Trimyristin

TargetMol
Product Code: TAR-T4852
Supplier: TargetMol
CodeSizePrice
TAR-T4852-5mg5mg£102.00
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TAR-T4852-10mg10mg£122.00
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TAR-T4852-25mg25mg£174.00
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TAR-T4852-50mg50mg£222.00
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TAR-T4852-100mg100mg£298.00
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TAR-T4852-200mg200mg£409.00
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TAR-T4852-500mg500mg£623.00
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Prices exclude any Taxes / VAT

Overview

Regulatory Status: RUO
Shipping:
cool pack
Storage:
-20℃

Images

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Further Information

Bioactivity:
Within the cell, glyceryl trimyristate is primarily located in the membrane (predicted from logP) and adiposome. glyceryl trimyristate exists in all eukaryotes, ranging from yeast to humans. In humans, glyceryl trimyristate is involved in the metabolic disorder called de novo triacylglycerol biosynthesis glyceryl trimyristate pathway.
CAS:
555-45-3
Formula:
C45H86O6
Molecular Weight:
723.177
Pathway:
Neuroscience; Metabolism
Purity:
0.9911
SMILES:
CCCCCCCCCCCCCC(=O)OCC(COC(=O)CCCCCCCCCCCCC)OC(=O)CCCCCCCCCCCCC
Target:
Phosphatase; Endogenous Metabolite; AChE

References

Jaiswal P , Singh D K , Singh V K , et al. Enzyme Inhibition by Molluscicidal Components of Myristica fragrans Houtt. in the Nervous Tissue of Snail Lymnaea acuminata[J]. Enzyme Research,2010,(22009-12-3), 2009, 2010:478746. Pynn C J, Picardi M V, Nicholson T, et al. Myristate is selectively incorporated into surfactant and decreases dipalmitoylphosphatidylcholine without functional impairment.[J]. Ajp Regulatory Integrative & Comparative Physiology, 2010, 299(5):R1306-16. Legrand P , Beauchamp E , Catheline D , et al. Short Chain Saturated Fatty Acids Decrease Circulating Cholesterol and Increase Tissue PUFA Content in the Rat[J]. Lipids, 2010, 45(11):975-1986. Jin S E S . Cellular delivery of cationic lipid nanoparticle-based SMAD3 antisense oligonucleotides for the inhibition of collagen production in keloid fibroblasts.[J]. European Journal of Pharmaceutics & Biopharmaceutics, 2012, 82(1):19-26. Lesot P , Serhan Z , Aroulanda C , et al. Analytical contribution of NAD 2D-NMR spectroscopy in polypeptide mesophases to the investigation of triglycerides[J]. Magnetic Resonance in Chemistry, 2012, 50(S1):S2-S11.