The essential oil and extract obtained from the wood chips of Cedrus deodara by hydrodistillation and percolation respectively have been analyzed by GC-FID and GC–MS techniques. Thirty four compounds were identified from the essential oil and twenty six from the extract accounting for 98.3 and 94.6% respectively of total identifications. While the major components of the oil were β-himachalene (38.3%), α-himachalene (17.1%) and γ-himachalene (12.6%), those of the extracts were E-γ-atlantone (38.5%) and E-α-atlantone (10.2%).
RaoJM, SrinivasPV, YadavJS, RaghavanKV. (2002) Pharmaceutical and herbal composition comprising wikstromol and/or matairesinal, its use as hepatoprotectant and process for their isolation from Cedrus deodara. World Intellectual Property Organisation, WO 02/34277 A1.
2.
ShindeUA, PhadkeAS, NairAM, MungantiwarAADikshitVJ, SarafMN. (1999) Studies on the anti-infammatory and analgesic activity of Cedrus deodara (Roxb.) Loud. wood oil. Journal of Ethnopharmacology, 65, 21–27.
3.
HussainM, ShahGM, KhanMA. (2006) Traditional medicinal and economic uses of gymnosperms of Kaghan Valley, Pakistan. Ethnobotanical Leaflets, 10, 72–81.
4.
BoudareneL, RahimL, BaaliouamerA, MeklatiBY. (2004) Analysis of Algerian essential oils from twigs, needles and wood of Cedrus atlantica G. Manetti by GC/MS. Journal of Essential Oil Research, 16, 531–534.
5.
ShankaranarayanR, KrishnappaS, BisaryaSC, DevS. (1977) Studies in sesquiterpenes-LIII: Deodarone and atlantone, new sesquiterpenoids from wood of Cedrus deodara Loud. Tetrahedron, 33, 1201–1205.
6.
PandeBS, KrishnappaS, BisaryaSC, DevS. (1971) Studies in sesquiterpenes-XLVII: Cis- and trans-atlantones from Cedrus deodara Loud. Tetrahedron, 27, 841–844.
7.
ShashiB, SinghJ, RaoJM, SaxenaAK, QaziGN. (2006) A novel lignan composition from Cedrus deodara induces apoptosis and early nitric oxide generation in human leukemia Molt-4 and HL-60 cells. Nitric Oxide, 14, 72–88.
8.
FleisherA. (2000) The volatiles of the leaves and wood of Lebanon Cedar (Cedrus libani A. Rich) aromatic plants of the Holy Land and the Sinai. Journal of Essential Oil Research, 12, 763–765.
9.
NigamMC, AhmadA, MisraLN. (1990) Composition of the essential oil of Cedrus deodara. Indian Perfumer, 34, 278–281.
10.
SalidoS, Altarejos, NoguerasM, SanchezA, PannecouqueC, WitvrouwM, De ClercqE. (2002) Chemical studies of essential oils of Juniperus oxycedrus ssp. badia, Journal of Ethnopharmacology, 81, 129–134.
11.
CavaleiroC, SalgueiroL, BarrosoJ, FigueiredoAC, PedroLG, FontinhaSS, BighelliA, CasanovaJ, LoomanA, SchefferJJC. (2002) Composition of the essential oil of Juniperus cedrus Webb & Berth. grown on Madeira. Flavour and Fragrance Journal, 17, 111–114.
12.
DuquesnoyE, DinhNH, CastolaV, CasanovaJ. (2006) Composition of a pyrolytic from Cupressus funebris Endl. of Vietnamese origin. Flavour and Fragrance Journal, 21, 453–457.
13.
SinghD, RaoSM, TripathiAK. (1984) Cedarwood oil as potential insecticidal agent against house mosquitoes. Naturwissenschaften, 71, 265–266.
14.
McLaffertyFW. (1989) Registry of Mass spectral Data. John Wiley and Sons, New York.
15.
SteinSE. (1990) National Institute of Standards and Technology (NIST) Mass spectral Database and Software. Version 3.02, Gaitherburg, MD, USA.
16.
AdamsRP. (1995) Identification of Essential Oil Components by Gas Chromatography/Mass spectroscopy. Allured Publishing, Carol Stream, Illinois, USA.
17.
JenningsW, ShibamotoT. (1980) Qualitative Analysis of Flavour and Fragrance Volatiles by Glass Capillary Gas Chromatography. Academic Press, New York.