| Literature DB >> 30577466 |
Gianluca Gilardoni1, Jorge Ramírez2, Mayra Montalván3, Willan Quinche4, Jackeline León5, Lita Benítez6, Vladimir Morocho7, Nixon Cumbicus8, Carlo Bicchi9.
Abstract
In this research, the leaves of Lepechinia heteromorpha (Briq.) Epling, Lepechinia radula (Benth.) Epling and Lepechinia paniculata (Kunth) Epling have been collected in order to perform a phytochemical study. The first species was distilled to obtain a novel essential oil (EO), while the others were submitted to ethyl acetate extraction and secondary metabolite isolation. The chemical composition of the EO from L. heteromorpha has been investigated by Gas Chromatography-Mass Spectrometry (GC-MS) and Gas Chromatography with Retention Indices (GC(RI)), identifying 25 constituents. A major compound, (-)-ledol (21.2%), and a minor compound, (-)-caryophyllene oxide (1.0%), were isolated from the EO and their structures confirmed by Nuclear Magnetic Resonance (NMR) spectroscopy. Other major constituents of the EO were viridiflorene (27.3%), (E,E)-α-farnesene (1.4%), spirolepechinene and (E)-β-caryophyllene (7.1% each), allo-aromadendrene (6.1%), camphor (1.7%), limonene (1.3%) and β-phellandrene (4.6%). The enantiomeric composition of the EO monoterpene fraction was also studied, determining the enantiomeric excess and distribution of α-pinene, limonene, β-phellandrene and camphor. The ethyl acetate extract of L. radula and L. paniculata were fractionated by column chromatography. Spathulenol, angustanoic acid E and 5-hydroxy-4',7-dimethoxy flavone were isolated from L. radula extract; ledol, guaiol and (-)-carnosol were found in L. paniculata.Entities:
Keywords: 5-hydroxy-4′,7-dimethoxy flavone; Ecuador; Lamiaceae; angustanoic acid E; carnosol; caryophyllene oxide; essential oil; guaiol; ledol; spathulenol
Year: 2018 PMID: 30577466 PMCID: PMC6358884 DOI: 10.3390/plants8010001
Source DB: PubMed Journal: Plants (Basel) ISSN: 2223-7747
Chemical analysis of L. heteromorpha essential oil (EO) on a DB-5ms column.
| Reference LRIs | Calculated LRIs | Compounds | % 1 | σ |
|---|---|---|---|---|
| 932 | 931 | α-Pinene | 1.2 | 0.71 |
| 946 | 946 | Camphene | 2.4 | 0.45 |
| 969 | 976 | β-Pinene | 0.4 | 0.18 |
| 988 | 988 | Myrcene | 0.4 | 0.22 |
| 1003 | 1003 | Mentha-1(7),8-diene | 0.4 | 0.23 |
| 1007 | 1005 | 0.2 | 0.13 | |
| 1020 | 1015 | 0.5 | 0.26 | |
| 1022 | 1017 | 1.0 | 0.01 | |
| 1024 | 1029 | Limonene | 1.3 | 0.41 |
| 1025 | 1029 | β-Phellandrene | 4.6 | 1.02 |
| 1141 | 1145 | Camphor | 1.7 | 0.46 |
| 1400 | 1404 | Sibirene | 3.2 | 0.32 |
| 1417 | 1411 | ( | 7.1 | 0.77 |
| 1439 | 1439 | Aromadendrene | 1.0 | 0.18 |
| 1449 | 1445 | Spirolepechinene | 7.1 | 0.93 |
| 1458 | 1451 | 6.1 | 1.00 | |
| 1452 | 1453 | α-Humulene | 1.2 | 0.19 |
| 1496 | 1484 | Valencene | 1.6 | 0.23 |
| - | 1487 | Undetermined (MW 204) | 3.7 | 1.84 |
| 1492 | 1489 | 0.3 | 0.16 | |
| 1496 | 1497 | Viridiflorene | 27.3 | 1.80 |
| 1505 | 1503 | ( | 1.4 | 0.41 |
| - | 1509 | Undetermined (MW 204) | 0.2 | 0.12 |
| 1511 | 1516 | δ-Amorphene | 1.0 | 0.98 |
| 1559 | 1549 | Germacrene B | 1.6 | 0.83 |
| 1592 2 | 1593 | Caryophyllene oxide | 1.0 | 0.59 |
| 1602 | 1601 | (−)-Ledol 3 | 21.2 | 4.32 |
| Monoterpene hydrocarbons | 12.4 | |||
| Oxygenated monoterpenes | 1.7 | |||
| Sesquiterpene hydrocarbons | 62.8 | |||
| Oxygenated sesquiterpenes | 22.2 | |||
| Others | - | |||
| Total identified | 99.1 | |||
1 % expressed as g/100g, 2 Linear Retention Indices (LRI) from [24], 3 Identification confirmed by 1H and 13C NMR.
Enantioselective analysis of L. heteromorpha EO on diacethyl terbutylsilyl-β-cyclodextrin column.
| LRIs | Enantiomers | Enantiomeric Distribution (%) | |
|---|---|---|---|
| 917 | ( | 8.7 | 82.6 |
| 926 | ( | 91.3 | |
| 1054 | ( | 100.0 | 100.0 |
| 1072 | (+)-β-phellandrene | 88.3 | 76.6 |
| 1091 | (−)-β-phellandrene | 11.7 | |
| 1262 | ( | 100.0 | 100.0 |
Figure 1Enantioselective GC pattern of L. heteromorpha EO on diacethyl terbutylsilyl-β-cyclodextrin capillary column.