Date published: 2026-5-6

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Myristoleic Acid methyl ester (CAS 56219-06-8)

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Alternate Names:
Methyl myristoleate
Application:
Myristoleic Acid methyl ester is a cytotoxic inducer of apoptosis and necrosis
CAS Number:
56219-06-8
Purity:
>98%
Molecular Weight:
240.4
Molecular Formula:
C15H28O2
Supplemental Information:
This is classified as a Dangerous Good for transport and may be subject to additional shipping charges.
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

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Myristoleic Acid methyl ester, identified by the CAS number 56219-06-8, is the methyl ester derivative of Myristoleic Acid, a monounsaturated omega-5 fatty acid. This esterification process enhances the molecule′s lipophilicity and stability, making it an important subject in various research fields including organic chemistry and industrial applications. The presence of the methyl ester group increases its solubility in organic solvents, which is essential for its use in studies involving lipid membranes and lipid-lipid interactions. Researchers utilize Myristoleic Acid methyl ester to explore the properties of unsaturated fatty acids in synthetic and natural settings, examining how such esters can influence the physical properties of cell membranes and other lipid-containing structures. Additionally, this compound has been employed in the study of biodiesel production, where its combustion properties and oxidative stability are analyzed to assess its potential as a sustainable fuel alternative. Furthermore, its behavior under different environmental conditions provides insights into the development of environmentally friendly lubricants and coatings. Through these applications, Myristoleic Acid methyl ester aids in advancing our understanding of fatty acid derivatives in both theoretical and practical perspectives, contributing significantly to the fields of sustainable energy and material science.


Myristoleic Acid methyl ester (CAS 56219-06-8) References

  1. Inhibition of steroid 5 alpha-reductase by specific aliphatic unsaturated fatty acids.  |  Liang, T. and Liao, S. 1992. Biochem J. 285 (Pt 2): 557-62. PMID: 1637346
  2. Measurements of binary diffusion coefficients, retention factors and partial molar volumes for myristoleic acid and its methyl ester in supercritical carbon dioxide.  |  Kong, CY., et al. 2006. Anal Sci. 22: 1431-6. PMID: 17099274
  3. The analysis of gun-cleaning oil as long-distance gunshot residue and its implications for chemical tags on bullets.  |  Bendrihem, SA., et al. 2013. J Forensic Sci. 58: 142-5. PMID: 23066903
  4. Chemical composition of volatile and fixed oils from of Salvia argentea L. (Lamiaceae) growing wild in Sicily.  |  Riccobono, L., et al. 2016. Nat Prod Res. 30: 25-34. PMID: 25880372
  5. Investigation of the Volatile Profile of Red Jujube by Using GC-IMS, Multivariate Data Analysis, and Descriptive Sensory Analysis.  |  Qiao, Y., et al. 2022. Foods. 11: PMID: 35159572
  6. Response to Cold Adaption in Acinetobacter johnsonii XY27 from Spoiled Bigeye Tuna (Thunnus obesus): Membrane Protein Composition and Protein Biomarker Identification by Proteomics.  |  Wang, XY. and Xie, J. 2022. J Agric Food Chem. 70: 10000-10010. PMID: 35919963
  7. Optimization of Prochlorothrix hollandica cyanobacteria culturing for obtaining myristoleic acid.  |  Lapina, S. S., et al. 2016. Russian Journal of Plant Physiology. 63: 558-565.
  8. Fatty acid composition and antioxidant effect of coconut oil in Drosophila melanogaster.  |  Odubanjo and Oluwatoyin Veronica, et al. 2020. Comparative Clinical Pathology. 29: 1147-1155.
  9. Assessment of the antistaphylococcal properties and bioactive compounds of raw and fermented Trametes polyzona (Pers.) Justo extracts.  |  Oyetayo, et al. 2022. Microbial Biosystems. 7.1: 1-7.

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

Myristoleic Acid methyl ester, 50 mg

sc-205395
50 mg
$52.00

Myristoleic Acid methyl ester, 100 mg

sc-205395A
100 mg
$100.00