| Literature DB >> 31878211 |
Agnieszka Bodalska1, Adam Kowalczyk1, Maciej Włodarczyk1, Izabela Fecka1.
Abstract
The pharmacological activity of peppermint leaf (Menthae piperitae folium) for medical use is mainly attributed to the presence of essential oil, which, according to the European Pharmacopoeia (Ph. Eur.), should constitute not less than 12 mL/kg of raw material. The content of polyphenols in peppermint-based preparations, except peppermint leaf dry extract, has not yet been considered as an essential parameter in the pharmacopeial assessment of peppermint quality. This study concerns the evaluation of the presence of representatives of polyphenolic compounds in 23 commercial peppermint tinctures (ethanolic extracts) purchased in pharmacies in Poland. The non-volatile polyphenolic fraction was investigated, and the presence of flavonoids and phenolic acids was quantified. High performance liquid chromatography coupled with a diode-array detector (HPLC-DAD) and an electrospray ionization mass spectrometer (U(H)PLC-ESI-MS) were used in the experiment. The study showed that eriocitrin, luteolin-7-O-rutinoside, and rosmarinic acid were the main polyphenolic components of the peppermint tinctures, as previously reported for peppermint leaf. Despite this, the research shows the extremely diverse content of the mentioned compounds in analyzed commercial medicinal products. In light of these results, it seems that the pharmacopeial assessment for the peppermint leaf (Ph. Eur.) and peppermint tincture (Polish Pharmacopoeia (FP)) requires correction and supplementation.Entities:
Keywords: Mentha × piperita; caffeetannins; flavonoids; herbal medicinal product; peppermint tincture; phenolic acids; polyphenols
Mesh:
Substances:
Year: 2019 PMID: 31878211 PMCID: PMC6983185 DOI: 10.3390/molecules25010069
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Caffeic acid derivatives.
Figure 2Flavonoids.
Figure 3Other compounds.
LC-HRMS, UV-Vis, and MS/MS properties of compounds identified in peppermint tinctures.
| Peak No. | tR (min) | [M-H]− ( | Err. (ppm) | [M-H]− (formula) | MS/MS Fragments ( | UVmax (nm) | Identification Proposal | Reference |
|---|---|---|---|---|---|---|---|---|
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| 197.0454 | 0.9 | C9H9O5 | 181, 137 | - | Salvianic acid A (danshensu) | [ |
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| 179.0353 | −1.7 | C9H7O4 | - | 290, 325 | Caffeic acid | s |
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| 537.1048 | −1.8 | C27H21O12 | 295 | 285, 315, 343 | Salvianolic acid J/W or other isomer | [ |
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| 717.1442 | 2.6 | C36H29O16 | 475, 431, 365, 339, 321, 295 | 280, 320 | Salvianolic acid E/L or other isomer | [ |
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| 717.1440 | 3.0 | C36H29O16 | 339, 321, 295 | 285, 335 | Salvianolic acid E/L or other isomer | [ |
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| 359.0783 | −3.1 | C18H15O8 | 191, 161 | 290, 328 | Rosmarinic acid | s |
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| 537.1040 | −0.3 | C27H21O12 | 493, 295, 185 | 254, 290, 310 | Lithospermic acid A | s |
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| 717.1455 | 0.9 | C36H29O16 | 519, 339, 321, 295 | - | Lithospermic acid B (salvianolic acid B) | rm [ |
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| 717.1392 | 9.7 | C36H29O16 | - | - | Lithospermic acid B isomer | |
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| 491.0988 | -0.8 | C26H19O10 | 311, 293 | 320 | Salvianolic acid C | [ |
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| 715.1293 | 1.6 | C36H27O16 | 337, 319, 293 | 280, 340 | Didehydrosalvianolic acid B | [ |
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| 387.1092 | −1.8 | C20H19O8 | 359 | - | Ethyl rosmarinate | [ |
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| 637.1053 | −1.0 | C27H25O18 | 285 | 265, 345 | Luteolin- | [ |
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| 593.1513 | −0.1 | C27H29O15 | 285 | 265, 350 | Luteolin-7- | s |
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| 447.0930 | 0.6 | C21H19O11 | 285 | 270, 345 | Luteolin-7- | s |
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| 461.0716 | 2.0 | C21H17O12 | 285 | 270, 348 | Luteolin-7- | s |
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| 577.1558 | 0.8 | C27H29O14 | 269 | 268, 335 | Apigenin-7- | |
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| 607.1668 | 0.0 | C28H30O15 | 299, 284 | 270, 340 | Diosmetin-7- | s |
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| 431.0979 | 1.2 | C21H19O10 | - | 267, 335 | Apigenin-7- | s |
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| 445.0762 | 3.2 | C21H17O11 | - | 267, 335 | Apigenin-7- | |
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| 461.0723 | 0.5 | C21H17O12 | - | 280, 320 | Tetrahydroxyflavone- | |
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| 489.1037 | 0.2 | C23H21O12 | - | - | Luteolin-7- | |
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| 285.0403 | 0.5 | C15H9O6 | - | - | Luteolin | s |
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| 269.0456 | −0.2 | C15H9O5 | - | - | Apigenin | s |
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| 595.1672 | −0.6 | C27H31O15 | 287 | 285 | Eriodictyol-7- | s |
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| 449.1088 | 0.2 | C21H21O11 | 287 | 285 | Eriodictyol-7- | [ |
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| 463.0862 | 4.3 | C21H19O12 | 287 | Eriodictyol-7- | [ | |
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| 579.1709 | 1.7 | C27H31O14 | 271 | 280 | Naringenin-7- | s |
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| 609.1819 | 1.0 | C28H33O15 | 301, 286 | 285 | Hesperetin-7- | s |
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| 287.0563 | −0.5 | C15H11O6 | - | - | Eriodictyol | s |
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| 271.0618 | −2.1 | C15H11O5 | - | - | Naringenin | s |
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| 301.0725 | −2.3 | C16H13O6 | - | - | Hesperetin | s |
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| 305.0700 | 0.1 | C12H17O7S | - | 285, 320 | Tuberonic acid sulphate | [ |
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| 387.1661 | −0.4 | C18H27O9 | - | 280, 315 | Tuberonic acid | [ |
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| 563.2124 | 1.8 | C28H35O12 | 387 | 280, 320 | Medioresinol | [ |
s—identification conducted using authentic standards; rm, reference material—Salvia miltiorrhiza; In other cases, appropriate literature reference used in identification is indicated. LC-HRMS, liquid chromatography-high resolution mass spectrometry.
Analysis of fragmentation behaviors of trimeric and tetrameric caffeetannins.
| Pseudo-Molecular Ion: | Fragment Ion | Interpretation | Reference | |
|---|---|---|---|---|
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| 519 [M-198 − H]− | [M-198 − H]− | [ | |
| 475 [M-242 − H]− | [M-198-44 − H]−
| [ | ||
| 431 [M-286 − H]− | [M-198-44-44 − H]− | |||
| 339 [M-378 − H]− | [M-198-180 − H]− | [ | ||
| 321 [M-396 − H]− | [M-198-198 − H]− | |||
| 295 [M-422 − H]− | [M-198-180-44 − H]− | [ | ||
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| 337 [M-378 − H]− | [M-198-180 − H]− | [ | |
| 319 [M-396 − H]− | [M-198-198 − H]− | |||
| 293 [M-422 − H]− | [M-198-180-44 − H]− | |||
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| 493 [M-44 − H]− | [M-44 − H]− | [ | |
| 295 [M-242 − H]− | [M-198-44 − H]− | |||
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| 311 [M-180 − H]− | [M-180 − H]− | [ | |
| 293 [M-198 − H]− | [M-198 − H]− | |||
| Neutral loss of: | ||||
| 198 Da → | salvianic acid A = danshensu (C9H10O5) |
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| 180 Da → | dehydroxysalvianic acid A residue = dehydroxydanshensu residue (C9H8O4) |
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| 44 Da → | CO2 | |||
| 18 Da → | H2O | |||
Figure 4Proposed MS/MS fragmentation pathway of caffeetannins (e.g., salvianolic acid E (tetramer)).
Validation parameters of standard compounds for high performance liquid chromatography coupled with a diode-array detector (HPLC-DAD) analysis.
| Standard | Calibration Equation |
| Linear Range (µg/mL) | LOD (µg/mL) | LOQ (µg/mL) | Working Wavelength |
|---|---|---|---|---|---|---|
| Flavones | ||||||
| Luteolin | y = 1224.6x − 0.1205 | 0.9990 | 10–300 | 0.245 | 0.817 | 360 |
| Luteolin-7- | y = 615.69x − 0.9761 | 0.9996 | 10–250 | 0.487 | 1.624 | 360 |
| Luteolin-7- | y = 457.74x − 0.9438 | 0.9998 | 10–250 | 0.655 | 2.185 | 360 |
| Isorhoifolin | y = 875.93x − 0.2331 | 0.9996 | 10–250 | 0.343 | 1.142 | 360 |
| Flavanones | ||||||
| Narirutin | y = 294.76x + 0.675 | 0.9998 | 10–250 | 1.018 | 3.393 | 280 |
| Eriodictyol | y = 330.28x + 0.2099 | 0.9998 | 10–250 | 0.908 | 3.028 | 280 |
| Eriocitrin | y = 239.18x + 0.8709 | 0.9992 | 10–300 | 1.254 | 4.189 | 280 |
| Hesperidin | y = 480.26x + 0.2943 | 0.9995 | 10–300 | 0.625 | 2.082 | 280 |
| Phenolic acids—Caffeetannins | ||||||
| Caffeic acid | y = 1824.74x − 4.64 | 0.9993 | 10–300 | 0.164 | 0.548 | 320 |
| Rosmarinic acid | y = 581.91x + 1.99 | 0.9991 | 10–300 | 0.515 | 1.718 | 320 |
LOD, limit of detection; LOQ, limit of quantification.
Figure 5Heatmap of content of determined polyphenolic compounds in peppermint tinctures. CA, caffeic acid; RA, rosmarinic acid; Er, eriocitrin; Lr, luteolin rutinoside; Lgr, luteolin glucuronide (luteolin glucuronide + luteolin glucoside calculated as Lgr); Nr, narirutin; Ir, isorhoifolin; Hr, hesperidin (hesperdin + diosmin calculated as Hr); E, eriodictyol; L, luteolin; SPA, sum of polyphenolic acids; SF, sum of flavonoids; SPP, sum of polyphenols; higher concentration: red, lower concentration: green.
Content of determined polyphenolic compounds in peppermint tinctures (mg/mL).
| No. | CA. | RA | SPA | Er | Lr 1 | Lgr | Nr | Ir | Hr 2 | E | L | SF | SPP |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 1 | 0.01 a |
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| 1.63 c | 0.27 b | 0.03 d | 0.00 | 0.00 | 0.09 b | 0.01 c | 0.00 | 2.03 c | 2.48 c |
| 2 | 0.01 a | 0.22 b | 0.23 b | 1.70 a | 0.71 a | 0.04 b | 0.08 b | 0.00 | 0.09 c | 0.01 c | 0.00 | 2.61 a | 2.84 a |
| 3 | 0.01 a | 0.01 c | 0.02 b | 0.18 a |
| 0.00 | 0.00 | 0.00 | 0.01 a | 0.00 | 0.00 | 0.26 b | 0.28 b |
| 4 | 0.02 a | 0.21 b | 0.22 b | 1.76 b | 0.66 b | 0.03 d | 0.17 c | 0.00 | 0.05 c | 0.01 b | 0.01 c | 2.68 b | 2.91 b |
| 5 | 0.02 b | 0.38 b | 0.39 b | 1.46 b | 0.36 b |
| 0.07 c | 0.00 |
| 0.01 | 0.01 a | 2.06 a | 2.45 a |
| 6 | 0.02 b | 0.24 a | 0.26 a | 1.04 a | 0.32 b | 0.02 d | 0.09 b | 0.00 | 0.07 b |
| 0.01 d | 1.54 b | 1.80 a |
| 7 | 0.02 b | 0.22 a | 0.23 a |
| 0.67 a | 0.03 b | 0.19 d | 0.00 | 0.06 a | 0.00 | 0.01 c | 2.72 a | 2.95 a |
| 8 | 0.02 b | 0.22 b | 0.24 b | 1.76 b |
| 0.04 c |
| 0.00 | 0.08 b | 0.00 | 0.01 a |
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| 9 | 0.02 a | 0.13 a | 0.15 a | 0.99 b | 0.21 a | 0.02 d | 0.03 b | 0.01 c | 0.06 c | 0.01 d | 0.00 | 1.33 b | 1.48 c |
| 10 | 0.01 a | 0.13 b | 0.14 b | 1.09 a | 0.35 a | 0.04 c | 0.07 a |
| 0.04 b | 0.01 a | 0.00 | 1.62 a | 1.76 a |
| 11 | 0.02 a | 0.15 a | 0.16 a | 0.72 a | 0.24 a | 0.04 a | 0.02 b | 0.01 a | 0.05 b | 0.06 a | 0.00 | 1.14 a | 1.31 a |
| 12 | 0.01 a | 0.11 a | 0.12 d | 0.82 d | 0.25 c | 0.02 a | 0.03 a | 0.01 a | 0.04 a |
| 0.02 a | 1.29 a | 1.41 c |
| 13 | 0.00 | 0.02 a | 0.02 a | 0.19 d | 0.08 a | 0.01 a | 0.01 a | 0.00 | 0.01 a | 0.03 a | 0.01 a | 0.34 c | 0.36 c |
| 14 | 0.00 |
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| 0.07 a | 0.01 a | 0.00 | 0.00 | 0.01 a | 0.03 a | 0.02 a |
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| 15 | 0.01 a | 0.08 a | 0.09 d | 0.48 c | 0.17 c | 0.02 a |
| 0.00 | 0.04 a | 0.03 a | 0.03 a | 0.77 b | 0.86 b |
| 16 | 0.00 | 0.02 a | 0.02 a | 0.16 a | 0.10 c | 0.01 a | 0.01 a | 0.00 | 0.02 a | 0.04 a | 0.04 a | 0.38 c | 0.40 c |
| 17 | 0.00 | 0.04 a | 0.04 a | 0.34 c | 0.08 c | 0.01 a | 0.01 a | 0.00 | 0.02 a | 0.04 a |
| 0.50 c | 0.54 d |
| 18 | 0.00 | 0.03 a | 0.03 a | 0.18 a | 0.12 a | 0.01 a | 0.01 a | 0.00 | 0.02 a | 0.05 a | 0.04 a | 0.43 a | 0.46 a |
| 19 | 0.00 | 0.01 a | 0.01 a | 0.10 c | 0.07 c | 0.01 a | 0.01 a | 0.00 |
| 0.03 a | 0.00 | 0.23 c | 0.24 c |
| 20 | 0.01 a | 0.25 c | 0.26 c | 0.64 c | 0.22 c | 0.03 a | 0.02 a | 0.01 a | 0.04 a | 0.03 a | 0.01 a | 1.00 c | 1.26 b |
| 21 | 0.01 a | 0.20 d | 0.21 d | 0.94 c | 0.24 c | 0.03 a | 0.02 a | 0.01 a | 0.08 c | 0.04 a | 0.01 a | 1.37 d | 1.58 d |
| 22 | 0.00 | 0.06 d | 0.06 d | 0.44 c | 0.15 d | 0.02 a | 0.01 a | 0.00 | 0.03 a | 0.05 c | 0.01 a | 0.71 d | 0.77 c |
| 23 | 0.00 | 0.02 a | 0.02 d | 0.13 a | 0.09 c | 0.01 a | 0.01 a | 0.00 | 0.01 a | 0.06 a |
| 0.35 c | 0.37 b |
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1 Lgr(+Lg) calculated as Lgr, 2 Hr(+Dr) calculated as Hr, a less than 1% CV b less than 3% CV, c less than 5% CV, d less than 7% CV; n = 3.
Figure 6Typical HPLC chromatograms of peppermint tincture at 280 (blue line), 320 (red line), and 360 nm (green line). CA, caffeic acid; Er, eriocitrin; Lr, luteolin rutinoside; Lgr, luteolin glucuronide; Lg, luteolin glucoside; Nr, narirutin; Ir, isorhoifolin; Hr, hesperidin; Dr, diosmin; RA, rosmarinic acid; E, eriodictyol; L, luteolin.