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12-Octadecenoic acid, 9,10,11-trihydroxy-, (9S,10S,11R,12Z)- is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

339186-36-6

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339186-36-6 Usage

Commonly found in

castor oil

Unique structure

three hydroxyl groups, making it a hydroxy fatty acid

Anti-inflammatory properties

helps reduce inflammation

Antimicrobial properties

helps inhibit the growth of microorganisms

Moisturizing properties

helps retain moisture in the skin and hair

Used in skincare and haircare products

commonly used ingredient

Used in the pharmaceutical industry

as a laxative and in the production of plastics and lubricants

Potential as a starting material for the synthesis of various pharmaceutical compounds

due to its unique chemical structure.

Check Digit Verification of cas no

The CAS Registry Mumber 339186-36-6 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 3,3,9,1,8 and 6 respectively; the second part has 2 digits, 3 and 6 respectively.
Calculate Digit Verification of CAS Registry Number 339186-36:
(8*3)+(7*3)+(6*9)+(5*1)+(4*8)+(3*6)+(2*3)+(1*6)=166
166 % 10 = 6
So 339186-36-6 is a valid CAS Registry Number.

339186-36-6Upstream product

339186-36-6Downstream Products

339186-36-6Relevant academic research and scientific papers

Microbial Synthesis of Linoleate 9 S-Lipoxygenase Derived Plant C18 Oxylipins from C18 Polyunsaturated Fatty Acids

An, Jung-Ung,Lee, In-Gyu,Ko, Yoon-Joo,Oh, Deok-Kun

, (2019/03/26)

Plant oxylipins, including hydroxy fatty acids, epoxy hydroxy fatty acids, and trihydroxy fatty acids, which are biosynthesized from C18 polyunsaturated fatty acids (PUFAs), are involved in pathogen-specific defense mechanisms against fungal infections. However, their quantitative biotransformation by plant enzymes has not been reported. A few bacteria produce C18 trihydroxy fatty acids, but the enzymes and pathways related to the biosynthesis of plant oxylipins in bacteria have not been reported. In this study, we first report the biotransformation of C18 PUFAs into plant C18 oxylipins by expressing linoleate 9S-lipoxygenase with and without epoxide hydrolase from the proteobacterium Myxococcus xanthus in recombinant Escherichia coli. Among the nine types of plant oxylipins, 12,13-epoxy-14-hydroxy-cis,cis-9,15-octadecadienoic acid was identified as a new compound by NMR analysis, and 9,10,11-hydroxy-cis,cis-6,12-octadecadienoic acid and 12,13,14-trihydroxy-cis,cis-9,15-octadecadienoic were suggested as new compounds by LC-MS/MS analysis. This study shows that bioactive plant oxylipins can be produced by microbial enzymes.

Microbial Synthesis of Linoleate 9 S-Lipoxygenase Derived Plant C18 Oxylipins from C18 Polyunsaturated Fatty Acids

An, Jung-Ung,Lee, In-Gyu,Ko, Yoon-Joo,Oh, Deok-Kun

, p. 3209 - 3219 (2019/03/26)

Plant oxylipins, including hydroxy fatty acids, epoxy hydroxy fatty acids, and trihydroxy fatty acids, which are biosynthesized from C18 polyunsaturated fatty acids (PUFAs), are involved in pathogen-specific defense mechanisms against fungal infections. However, their quantitative biotransformation by plant enzymes has not been reported. A few bacteria produce C18 trihydroxy fatty acids, but the enzymes and pathways related to the biosynthesis of plant oxylipins in bacteria have not been reported. In this study, we first report the biotransformation of C18 PUFAs into plant C18 oxylipins by expressing linoleate 9S-lipoxygenase with and without epoxide hydrolase from the proteobacterium Myxococcus xanthus in recombinant Escherichia coli. Among the nine types of plant oxylipins, 12,13-epoxy-14-hydroxy-cis,cis-9,15-octadecadienoic acid was identified as a new compound by NMR analysis, and 9,10,11-hydroxy-cis,cis-6,12-octadecadienoic acid and 12,13,14-trihydroxy-cis,cis-9,15-octadecadienoic were suggested as new compounds by LC-MS/MS analysis. This study shows that bioactive plant oxylipins can be produced by microbial enzymes.

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