Enantiomeric Distribution of Linalool, Linalyl Acetate and Camphor in Bulgarian Lavender Oil
Journal of Essential Oil Research, 2005The enantiomeric distribution of linalool, linalyl acetate and camphor in Bulgarian lavender oils was determined by multidimensional GC/MS.
Başer, K. Hüsnü Can +2 more
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Anti-inflammatory activity of linalool and linalyl acetate constituents of essential oils
Phytomedicine, 2002Linalool and linalyl acetate are the principal components of many essential oils known to possess several biological activities, attributable to these monoterpene compounds. In this work, we evaluated individually the anti-inflammatory properties of (-) linalool, that is, the natural occurring enantiomer, and its racemate form, present in various ...
D'AQUILA, Paolo Stefano +5 more
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Biotransformation of linalyl acetate by suspension cultures of Papaver bracteatum
Phytochemistry, 1990Abstract Suspension cultures of Papaver bracteatum biotransform the acyclic monoterpene, linalyl acetate, into linalool, geraniol and the monocyclic alcohol, α-terpineol. Total metabolism of linalyl acetate occurs within eight days of substrate addition, with 40% of the substrate being transformed within the first 36 hr.
Ingrid Hook +3 more
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ChemInform Abstract: CYANIDATION PRODUCTS OF ORGANOBORANES DERIVED FROM LINALYL ACETATE
Chemischer Informationsdienst, 1981AbstractDie Hydroborierung von Linalylacetat (I) mit Thexylboran (II) führt zu einer 4: l‐Mischung von (III) und (IV), deren Bildung durch Isolierung der Diole (V) und (VI) nach Oxidation der Organoboranmischung bestätigt wird.
R. MURPHY, R. H. PRAGER
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Genotoxicity of lavender oil, linalyl acetate, and linalool on human lymphocytes in vitro
Environmental and Molecular Mutagenesis, 2011AbstractThe potential genotoxicity of lavender essential oil and its major components, linalool, and linalyl acetate, was evaluated in vitro by the micronucleus test on peripheral human lymphocytes. In the range of non‐toxic concentrations (0.5–100 μg/ml), linalyl acetate increased the frequency of micronuclei significantly and in concentration ...
DI SOTTO A. +4 more
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Palladium-Catalyzed Addition of Dialkylamines to Linalyl Acetate and Related Compounds
Journal of Essential Oil Research, 1997Abstract Pd(PPh3)4 catalyzed reaction of linalyl acetate with diethylamine gave N, N-diethylgeranylamine as a main product (E:Z = 90:10). The reaction of linalyl acetate with various amines gave their corresponding products. For example, the reaction of aniline with linalyl acetate gave N-geranylaniline in 100% stereoselectivity.
S. Watanabe +4 more
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Plant terpene biosynthesis. The biosynthesis of linalyl acetate in Mentha citrata
Tetrahedron Letters, 1999Abstract It is demonstrated that linalyl acetate is biosynthesised via the non-mevalonate (1-deoxyxylulose phosphate) terpene pathway in the plant Mentha citrata . The incorporation of isotopically labelled dl -[3- 2 H 3 ]-alanine and [6,6- 2 H 2 ]- d -glucose has revealed that five of the deuterium atoms of 1-deoxyxylulose phosphate are retained
Fowler, D. +3 more
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RIFM fragrance ingredient safety assessment, Linalyl acetate, CAS Registry Number 115-95-7
Food and Chemical Toxicology, 2015Please cite this article as: A.M. Api, D. Belsito, S. Bhatia, M. Bruze, P. Calow, M.L. Dagli, W. Dekant, A.D. Fryer, L. Kromidas, S. La Cava, J.F. Lalko, A. Lapczynski, D.C. Liebler, Y. Miyachi, V.T. Politano, G. Ritacco, D. Salvito, J. Shen, T.W. Schultz, I.G. Sipes, B. Wall, D.K.
A.M. Api +21 more
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Sex-specific susceptibility to type 2 diabetes mellitus and preventive effect of linalyl acetate
Life Sciences, 2020Biological, psychosocial and lifestyle risk factors interact in the development of type 2 diabetes mellitus (T2DM). To date, the effects of sex, chronic stress (CS) and high-fat diet (HFD) on T2DM and the ability of linalyl acetate (LA) to prevent T2DM have not been determined.
You Kyoung, Shin +5 more
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ChemInform Abstract: Reaction of SeO2 with Dienes. Part 1. Linalyl Acetate.
ChemInform, 1989AbstractThe reaction of the linalyl acetate (I) with SeO2 (II) affords the Se containing substances (III) and (IV) among the usual allylic oxidation products.
A. SAN FELICIANO +5 more
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