| Literature DB >> 24410874 |
Armando A Durant1, Candelario Rodríguez, Liuris Herrera, Alejandro Almanza, Ana I Santana, Carmenza Spadafora, Carmenza Spadadora, Mahabir P Gupta.
Abstract
BACKGROUND: Plinia cerrocampanensis is an endemic plant of Panama. The leaf essential oil of this plant has shown antibacterial activity. However, anti-malarial activity and chemical profiling by HS-SPME-GC-MS of this essential oil have not been reported before.Entities:
Mesh:
Substances:
Year: 2014 PMID: 24410874 PMCID: PMC3898253 DOI: 10.1186/1475-2875-13-18
Source DB: PubMed Journal: Malar J ISSN: 1475-2875 Impact factor: 2.979
MS detector peak area of some volatile metabolites in essential oil analysed by using three different SPME fibres
| | | |||
|---|---|---|---|---|
| 1 | Furfural | 67.2 | ||
| 2 | α-Pinene | 584.0 | 632.0 | 894.0 |
| 3 | Benzaldehyde | 257.0 | 201.0 | |
| 4 | γ-Terpinene | 1150.0 | 799.5 | |
| 5 | Terpinolene | 547.0 | ||
| 6 | Linalool | 2390.0 | 2630.0 | |
| 7 | Neo-allo-ocimene | 106.0 | 239.7 | 30.8 |
| 8 | 4-Terpineol | 599.0 | 467.0 | 660.0 |
| 9 | α-Terpineol | 231.0 | 194.0 | 261.0 |
| 10 | Nerol | 12.9 | 8.8 | 15.5 |
| 11 | Geraniol | 26.8 | 14.3 | 30.8 |
| 12 | α-Copaene | 663.0 | 639.0 | 741.0 |
| 13 | Sativene | 11.1 | ||
| 14 | α-Cedrene | 140.0 | 229.0 | |
| 15 | Caryophyllene | 114.0 | 112.0 | 132.0 |
| 16 | α-Bergamotene | 112.0 | 105.1 | 129.0 |
| 17 | Epi-β-santalene | 33.0 | ||
| 18 | α-Humelene | 46.1 | 46.7 | 55.5 |
| 19 | β-Acoradiene | 69.2 | 81.3 | 93.2 |
| 20 | γ -Muurolene | 89.6 | 87.2 | 103.0 |
| 21 | α-Muurolene | 80.3 | 53.5 | 96.4 |
| 22 | α-Curcumene | 191.0 | 170.9 | 184.0 |
| 23 | β -Bisabolene | 907.0 | 480.3 | 1100.0 |
| 24 | δ-Cadinene | 291.0 | 277.0 | 328.0 |
| 25 | 195.0 | 83.8 | 243.0 | |
| 26 | Cubenol | 11.8 | 8.4 | |
| 27 | Bisabolol oxide II | 37.9 | 47.7 | |
| 28 | α-Bisabolol | 159.0 | 58.0 | 213.0 |
Experimental Doehlert design matrix used for optimization of extraction parameters of essential oil by HS-SPME
| 1 | 45 | 25 | 20 | 136.86 |
| 2 | 60 | 25 | 20 | 1.41 |
| 3 | 52 | 25 | 35 | 6.84 |
| 4 | 52 | 40 | 25 | 9.47 |
| 5 | 30 | 25 | 20 | 50.99 |
| 6 | 38 | 25 | 5 | 43.98 |
| 7 | 38 | 10 | 15 | 111.39 |
| 8 | 52 | 25 | 5 | 139.92 |
| 9 | 52 | 10 | 15 | 137.97 |
| 10 | 38 | 25 | 35 | 106.08 |
| 11 | 45 | 10 | 30 | 100.77 |
| 12 | 38 | 40 | 25 | 100.85 |
| 13 | 45 | 40 | 10 | 122.17 |
| 14 | 45 | 40 | 10 | 121.96 |
| 15 | 45 | 40 | 10 | 122.20 |
| 16 | 45 | 40 | 10 | 120.34 |
Figure 1Pareto chart of standardized effects of extraction temperature, time of incubation and time of extraction.
Figure 2Fitted response surface plot. (A) Extraction temperature (°C) vs time of extraction (min). (B) Extraction temperature (°C) vs time of incubation (min). (C) Time of incubation (min) vs time of extraction (min).
Chemical composition of B. essential oil by HS-SPME-GC-MS
| 1 | Furfural | 830 | 95-67–42 | 0.21 |
| 2 | α-Pinene | 933 | 93–79–41 | 1.96 |
| 3 | Benzaldehyde | 958 | 105–77–51 | 1.10 |
| 4 | Myrcene | 982 | 41–93–69 | 0.91 |
| 5 | 3-δ-Carene | 1006 | 93–79–41 | 0.90 |
| 6 | 1020 | 119–91–134 | 6.85 | |
| 7 | 1041 | 93–79–41 | 2.62 | |
| 8 | 1053 | 93–91–79 | 2.58 | |
| 9 | γ-Terpinene | 1067 | 93–77–41 | 4.70 |
| 10 | Terpinolene | 1092 | 93–121–136 | 2.01 |
| 11 | Linalool | 1104 | 43–71–55 | 10.47 |
| 12 | Fenchol | 1121 | 81–43–67 | 0.06 |
| 13 | 1133 | 92–81–109 | 0.11 | |
| 14 | Neo-allo-ocimene | 1140 | 121–105–79 | 2.72 |
| 15 | 1,4-Dimethyl-4-acetyl-1-cyclohexene | 1157 | 109–67–43 | 0.04 |
| 16 | 1163 | 41–70–39 | 0.05 | |
| 17 | Terpin-4-en-1-ol | 1174 | 43–71–93 | 2.22 |
| 18 | 1188 | 119–91–65 | 0.15 | |
| 19 | α-Terpinol | 1196 | 59–43–93 | 1.20 |
| 20 | β-Cyclocitral | 1214 | 41–137–123 | 0.06 |
| 21 | Nerol | 1229 | 41–69–81 | 0.12 |
| 22 | 1241 | 82–81–152 | 0.07 | |
| 23 | Carvenone | 1248 | 95–110–67 | 0.18 |
| 24 | Geraniol | 1255 | 41–69–81 | 0.29 |
| 25 | 1272 | 41–55–70 | 0.04 | |
| 26 | Carvacrol | 1313 | 135–91–150 | 0.05 |
| 27 | α-Copaene | 1365 | 105–119–161 | 8.86 |
| 28 | Sativene | 1390 | 108–41–91 | 0.19 |
| 29 | Ylangene | 1400 | 105–119–93 | 0.89 |
| 30 | α-Cedrene | 1412 | 119–41–105 | 0.92 |
| 31 | 1420 | 41–91–79 | 1.34 | |
| 32 | α-Bergamotene | 1440 | 41–93–119 | 1.93 |
| 33 | γ-Elemene | 1449 | 121–41–93 | 1.24 |
| 34 | Epi-β-santalene | 1453 | 94–41–79 | 0.52 |
| 35 | α-Humelene | 1458 | 93–41–67 | 0.54 |
| 36 | β-Farnesene | 1462 | 41–69–91 | 1.97 |
| 37 | β-Acoradiene | 1469 | 119–41–105 | 1.05 |
| 38 | γ-Gurjunene | 1476 | 105–91–81 | 0.82 |
| 39 | γ -Muurolene | 1484 | 161–41–105 | 1.42 |
| 40 | α-Curcumene | 1490 | 119–132–41 | 3.83 |
| 41 | Indipone | 1499 | 149–93–41 | 1.18 |
| 42 | α-Muurolene | 1507 | 105–41–161 | 0.95 |
| 43 | β-Bisabolene | 1513 | 41–69–93 | 16.26 |
| 44 | δ-Cadinene | 1527 | 119–161–41 | 4.21 |
| 45 | γ-Bisabolene | 1540 | 41–93–107 | 2.19 |
| 46 | trans- Nerolidol | 1558 | 41–69–93 | 2.68 |
| 47 | Spathulenol | 1569 | 43–91–79 | 0.27 |
| 48 | tau-Cadinol | 1632 | 43–161–81 | 0.26 |
| 49 | Cubenol | 1649 | 43–161–95 | 0.26 |
| 50 | Bisabolol oxide B | 1666 | 43–59–105 | 0.92 |
| 51 | β-Bisabolol | 1674 | 41–67–93 | 0.15 |
| 52 | α-Bisabolol | 1687 | 43–119–109 | 3.46 |
| 53 | α-Farnesol | 1709 | 41–69–81 | 0.01 |
aRetention index. Components are listed in increasing order of their retention indices on DB5-MS.
Figure 3Isobologram and combination index (CI) of chloroquine (CQ) and the essential oil (EO) of. The 50% contour line shows a less than 1 combination index which shows synergy between EO and CQ at concentration (EO, CQ).