Date published: 2025-10-2

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4-Nitrophenyl myristate (CAS 14617-85-7)

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Alternate Names:
4-Nitrophenyl tetradecanoate
Application:
4-Nitrophenyl myristate is a substrate for lipase
CAS Number:
14617-85-7
Purity:
≥95%
Molecular Weight:
349.46
Molecular Formula:
C20H31NO4
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

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4-Nitrophenyl myristate is suitable as a substrate for lipase. 4-Nitrophenyl myristate is an artificial ester formed by combining tetradecanoic acid with 4-nitrophenol. It does not dissolve in water. This compound serves as a building block for the creation of various compounds and can effectively alter the characteristics of polymers.


4-Nitrophenyl myristate (CAS 14617-85-7) References

  1. Pancreatic bile salt dependent lipase from cod (Gadus morhua): purification and properties.  |  Gjellesvik, DR., et al. 1992. Biochim Biophys Acta. 1124: 123-34. PMID: 1543734
  2. Molecular and biochemical diversity of Oenococcus oeni strains isolated during spontaneous malolactic fermentation of Malvasia Nera wine.  |  Cappello, MS., et al. 2010. Syst Appl Microbiol. 33: 461-7. PMID: 21095085
  3. Ligand binding to the FA3-FA4 cleft inhibits the esterase-like activity of human serum albumin.  |  Ascenzi, P., et al. 2015. PLoS One. 10: e0120603. PMID: 25790235
  4. Targeting the Type II Secretion System: Development, Optimization, and Validation of a High-Throughput Screen for the Identification of Small Molecule Inhibitors.  |  Waack, U., et al. 2017. Front Cell Infect Microbiol. 7: 380. PMID: 28894700
  5. Covalent immobilization of a halophilic, alkalithermostable lipase LipR2 on Florisil® nanoparticles for production of alkyl levulinates.  |  Mesbah, NM. 2019. Arch Biochem Biophys. 667: 22-29. PMID: 31022380
  6. Characterization of novel metagenomic-derived lipase from Indian hot spring.  |  Sahoo, RK., et al. 2020. Int Microbiol. 23: 233-240. PMID: 31410667
  7. Discovery and characterization of a stable lipase with preference toward long-chain fatty acids.  |  Chen, M., et al. 2020. Biotechnol Lett. 42: 171-180. PMID: 31745842
  8. Molecular and Physiological Properties of Indigenous Strains of Oenococcus oeni Selected from Nero di Troia Wine (Apulia, Italy).  |  Cappello, MS., et al. 2022. Microorganisms. 10: PMID: 35456845
  9. Effects of dietary protein and essential amino aciddeficiencies on growth, body composition, and digestiveenzyme activities of silvery-black porgy (Sparidentex hasta)  |  MTMMY Jasem, G Marammazi, OSE Gisbert - intelaquares.tonekabon.iau.ir. 2018. Int Aquat Res (2018). 10:45–55.
  10. Effects of methionine, cysteine and medium chain triglycerides on nutrient digestibility, absorption of amino acids along the intestinal tract and nutrient  |  S Nordrum, Å Krogdahl, C Røsjø, JJ Olli, H Holm. 15 June 2000. Aquaculture. 186, Issues 3–4: 341-360.

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

4-Nitrophenyl myristate, 1 g

sc-206926
1 g
$71.00