An inactive metabolite of TXA2
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Thromboxane B2

Item No. 19030

Technical Information
Formal Name
9α,11,15S-trihydroxythromba-5Z,13E-dien-1-oic acid
CAS Number
54397-85-2
Synonyms
  • TXB2
Molecular Formula
C20H34O6
Formula Weight
Purity
≥98%
A crystalline solid
DMF: >50 mg/mlDMSO: >25 mg/mlEthanol: >100 mg/mlMethyl Acetate: 10 mg/mlPBS pH 7.2: >100 µg/ml
SMILES
O[C@@H]1[C@H](C/C=C\CCCC(O)=O)[C@@H](/C=C/[C@@H](O)CCCCC)OC(O)C1
InChi Code
InChI=1S/C20H34O6/c1-2-3-6-9-15(21)12-13-18-16(17(22)14-20(25)26-18)10-7-4-5-8-11-19(23)24/h4,7,12-13,15-18,20-22,25H,2-3,5-6,8-11,14H2,1H3,(H,23,24)/b7-4-,13-12+/t15-,16-,17-,18+,20?/m0/s1
InChi Key
XNRNNGPBEPRNAR-JQBLCGNGSA-N
Shipping & Storage Information
Storage
-20°C
Shipping
Room temperature in continental US; may vary elsewhere
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    Product Description

    Thromboxane B2 (TXB2) is a non-enzymatically derived, stable, inactive metabolite of TXA2, which is highly unstable.1,2,3 Serum levels of TXB2 positively correlate with platelet COX-1 activation.4,5 Urinary levels of TXB2 reflect intrarenal TXA2 synthesis, while its metabolites, 11-dehydro TXB2 (Item No. 19500) and 2,3-dinor TXB2 (Item No. 19510), reflect systemic TXA2 secretion.6,7,2

    WARNING This product is not for human or veterinary use.

    References & Product Citations
    Product Description References

    1. Needleman, P., Moncada, S., Bunting, S., et alIdentification of an enzyme in platelet microsomes which generates thromboxane A2 from prostaglandin endoperoxides. Nature 261(5561), 558-560 (1976).

    2. Patrono, C., Ciabattoni, G., Pugliese, F., et alEstimated rate of thromboxane secretion into the circulation of normal humans. J. Clin. Invest. 77(2), 590-594 (1986).

    3. Uyama, O., Matsumoto, M., Fujisawa, A., et alPlasma concentrations of thromboxane B2 in patients with hypertension or cerebrovascular disease. Prostaglandins Med. 7(3), 199-207 (1981).

    4. Arantes, F.B.B., Menezes, F.R., Franci, A., et alInfluence of direct thrombin inhibitor and low molecular weight heparin on platelet function in patients with coronary artery disease: A prospective interventional trial. Adv. Ther. 37(1), 420-430 (2020).

    5. Ferroni, P., Riondino, S., Vazzana, N., et alBiomarkers of platelet activation in acute coronary syndromes. Thromb. Haemost. 108(6), 1109-1123 (2012).

    6. Patrono, C., Ciabattoni, G., Patrignani, P., et alEvidence for a renal origin of urinary thromboxane B2 in health and disease. Adv. Prostaglandin Thromboxane Leukot. Res. 11, 493-498 (1983).

    7. Lawson, J.A., Patrono, C., Ciabattoni, G., et alLong-lived enzymatic metabolites of thromboxane B2 in the human circulation. Anal. Biochem. 155(1), 198-205 (1986).

    Product Citations

    Pang, Y., Liu, X., Zhao, C., et alLC-MS/MS-based arachidonic acid metabolomics in acute spinal cord injury reveals the upregulation of 5-LOX and COX-2 products. Free Radic. Biol. Med. 193(Pt 1), 363-372 (2022).

    Archambault, A.-S., Zaid, Y., Rakotoarivelo, V., et alHigh levels of eicosanoids and docosanoids in the lungs of intubated COVID-19 patients. FASEB J. 35(6), e21666 (2021).

    Roberts, L.M., Schwarz, B., Speranza, E., et alPulmonary infection induces persistent, pathogen-specific lipidomic changes influencing trained immunity. iScience 24(9), 103025 (2021).

    Archambault, A.-S., Zaid, Y., Rakotoarivelo, V., et alLipid storm within the lungs of severe COVID-19 patients: Extensive levels of cyclooxygenase and lipoxygenase-derived inflammatory metabolites. medRxiv (2020).

    Brouwers, H., Jónasdóttir, H.S., Kuipers, M.E., et alAnti-inflammatory and proresolving effects of the omega-6 polyunsaturated fatty acid adrenic acid. J. Immunol. 205(10), 2840-2849 (2020).

    Meriwether, D., Sulaiman, D., Volpe, C., et alApolipoprotein A-I mimetics mitigate intestinal inflammation in COX2-dependent inflammatory bowel disease model. J. Clin. Invest. 130, 3670-3685 (2019).

    Dalli, J., Colas, R.A., Walker, M.E., et alLipid Mediator Metabolomics via LC-MS/MS Profiling and Analysis. Clinical Metabolomics 59-72 (2018).

    Sorgi, C.A., Peti, A.P.F., Petta, T., et alComprehensive high-resolution multiple-reaction monitoring mass spectrometry for targeted eicosanoid assays. Sci. Data 5, 180167 (2018).

    Gouveia-Figueira, S., Karlsson, J., Deplano, A., et alCharacterisation of (R)-2-(2-fluorobiphenyl-4-yl)-N-(3-methylpyridin-2-yl)propanamide as a dual fatty acid amide hydrolase: Cyclooxygenase inhibitor. PLoS One 10(9), e0139212 (2015).

    Rao, C.V., Desai, D., Rivenson, A., et alChemoprevention of colon carcinogenesis by phenylethyl-3-methylcaffeate. Cancer Res. 55(11), 2310-2315 (1995).