1. Signaling Pathways
  2. Metabolic Enzyme/Protease
  3. Endogenous Metabolite

Endogenous Metabolite

Endogenous metabolites refer to the collective set of small-molecule chemical substances present within organelles, cells, organs, biological fluids, or entire organisms; their molecular weights are typically less than 1500 Da. These endogenous metabolites—including lipids, amino acids, short peptides, nucleic acids, carbohydrates, alcohols, and organic acids—not only participate in signal transduction governing genomic function but also receive upstream signals from the environment, thereby bridging the interrelationships among genotype, environment, and phenotype. Based on their biological functions, microbial endogenous metabolites can be broadly classified into two categories: primary metabolites and secondary metabolites. Primary metabolites are the core molecules essential for supporting microbial growth and proliferation; they serve to provide energy to the microbes or act as precursors and cofactors for the synthesis of biological macromolecules. In contrast, microbial secondary metabolites are a class of low-molecular-weight products that are not strictly essential for microbial growth. Nevertheless, microbial secondary metabolites include numerous substances—such as antibiotics, anti-tumor agents, and cholesterol-lowering agents—that are of critical importance to human health[1][2][3]. Furthermore, the metabolome of a biological organism is influenced by a variety of endogenous factors, including age, sex, body composition, genetic background, and underlying pathological states. The small-molecule metabolites within an organism are diverse and highly distinct; their levels are typically subject to the synergistic regulation of a vast array of enzymes and transport proteins, undergoing processes of synthesis, transformation, degradation, and compartmentalized distribution. Metabolomics research based on endogenous metabolites has been widely applied in the fields of metabolic disorders, neurodegenerative diseases, cancer, cardiovascular diseases, and infectious diseases, where these metabolites hold potential utility as biomarkers or therapeutic targets[1][2][3].

Cat. No. Product Name Effect Purity Chemical Structure
  • HY-137868
    Decanoyl coenzyme A
    99.9%
    Decanoyl coenzyme A (Decanoyl CoA) is a primer for the fatty acid elongation system in Mycobacterium smegmat.
    Decanoyl coenzyme A
  • HY-Y0267S
    Phenoxyacetic acid-d5
    99.51%
    Phenoxyacetic acid-d5 is the deuterium labeled Phenoxyacetic acid. Phenoxyacetic acid is an endogenous metabolite.
    Phenoxyacetic acid-d<sub>5</sub>
  • HY-107420R
    AY 9944 (Standard)
    AY 9944 (Standard) is the analytical standard of AY 9944 (HY-107420). This product is intended for research and analytical applications. AY 9944 is a specific cholesterol biosynthesis inhibitor. AY 9944 inhibits the 7-dehydro cholesterol Δ7-reductase (DHCR7) enzyme with an IC50 of 13 nM. AY 9944 causes hypocholesterolemia and accumulation of 7DHC. At high doses, AY 9944 inhibits also in cultured embryos sterol Δ7-Δ8 isomerase, which causes the accumulation of cholest-8-en-3β-ol.
    AY 9944 (Standard)
  • HY-W018772S10
    D-Ribose-5,5-C-d2
    98.0%
    D-Ribose-d2 is the deuterium labeled D-Ribose. D-Ribose is an energy enhancer, and acts as a sugar moiety of ATP, and widely used as a metabolic therapy supplement for chronic fatigue syndrome or cardiac energy metabolism. D-Ribose is active in protein gl
    D-Ribose-5,5-C-d<sub>2</sub>
  • HY-133847
    LAPAO
    98.03%
    LAPAO (Laurylamidopropyldimethylamine oxide) is an amphoteric surfactant with good biocompatibility and surface activity. LAPAO can be used as a detergent and foam enhancer for personal care and household cleaning products. LAPAO is stable at different pH values and can effectively remove dirt and grease. LAPAO also has a conditioning effect and is suitable for use in skin care and hair care products.
    LAPAO
  • HY-W345359
    PAF C-18:1
    99.9%
    PAF C-18:1 is a naturally occurring phospholipid produced by cells upon inflammatory responses. PAF C-18:1 is a chemoattractant, and induces human neutrophil chemotaxis.
    PAF C-18:1
  • HY-N0487R
    Glucosamine sulfate (Standard)
    Glucosamine (sulfate) (Standard) is the analytical standard of Glucosamine (sulfate). This product is intended for research and analytical applications. Glucosamine sulfate (D-Glucosamine sulfate) is an amino sugar and a prominent precursor in the biochemical synthesis of glycosylated proteins and lipids, is used as a dietary supplement. Glucosamine sulfate also is a natural constituent of glycosaminoglycans in the cartilage matrix and synovial fluid, which when administered exogenously, exerts pharmacological effects on osteoarthritic cartilage and chondrocytes.
    Glucosamine sulfate (Standard)
  • HY-32350R
    Ercalcitriol (Standard)
    Ercalcitriol (Standard) is the analytical standard of Ercalcitriol. This product is intended for research and analytical applications. Ercalcitriol (1α,25-Dihydroxy Vitamin D2) is an active metabolite of vitamin D2.
    Ercalcitriol (Standard)
  • HY-B1788R
    Taurocholic acid (Standard)
    Taurocholic acid (Standard) is the analytical standard of Taurocholic acid. This product is intended for research and analytical applications. Taurocholic acid (N-Choloyltaurine) has marked bioactive effects such as an inhibitory potential against hepatic artery ligation induced biliary damage by upregulation of VEGF-A expression. Taurocholic acid has immunoregulation effect.
    Taurocholic acid (Standard)
  • HY-113154
    Vanillactic acid
    Vanillactic acid (VLA) is a relevant biomarker associated with Aromatic L-amino acid decarboxylase (AADC) deficiency. AADC deficiency is a primary neurotransmitter defect of the biosynthesis of catecholamines and serotonin.
    Vanillactic acid
  • HY-101415R
    Coenzyme Q9 (Standard)
    Coenzyme Q9 (Standard) is the analytical standard of Coenzyme Q9. This product is intended for research and analytical applications. Coenzyme Q9 (Ubiquinone Q9), the major form of ubiquinone in rodents, is an amphipathic molecular component of the electron transport chain that functions as an endogenous antioxidant. Coenzyme Q9 attenuates the diabetes-induced decreases in antioxidant defense mechanisms. Coenzyme Q9 improves left ventricular performance and reduces myocardial infarct size and cardiomyocyte apoptosis.
    Coenzyme Q9 (Standard)
  • HY-13417AR
    AICAR phosphate (Standard)
    AICAR (phosphate) (Standard) is the analytical standard of AICAR (phosphate). This product is intended for research and analytical applications. AICAR phosphate (Acadesine phosphate) is an adenosine analog and a AMPK activator. AICAR phosphate regulates the glucose and lipid metabolism, and inhibits proinflammatory cytokines and iNOS production. AICAR phosphate is also an autophagy, YAP and mitophagy inhibitor.
    AICAR phosphate (Standard)
  • HY-W009208R
    Calcium L-Threonate (Standard)
    Calcium L-Threonate (Standard) is the analytical standard of Calcium L-Threonate (HY-W009208). This product is intended for research and analytical applications. Calcium L-Threonate, a calcium aldonate, is a calcium supplement. Calcium L-Threonate can be used for the study of osteoporosis.
    Calcium L-Threonate (Standard)
  • HY-B0133R
    Natamycin (Standard)
    Natamycin (Standard) is the analytical standard of Natamycin. This product is intended for research and analytical applications. Natamycin (Pimaricin) is a macrolide antibiotic agent produced by several Streptomyces strains. Natamycin inhibits the growth of fungi via inhibition of amino acid and glucose transport across the plasma membrane. Natamycin is a food preservative, an antifungal agent in agriculture, and is widely used for fungal keratitis research.
    Natamycin (Standard)
  • HY-N10706A
    3-Keto sphinganine (d18:0) hydrochloride
    98%
    3-Keto sphinganine (d18:0) hydrochloride serves as the substrate for 3-keto-dihydrosphingosine reductase in the de novo sphingolipid synthesis pathway, and is a key intermediate in the de novo synthesis of sphingoid long-chain bases. 3-Keto sphinganine (d18:0) hydrochloride can be used in studies related to thrombocytopenia, anemia.
    3-Keto sphinganine (d18:0) hydrochloride
  • HY-N9516
    Taurodehydrocholic acid
    Taurodehydrocholic acid is a biliary cholesterol secretion activator. Taurodehydrocholic acid significantly increases the expression of Abcg5 and decreases the expression of abc8. Taurodehydrocholic acid can be used in the study of cholesterol metabolism.
    Taurodehydrocholic acid
  • HY-W854275
    (H2IPr)(Cl)2Ru=CH(o-iPrOC6H4)
    (H2IPr)(Cl)2Ru=CH(o-iPrOC6H4) is a highly efficient catalyst that can effectively promote the metathesis reaction of olefins. The compound exhibits excellent selectivity in the field of transition metal catalysts, is suitable for the synthesis of biologically active compounds, and shows potential application value in compound development.
    (H2IPr)(Cl)2Ru=CH(o-iPrOC6H4)
  • HY-113097S
    3α,7α-Dihydroxycoprostanic acid-d3
    99.0%
    3α,7α-Dihydroxycoprostanic acid-d3 is the deuterium labeled 3α,7α-Dihydroxycoprostanic acid (HY-113097). 3α,7α-Dihydroxycoprostanic acid is an endogenous metabolite. 3α,7α-Dihydroxycoprostanic acid, a bile acid, is the precursor to chenodeoxycholic acid.
    3α,7α-Dihydroxycoprostanic acid-d<sub>3</sub>
  • HY-113320S
    Etiocholanolone-d5
    99.20%
    Etiocholanolone-d5 is the deuterium labeled Etiocholanolone. Etiocholanolone (5β-Androsterone) is the excreted metabolite of testosterone and has anticonvulsant activity. Etiocholanolone is a less potent?neurosteroid positive allosteric modulator?(PAM) of the GABAA?receptor than its?enantiomer form.
    Etiocholanolone-d<sub>5</sub>
  • HY-133967
    (25R)-26-Hydroxycholest-4-en-3-one
    (25R)-26-Hydroxycholest-4-en-3-one is an oxysterol.
    (25R)-26-Hydroxycholest-4-en-3-one
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