Contains various deuterated primary products of COX and LOX metabolism of arachidonic acid
Features
  • Each vial contains a mixture of standards packaged in amber ampules purged with argon
  • >1 ml provided at the concentration specified in the insert
  • Ideally suited for use as an internal standard in mass spectrometry applications
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Deuterated Primary COX and LOX MaxSpec® LC-MS Mixture

Item No. 19228

Technical Information
Formulation
A solution in ethanol (1 μg/ml of each compound)
Shipping & Storage Information
Storage
-20°C
Shipping
Wet ice in continental US; may vary elsewhere
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    Product Description

    This mixture contains deuterated versions of selected eicosanoids produced by the metabolism of arachidonic acid via the cyclooxygenase and lipoxygenase pathways. The mixture is supplied in an amber ampule in which the headspace has been purged with argon to prevent lipid oxidation. This product has been designed for direct use in LC-MS applications. This mixture is ideally suited for use as an internal standard in mass spectrometry applications. It should be noted that the mixture contains isobaric analytes. After opening, we recommend that the mixture be transferred immediately to a 1 ml glass screw cap vial, to prevent solvent evaporation, and stored at -20°C. The mixture should be discarded after multiple freeze/thaw cycles.
    The lipid mediators represented in this mixture are produced on demand by various cells and tissue types in response to external stimulation and act locally in an autocrine or paracrine manner. In the body, particularly with thromboxanes and prostaglandins, they are enzymatically converted to inactive metabolites and excreted in the urine. As a result, serum-free media from cultured cells and tissues will serve as the primary sample types for their analysis, although additional sample types could also be used.

    WARNING This product is not for human or veterinary use.

    References & Product Citations
    Product Citations

    Tufail, Y.Z., Guijas, C., Kummer, D.A., et alSuppression of pain transmission and behavior by inhibition of peripheral diacylglycerol metabolism. Cell Chem. Bio. 33(1), 74-90.e19 (2025).