| Literature DB >> 29844792 |
Mohammad-Reza Delnavazi1, Maryam Soleimani1, Abbas Hadjiakhoondi1, Narguess Yass1.
Abstract
Prangos ferulacea (L.) Lindl. (Apiaceae) is a medicinal plant distributed in Mediterranean regions, Caucasia and southwest of Asia. In the present study phytochemical constituents of the extract obtained from the aerial parts of P. ferulacea were investigated using various chromatographic and spectroscopic methods. Essential oil of the plant aerial parts was also analyzed using GC-MS. Five phenolic derivatives, isoimperatorin (1), ferudenol (2), caffeic acid glucosyl ester (3), isorhamnetin-3-O-β-D-glucopyranoside (4) and quercetin-3-O-β-D-glucopyranoside (5) were isolated from the aerial parts of P. ferulacea and their structures were elucidated using 1H-NMR, 13C-NMR, EI-MS and UV spectral analyses. Twenty-seven compounds were also identified in the essential oil of plant aerial parts, of which β-pinene (43.1%), α-pinene (22.1%) and -δ3-carene (16.9%) were characterized as main compounds. The results of this study introduce P. ferulacea as a source of potentially bioactive phenolic compounds and suggest it as an appropriate candidate for further studies.Entities:
Keywords: Apiaceae; Prangos ferulacea; coumarin; essential oil; flavonoid
Year: 2017 PMID: 29844792 PMCID: PMC5963662
Source DB: PubMed Journal: Iran J Pharm Res ISSN: 1726-6882 Impact factor: 1.696
Figure 1The structures of isolated compounds (1-5) from the aerial parts of P. ferulacea
Chemical composition of the essential oil of P. ferulacea aerial parts
| No. | Compounds | KI | % | No. | Compounds | KI | % |
|---|---|---|---|---|---|---|---|
|
| α-thujene | 926 | 0.10 |
| trans-verbenol | 1142 | 0.50 |
|
| α-pinene | 938 | 22.1 |
| pinocarvone | 1163 | 0.36 |
|
| camphene | 947 | 0.13 |
|
| 1183 | 0.67 |
|
| sabinene | 969 | 0.57 |
| myrtenal | 1194 | 0.23 |
|
| β-pinene | 975 | 43.13 |
| β-elemene | 1388 | 0.61 |
|
| β-myrcene | 989 | 1.92 |
| β-caryophyllene | 1415 | 0.29 |
|
| δ-3-carene | 1008 | 16.88 |
| elemol | 1548 | 0.14 |
|
| α-terpinene | 1016 | 0.12 |
| caryophyllene oxide | 1582 | 0.26 |
|
|
| 1021 | 0.06 |
| α-bisabolol | 1687 | 0.46 |
|
|
| 1023 | 0.95 |
| osthole | 2144 | 1.28 |
|
| limonene | 1024 | 2.06 | ||||
|
| β-phellandrene | 1027 | 1.89 | Monoterpene hydrocarbons | 94.45 | ||
|
| (Z)-β-ocimene | 1032 | 0.07 | Oxygenated monoterpenes | 1.76 | ||
|
| (E)-β-ocimene | 1046 | 0.10 | Sesquiterpene hydrocarbons | 0.90 | ||
|
| γ-terpinene | 1054 | 0.26 | Oxygenated sesquiterpenes | 0.86 | ||
|
| α-terpinolene | 1085 | 3.90 | Non-terpenes | 1.28 | ||
|
|
| 1099 | 0.21 | Total identified | 99.25 |
Identified compounds listed in order of elution from BPX5 column;
Kovats retention indices to C8-C30 n-alkanes on BPX5 column.
The results of essential oil analysis of P. ferulacea from the previous and present studies
|
|
|
|
|
|
|
|---|---|---|---|---|---|
| Khoy | June 2012 | HD | aerial part | β-pinene (43.1%) | Present |
| Isfahan | July 1996 | SD | aerial part | β-pinene (22.9%) | (16) |
| Myaneh | July 2005 | HD | aerial part | (E)-anethole (95.0%) | (17) |
| Myaneh | May 2005 | HD | leaves & | α-pinene (57.0%) | (17) |
| Sirjan | June 2010 | HD | leaves | α-pinene (28.2%) | (21) |
| Myaneh | - | HD | flowers | α-pinene (42.2%) | (18) |
| Tosya | Sept. 1994 | HD | fruits | γ-terpinene (30.2%) | (20) |
| Sanandaj | July 2001 | SD | fruits | β-pinene (33.0%) | (16) |
| Shemshak | June 2006 | HD | fruits | chrysanthenyl acetate (26.5%) | (19) |
| Sirjan | June 2010 | HD | fruits | α-pinene (25.4%) | (21) |
| Myaneh | - | HD | fruits | α-pinene (61.3%) | (18) |
| Yasouj | June 2010 | HD | roots | δ-3-carene (22.5%) | (22) |
A dash (-) indicate not reported.
Hydrodistillation,
Steam distillation.