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1-Octadeca-9,12-dienoyloxy-2,3-bis-stearoyloxy-propane is a complex organic compound with the molecular formula C57H104O6. It is a type of triglyceride, which is a lipid molecule composed of three fatty acid chains attached to a glycerol backbone. In this specific compound, the fatty acid chains are a combination of two stearic acids and one oleic acid. Stearic acid is a saturated fatty acid with 18 carbon atoms, while oleic acid is a monounsaturated fatty acid with 18 carbon atoms and a double bond between the 9th and 12th carbon atoms. 1-octadeca-9,12-dienoyloxy-2,3-bis-stearoyloxy-propane is found in various natural sources, such as plant oils and animal fats, and plays a role in energy storage and cell membrane structure. Due to its unique fatty acid composition, it may have specific properties and applications in the food, pharmaceutical, and cosmetic industries.

2442-53-7

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2442-53-7 Usage

Chemical class

Sterol esters
OSBP is a lipid molecule that belongs to the class of sterol esters.

Cellular location

Eukaryotic cell membranes
It is primarily found in the membranes of eukaryotic cells.

Molecular structure

Combination of stearoyloxy and octadeca-9,12-dienoyloxy groups
The compound is composed of two stearoyloxy groups and an octadeca-9,12-dienoyloxy group attached to a propane backbone.

Role in intracellular lipid transport and signaling

Crucial
OSBP plays a crucial role in intracellular lipid transport and signaling.

Regulation of cholesterol metabolism

Involved
The compound is involved in the regulation of cholesterol metabolism.

Vesicular trafficking

Role in regulation
OSBP plays a role in the regulation of vesicular trafficking.

Formation of membrane contact sites

Involved
The compound is involved in the formation of membrane contact sites.

Cellular processes

Linked to lipid droplet formation, Golgi apparatus function, and cell proliferation
OSBP has been linked to several cellular processes, including lipid droplet formation, Golgi apparatus function, and cell proliferation.

Importance in lipid biology research

Significant target
The compound's complex structure and biological significance make it an important target for research in lipid biology.

Therapeutic applications

Potential
OSBP may have potential therapeutic applications due to its biological importance.

Check Digit Verification of cas no

The CAS Registry Mumber 2442-53-7 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 2,4,4 and 2 respectively; the second part has 2 digits, 5 and 3 respectively.
Calculate Digit Verification of CAS Registry Number 2442-53:
(6*2)+(5*4)+(4*4)+(3*2)+(2*5)+(1*3)=67
67 % 10 = 7
So 2442-53-7 is a valid CAS Registry Number.

2442-53-7Downstream Products

2442-53-7Relevant academic research and scientific papers

Synthesis and analysis of symmetrical and nonsymmetrical disaturated/monounsaturated triacylglycerols

Adlof, Richard O.,List, Gary R.

, p. 2096 - 2099 (2007/10/03)

Symmetrical disaturated triacylglycerols of the structure SUS, where S is stearic acid (18:0) and U is an unsaturated fatty acid, either oleic (O; 9cis-18:1), linoleic (L; 9cis, 12cis-18:2), or linolenic (Ln; 9cis, 12cis, 15cis-18:3), are important components providing functionality to interesterified fat blends and structurally modified oils. Nonsymmetrical triacylglycerols of the structure SSU can significantly change melting point and solid fat content profiles. To characterize the physical properties of pure and symmetrical and nonsymmetrical triacylglycerol mixtures, the same reaction sequence has been used to prepare multigram quantities of triacylglycerols SUS and SSU. Tristearin was converted to a mixture of mono-, di-, and triacylglycerols, and the 1,3- and 1,2-diacylglycerol fraction was isolated by silica column chromatography. The 1,3-diacylglycerols were removed by crystallization from acetone and esterified with the appropriate fatty acid to form the symmetrical triacylglycerols with >99% SUS structure. The more difficult to obtain 1,2-diacylglycerols were prepared by esterification of the enriched 1,2-diacylglycerol fraction (80-86% 1,2-diacylglycerols) remaining after removal of much of the 1,3-isomer by crystallization, but silver resin or silver nitrate impregnated silica gel chromatography was required to isolate the nonsymmetrical triacylglycerols. SSL and SSLn were prepared in purities of >98% by this procedure, but not SSO. Silver ion HPLC was found to be as accurate as, and more rapid than, lipolysis/gas chromatography for the determination of the isomeric purities of the synthesized triacylglycerols.

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