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Results for "

β-oxidation metabolite

" in MedChemExpress (MCE) Product Catalog:

12

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5

Natural
Products

1

Isotope-Labeled Compounds

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-113261

    Endogenous Metabolite Metabolic Disease Cancer
    Oleoylcarnitine, the metabolite which accumulates through suppression of fatty acid β-oxidation, can enhance hepatocarcinogenesis via STAT3 activation .
    Oleoylcarnitine
  • HY-W012974

    β-Aminoisobutyric acid; BAIBA

    Endogenous Metabolite Cardiovascular Disease Metabolic Disease
    3-Aminoisobutyric acid (β-Aminoisobutyric acid) has anti-inflammatory and antioxidant effects. 3-Aminoisobutyric acid increases the expression of brown adipocyte-specific genes in white adipose tissue and fatty acid β-oxidation in hepatocytes. 3-Aminoisobutyric acid attenuates insulin resistance and inflammation induced by palmitate or a high fat diet via an AMPK-PPARδ-dependent pathway in mice. 3-Aminoisobutyric acid is a catabolic metabolite of thymine and valine in skeletal muscle .
    3-Aminoisobutyric acid
  • HY-120556

    8(R)-HHxTrE; tetranor-12(R)-Hydroxyeicosatetraenoic acid; 2,3,4,5-Tetranor 12(R)-HETE

    Drug Metabolite Metabolic Disease
    tetranor-12(R)-HETE is a metabolite of 12(R)-HETE formed via β-oxidation.
    tetranor-12(R)-HETE
  • HY-W353470

    2,3-Dinor-8-isoPGF2α

    Drug Metabolite Metabolic Disease
    2,3-Dinor-8-iso prostaglandin F₂α (2,3-Dinor-8-isoPGF2α) is the major β-oxidation metabolite of 8-iso-prostaglandin F₂α. 2,3-Dinor-8-iso prostaglandin F₂α serves as a biomarker to evaluate the in vivo production of 8-iso-prostaglandin F₂α and the level of lipid peroxidation. 2,3-Dinor-8-iso prostaglandin F₂α is promising for research of oxidative stress-related diseases such as arteriosclerosis and diabetes .
    2,3-Dinor-8-iso prostaglandin F 2α
  • HY-113879

    18-Carboxy dinor LTB4

    Drug Metabolite Metabolic Disease
    18-Carboxy dinor Leukotriene B4 (18-carboxy dinor LTB4) is a β-oxidation metabolite of LTB4. In the liver, LTB4 is rapidly metabolized to 20-carboxy LTB4, which then undergoes β-oxidation to 18-carboxy dinor LTB4.
    18-Carboxy dinor Leukotriene B4
  • HY-168397

    Prostaglandin Receptor Endocrinology
    tetranor-Prostaglandin E1 is metabolite of Prostaglandin E1 (HY-B0131) and Prostaglandin E2 (HY-101952) that is formed by β-oxidation .
    tetranor-Prostaglandin E1
  • HY-113261S

    Isotope-Labeled Compounds Endogenous Metabolite Metabolic Disease Cancer
    Oleoylcarnitine-d9 is deuterium labeled Oleoylcarnitine. Oleoylcarnitine, the metabolite which accumulates through suppression of fatty acid β-oxidation, can enhance hepatocarcinogenesis via STAT3 activation .
    Oleoylcarnitine-d9
  • HY-113261R

    Endogenous Metabolite Metabolic Disease Cancer
    Oleoylcarnitine (Standard) is the analytical standard of Oleoylcarnitine. This product is intended for research and analytical applications. Oleoylcarnitine, the metabolite which accumulates through suppression of fatty acid β-oxidation, can enhance hepatocarcinogenesis via STAT3 activation .
    Oleoylcarnitine (Standard)
  • HY-137555

    11-dehydro-2,3-dinor TXB2

    Endogenous Metabolite Metabolic Disease
    11-dehydro-2,3-dinor Thromboxane B2 (11-dehydro-2,3-dinor TXB2) is a metabolite of the TXA2 inactive metabolite TXB2 (Item No. 19030). It is formed from TXB2 by cytosolic aldehyde dehydrogenase (ALDH) and β-oxidation. Levels of 11-dehydro-2,3-dinor TXB2 are increased 5.2-fold in a surgery-induced rat model of tendon overuse.
    11-dehydro-2,3-dinor Thromboxane B2
  • HY-165098

    β-Aminoisobutyric acid sodium salt; BAIBA sodium salt

    Endogenous Metabolite Cardiovascular Disease Metabolic Disease
    3-Aminoisobutyric acid (β-Aminoisobutyric acid) sodium salt has anti-inflammatory and antioxidant effects. 3-Aminoisobutyric acid sodium salt increases the expression of brown adipocyte-specific genes in white adipose tissue and fatty acid β-oxidation in hepatocytes. 3-Aminoisobutyric acid sodium salt attenuates insulin resistance and inflammation induced by palmitate or a high fat diet via an AMPK–PPARδ-dependent pathway in mice. 3-Aminoisobutyric acid sodium salt is a catabolic metabolite of thymine and valine in skeletal muscle .
    3-Aminoisobutyric acid sodium salt
  • HY-N2118
    Bilobetin
    2 Publications Verification

    PPAR PKA Akt p38 MAPK ERK Metabolic Disease
    Bilobetin, an active component of Ginkgo biloba, can reduce blood lipids and improve the effects of insulin. Bilobetin ameliorated insulin resistance, increased the hepatic uptake and oxidation of lipids, reduced very-low-density lipoprotein triglyceride secretion and blood triglyceride levels, enhanced the expression and activity of enzymes involved in β-oxidation and attenuated the accumulation of triglycerides and their metabolites in tissues. Bilobetin also increased the phosphorylation, nuclear translocation and activity of PPARα accompanied by elevated cAMP level and PKA activity .
    Bilobetin
  • HY-N2118R

    PPAR PKA Akt p38 MAPK ERK Metabolic Disease
    Bilobetin (Standard) is the analytical standard of Bilobetin. This product is intended for research and analytical applications. Bilobetin, an active component of Ginkgo biloba, can reduce blood lipids and improve the effects of insulin. Bilobetin ameliorated insulin resistance, increased the hepatic uptake and oxidation of lipids, reduced very-low-density lipoprotein triglyceride secretion and blood triglyceride levels, enhanced the expression and activity of enzymes involved in β-oxidation and attenuated the accumulation of triglycerides and their metabolites in tissues. Bilobetin also increased the phosphorylation, nuclear translocation and activity of PPARα accompanied by elevated cAMP level and PKA activity .
    Bilobetin (Standard)

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