95.4 | 549.1892, 447.0645, 285.0406, 151.0032 | −0.21048 | − | − | + |
| N4 | Loss of C6H10O4 + loss of water [M − H]− | C21H20O10 | 431.0976 | −1.7 | 14.49 | 76.6 | 399.0170, 387.0883, 313.0631, 269.0528 | 1.62817 | − | − | + |
| N5 | Loss of C6H10O5 + hydrogenation [M − H]− | C21H24O10 | 435.1320 | 5.4 | 15.66 | 67.4 | 389.1652, 298.9101, 273.0560, 153.0836, 135.0666 | −0.52288 | − | − | + |
| N6 | Loss of C6H10O4 + | C23H24O12 | 491.1161 | −7.0 | 15.42 | 64.0 | 473.2817, 445.1889, 287.1221, 125.0191 | 0.53447 | − | − | + |
| N7 | Loss of C6H10O5 + demethylation to carboxylic acid [M − H]− | C21H20O12 | 463.0868 | −3.0 | 12.86 | 83.0 | 417.1839, 271.0245, 258.9180, 151.0005 | −0.19068 | − | − | + |
| N8 | Loss of C6H10O5 + ketone formation [M − H]− | C21H20O11 | 447.0925 | −1.9 | 13.67 | 80.6 | 429.3176, 301.0338, 285.0364, 151.0020 | −0.06953 | − | − | + |
| N9 | Loss of C12H20O10 + ketone formation [M − H]− | C15H10O6 | 285.0406 | 0.4 | 15.85 | 84.6 | 267.1811, 257.0448, 239.0672, 223.0274, 119.0614 | 1.48794 | − | − | + |
| N10 | Oxidation [M − H]− | C27H32O16 | 611.1615 | −0.3 | 12.39 | 78.9 | 303.0505, 287.0565, 227.9309, 151.0036, 135.0468 | −1.45408 | − | − | + |
| N11 | Loss of C6H10O5 + methylation [M − H]− | C22H24O10 | 447.1328 | 6.9 | 23.89 | 65.2 | 417.1216, 285.1388, 148.9971, 135.0752 | 0.662468 | − | − | + |
| N12 | Loss of C12H20O9 + oxidation and methylation [M − H]− | C16H14O7 | 317.0694 | 8.6 | 16.61 | 70.4 | 299.0555, 273.0489, 180.9719, 165.0828 | 1.30533 | − | − | + |
+ detected; − undetected.
Summary of metabolites of eriocitrin in rat intestinal floraa
| Metabolites ID | Composition | Formula |
| Error (ppm) | R.T. (min) | Score (%) | MS/MS fragments | clog | Blanks | Controls | Samples |
|---|---|---|---|---|---|---|---|---|---|---|---|
| Q1 | Loss of C6H10O5 [M − H]− | C21H22O10 | 433.1166 | 6.0 | 15.96 | 65.0 | 417.2409, 387.2026, 271.0645, 151.3214 | 0.83947 | − | − | + |
| Q2 | Loss of C12H20O9 [M − H]− | C15H12O6 | 287.0561 | 0.1 | 15.74 | 89.3 | 269.0485, 241.2146, 151.0038, 135.0451, 125.0239 | 1.84785 | − | − | + |
| Q3 | Loss of C12H20O10 [M − H]− | C15H12O5 | 271.0611 | −0.3 | 17.02 | 82.1 | 253.1802, 243.0655, 227.0713, 135.0105 | 2.39694 | − | − | + |
| Q4 | Loss of O and C12H20O10 [M − H]− | C15H12O4 | 255.0675 | 1.0 | 15.52 | 79.9 | 237.2196, 135.0113, 119.0398, 109.0724 | 2.2109 | − | − | + |
| Q5 | Loss of O and C12H20O10 [M − H]− | C15H12O4 | 255.0659 | −2.8 | 18.49 | 75.7 | 239.0385, 135.0107, 119.0420, 93.0267 | 2.99394 | − | − | + |
| Q6 | Loss of C12H20O9 + loss of CO [M − H]− | C14H12O5 | 259.0608 | −1.5 | 11.79 | 75.0 | 241.0505, 213.0568, 195.1018, 183.0887, 135.0011 | 1.59026 | − | − | + |
| Q7 | Loss of C12H20O9 + loss of water [M − H]− | C15H10O5 | 269.0456 | 0.3 | 16.98 | 84.3 | 241.0545, 225.0605, 197.0598, 181.0638, 151.0020 | 3.18785 | − | − | + |
| Q8 | Loss of C12H20O10 + loss of water [M − H]− | C15H10O4 | 253.0505 | −0.4 | 18.33 | 75.3 | 225.0217, 209.0610, 181.0660, 119.0488 | 3.73694 | − | − | + |
| Q9 | Loss of C6H10O5 + hydrogenation [M − H]− | C21H24O10 | 435.1323 | 6.0 | 15.32 | 65.6 | 391.6900, 389.2463, 273.0863, 135.0793 | −0.5229 | − | − | + |
| Q10 | Loss of C12H20O10 + hydrogenation [M − H]− | C15H14O5 | 273.0766 | −1.0 | 16.33 | 75.0 | 245.0473, 227.1979, 209.1302, 165.0140, 135.0435 | 0.9752 | − | − | + |
| Q11 | Loss of O and C12H20O10 + hydrogenation [M − H]− | C15H14O4 | 257.0818 | −0.5 | 14.90 | 75.6 | 239.0718, 213.0933, 135.0455, 121.0304, 119.0492 | 1.462 | − | − | + |
| Q12 | Loss of O and C12H20O10 + hydrogenation [M − H]− | C15H14O4 | 257.0820 | 0.3 | 18.61 | 75.1 | 241.0505, 213.0933, 137.0228, 119.0498 | 1.5722 | − | − | + |
| Q13 | Loss of C12H20O10 + ketone formation [M − H]− | C15H10O6 | 285.0403 | −0.6 | 15.86 | 75.8 | 267.0287, 257.0427, 223.0309, 149.0227, 133.0291 | 1.48794 | − | − | + |
| Q14 | Loss of O and C12H20O10 + | C17H14O5 | 297.0762 | −2.2 | 14.81 | 74.4 | 281.0060, 264.9847, 253.0871, 160.9785, 135.0547 | 3.00994 | − | − | + |
| Q15 | Loss of O and C12H20O10 + di-acetylation of amines [M − H]− | C19H16O6 | 339.0872 | −0.6 | 11.52 | 75.3 | 311.0629, 297.1756, 254.9424, 219.0413, 119.0621 | 1.9929 | − | − | + |
| Q16 | Loss of O and C12H20O10 + di-acetylation of amines [M − H]− | C19H16O6 | 339.0872 | −0.8 | 11.70 | 75.5 | 311.1732, 297.2141, 254.9866, 177.8865, 161.0382 | 2.28159 | − | − | + |
| Q17 | Loss of C12H20O9 + oxidation [M − H]− | C15H12O7 | 303.0521 | 3.5 | 15.49 | 71.2 | 285.1301, 257.2180, 151.0760, 135.0594 | 1.13085 | − | − | + |
| Q18 | Loss of C12H20O10 + methylation [M − H]− | C16H14O5 | 285.0764 | −1.6 | 14.09 | 78.8 | 269.0475, 267.2314, 239.0588, 149.0227, 135.0007 | 2.23859 | − | − | + |
| Q19 | Loss of O and C12H20O10 + methylation [M − H]− | C16H14O4 | 269.0822 | 1.0 | 16.31 | 75.0 | 253.0590, 223.1247, 179.0093, 135.0695, 132.9781 | 2.6571 | − | − | + |
| Q20 | Loss of C12H20O9 + oxidation and methylation [M − H]− | C16H14O7 | 317.0671 | 1.3 | 16.70 | 75.6 | 302.0746, 299.0547, 271.0600, 180.9713, 165.0804, 151.0016, 135.0452 | 1.30533 | − | − | + |
+ detected; − undetected.
Fig. 2Structures of all metabolites of eriocitrin in vivo and in vitro ((A) in vivo, (B) in rat liver microsomes, (C) in rat intestinal flora. (a–d) Possible chemical structure).
Fig. 3Extracted ion chromatograms of all metabolites of eriocitrin in vivo and in vitro ((D1) and (D2) in vivo, (E) in rat liver microsomes, (F1) and (F2) in rat intestinal flora).
Fig. 1MS/MS spectrum of eriocitrin and its predominant fragmentation pathways.
Fig. 4MS/MS spectra and major proposed fragmentation patterns of M1 (G), M22 (H) and M28 (I).
Fig. 5Metabolic profile and proposed metabolic pathways of eriocitrin in vivo and in vitro ((J) in vivo, (K) in rat liver microsomes, (L) in rat intestinal flora).