CITRONELLYL ACETATE BRI - CAS 150-84-5
Molecular Formula:
C12H22O2
Molecular Weight:
198.31
COA:
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Olfactive Family:
Fruity
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FEMA:
2311
Odor description:
A fresh, rose, fruity odor.
Purity:
96.0% (sum of isomers)
Appearance:
colorless liquid
Synonyms:
3,7-Dimethyl-6-octen-1-yl acetate, 6-Octen-1-ol, 3,7-dimethyl-, acetate, CITRONELLYL ACETATE BRI FCC
Solubility:
Insoluble in water; soluble in alcohol.
Storage:
Store tightly sealed under inert gas in a cool, well-ventilated area.
MSDS:
Inquire
Shelf Life:
48 months from manufacture date
Boiling Point:
237.59 C (EPI 4.0)
Specificgravity:
0.883 : 0.893 at 25 deg C
Refractive index:
1.440 : 1.450 at 20 deg C
1.TRP and ASIC channels mediate the antinociceptive effect of citronellyl acetate.
Rios ER1, Rocha NF, Carvalho AM, Vasconcelos LF, Dias ML, de Sousa DP, de Sousa FC, Fonteles MM. Chem Biol Interact. 2013 May 25;203(3):573-9. doi: 10.1016/j.cbi.2013.03.014. Epub 2013 Apr 3.
BACKGROUND: Citronellyl acetate (CAT), a monoterpene product of the secondary metabolism of plants, has been shown in the literature to possess several different biological activities. However, no antinociceptive abilities have yet been discussed. Here, we used acute pain animal models to describe the antinociceptive action of CAT.
2.Application of lipase immobilized on the biocompatible ternary blend polymer matrix for synthesis of citronellyl acetate in non-aqueous media: kinetic modelling study.
Badgujar KC1, Bhanage BM2. Enzyme Microb Technol. 2014 Apr 10;57:16-25. doi: 10.1016/j.enzmictec.2014.01.006. Epub 2014 Jan 22.
This work reports the use of new support for immobilization of lipase Burkholderia cepacia (BCL) matrix made up of polylactic acid (PLA), chitosan (CH), and polyvinyl alcohol (PVA). Initially lipase from various microbial sources and immobilization support composition was screened to obtain a robust biocatalyst. Among various biocatalysts preparation, the PLA:PVA:CH:BCL (1:6:1:2) was worked as a robust biocatalyst for the citronellyl acetate synthesis. Various reaction parameters were studied in detail to obtain the suitable reaction conditions for model citronellyl acetate synthesis reaction. Various kinetic parameters such as r(max), K(i(citronellol)), K(m(citronellol)), K(m(vinyl acetate)) were determined using non-linear regression analysis for the ternary complex as well as bi-bi ping-pong mechanism. The experimental results and kinetic study showed that citronellyl acetate synthesis catalyzed by immobilized lipase BCL followed the ternary complex mechanism with inhibition by alcohol (citronellol).
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CAS 150-84-5 CITRONELLYL ACETATE BRI

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