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β-Oxidation

" in MedChemExpress (MCE) Product Catalog:

118

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1

Screening Libraries

1

Fluorescent Dyes

12

Biochemical Assay Reagents

44

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Products

17

Isotope-Labeled Compounds

3

Oligonucleotides

1

GMP Molecules

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-50202
    Etomoxir
    Maximum Cited Publications
    128 Publications Verification

    (R)-(+)-Etomoxir

    Carnitine Palmitoyltransferase (CPT) Apoptosis Metabolic Disease Cancer
    Etomoxir ((R)-(+)-Etomoxir) is an irreversible inhibitor of carnitine palmitoyltransferase 1a (CPT-1a), inhibits fatty acid oxidation (FAO) through CPT-1a and inhibits palmitate β-oxidation in human, rat and guinea pig.
    Etomoxir
  • HY-B0399
    L-Carnitine
    Maximum Cited Publications
    20 Publications Verification

    (R)-Carnitine; Levocarnitine

    Endogenous Metabolite Neurological Disease Cancer
    L-Carnitine ((R)-Carnitine), a highly polar, small zwitterion, is an essential co-factor for the mitochondrial β-oxidation pathway. L-Carnitine functions to transport long chain fatty acyl-CoAs into the mitochondria for degradation by β-oxidation. L-Carnitine is an antioxidant. L-Carnitine can ameliorate metabolic imbalances in many inborn errors of metabolism .
    L-Carnitine
  • HY-F0001
    NADH disodium salt
    5+ Cited Publications

    Disodium NADH

    Endogenous Metabolite Metabolic Disease
    NADH disodium salt (Disodium NADH) is an orally active reduced coenzyme. NADH disodium salt is a donor of ADP-ribose units in ADP-ribosylaton reactions and a precursor of cyclic ADP-ribose. NADH disodium salt plays a role as a regenerative electron donor in cellular energy metabolism, including glycolysis, β-oxidation and the tricarboxylic acid (TCA) cycle .
    NADH disodium salt
  • HY-50202A
    Etomoxir sodium salt
    Maximum Cited Publications
    128 Publications Verification

    (R)-(+)-Etomoxir sodium salt

    Carnitine Palmitoyltransferase (CPT) Apoptosis Metabolic Disease Cancer
    Etomoxir((R)-(+)-Etomoxir) sodium salt is an irreversible inhibitor of carnitine palmitoyltransferase 1a (CPT-1a), inhibits fatty acid oxidation (FAO) through CPT-1a and inhibits palmitate β-oxidation in human, rat and guinea pig .
    Etomoxir sodium salt
  • 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-B0968A
    Trimetazidine
    15+ Cited Publications

    Autophagy Cardiovascular Disease
    Trimetazidine is a selective long chain 3-ketoyl coenzyme A thiolase inhibitor with an IC50 of 75 nM, which can inhibit β-oxidation of free fatty acid (FFA). Trimetazidine is an effective antianginal agent and a cytoprotective agent, has anti-oxidant, anti-inflammatory, antinociceptive and gastroprotective properties. Trimetazidine triggers autophagy. Trimetazidine is also a 3-hydroxyacyl-CoA dehydrogenase (HADHA) inhibitor .
    Trimetazidine
  • HY-134427
    Palmitoyl coenzyme A lithium
    2 Publications Verification

    Palmitoyl CoA lithium

    Endogenous Metabolite Metabolic Disease
    Palmitoyl coenzyme A lithium is an acyl-CoA thioester that can be transported into the mitochondrial matrix via the carnitine shuttle system and is involved in β-oxidation. Palmitoyl coenzyme A lithium can also be used as a substrate for sphingosine biosynthesis .
    Palmitoyl coenzyme A lithium
  • HY-N0186
    Indole-3-butyric acid
    1 Publications Verification

    Indolebutyric acid

    Environmental Pollutants Endogenous Metabolite Others
    Indole-3-butyric acid (3-indolebutyric acid) is a plant growth auxin and a good rooting agent. It can promote herbs and woody ornamental plant rooting and used for improving fruit rate. Indole 3-butyric acid is an auxin precursor, and is converted to indole 3-acetic acid (IAA) in a peroxisomal β-oxidation process .
    Indole-3-butyric acid
  • 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-B0762
    Acetyl-L-carnitine hydrochloride
    2 Publications Verification

    O-Acetyl-L-carnitine hydrochloride; ALCAR hydrochloride

    Caspase Apoptosis Neurological Disease
    Acetyl-L-carnitine (O-Acetyl-L-carnitine; ALCAR) hydrochloride is an orally active mitochondrial energy metabolism regulator and neuroprotectant that can penetrate the blood-brain barrier. Acetyl-L-carnitine hydrochloride selectively enters cells and the brain through the organic cation transporter OCTN2. Acetyl-L-carnitine hydrochloride can participate in fatty acid β-oxidation, promote acetylcholine synthesis, regulate mitochondrial function and inhibit oxidative stress as an acetyl donor. Acetyl-L-carnitine hydrochloride exerts its activity by enhancing energy metabolism, protecting neurons and improving synaptic plasticity. Acetyl-L-carnitine hydrochloride is mainly used in the study of neurodegenerative diseases and metabolic disorder-related diseases such as neonatal hypoxic-ischemic brain damage, Alzheimer's disease, and depression .
    Acetyl-L-carnitine hydrochloride
  • HY-W015924

    Endogenous Metabolite Metabolic Disease
    2-Hydroxyisobutyric acid (2-HIBA) is a selective modulator of the Insulin/IGF-1 pathway and the p38 MAPK pathway, which reduces reactive oxygen species (ROS) and fat accumulation in Caenorhabditis elegans. 2-Hydroxyisobutyric acid promotes β-oxidation and inhibits fatty acid synthesis by upregulating SKN-1/NRF2 and downregulating SREBP-1c transcription factors. 2-Hydroxyisobutyric acid has anti-aging and lipid-lowering effects, and can be used to study metabolic diseases such as obesity and diabetes. 2-Hydroxyisobutyric acid is also a renewable precursor of methacrylate through 2-HIB-CoA mutase-mediated biosynthesis[1][2].
    2-Hydroxyisobutyric acid
  • HY-N0458
    Pedunculoside
    3 Publications Verification

    Fatty Acid Synthase (FASN) Metabolic Disease
    Pedunculoside exerts lipid-lowering effects partly through the regulation of?lipogenesis?and?fatty acid β-oxidation .
    Pedunculoside
  • HY-E70009

    ACO

    Glutathione Peroxidase Others
    Acyl-CoA oxidase (ACO) is a peroxisomal catalyst. Acyl-CoA oxidase acts as a key rate-limiting enzyme in the process of peroxisomal fatty acid β-oxidation. Acyl-CoA oxidase participates in lipid catabolism and phytohormone biosynthesis pathways .
    Acyl-CoA oxidase
  • HY-113218
    Acetyl-L-carnitine
    2 Publications Verification

    O-Acetyl-L-carnitine; ALCAR

    Caspase Apoptosis Neurological Disease
    Acetyl-L-carnitine (O-Acetyl-L-carnitine; ALCAR) is an orally active mitochondrial energy metabolism regulator and neuroprotectant that can penetrate the blood-brain barrier. Acetyl-L-carnitine selectively enters cells and the brain through the organic cation transporter OCTN2. Acetyl-L-carnitine can participate in fatty acid β-oxidation, promote acetylcholine synthesis, regulate mitochondrial function and inhibit oxidative stress as an acetyl donor. Acetyl-L-carnitine exerts its activity by enhancing energy metabolism, protecting neurons and improving synaptic plasticity. Acetyl-L-carnitine is mainly used in the study of neurodegenerative diseases and metabolic disorder-related diseases such as neonatal hypoxic-ischemic brain damage, Alzheimer's disease, and depression .
    Acetyl-L-carnitine
  • HY-113166
    Dodecanoylcarnitine
    1 Publications Verification

    (-)-Lauroylcarnitine

    Endogenous Metabolite Metabolic Disease Inflammation/Immunology
    Dodecanoylcarnitine ((-)-Lauroylcarnitine) is a medium long-chain acylcarnitine, an intermediate product in key energy metabolic pathways of fatty acid β-oxidation and amino acids catabolism. The abnormal decrease in the Dodecanoylcarnitine levels indicats that mitochondrial fuel metabolism, including fatty acid oxidation is significantly disturbed. Changes in plasma concentrations of Dodecanoylcarnitine are not only associated with type II diabetes, but also with pre-diabetes status. Dodecanoylcarnitine is present in fatty acid oxidation disorders such as long-chain acyl CoA dehydrogenase deficiency, carnitine palmitoyltransferase I/II deficiency, and is also associated with celiac disease. Dodecanoylcarnitine deomonstrates high sensitivities and specificities in predicting asthma. Combined model of Decanoylcarnitine (HY-113069), Dodecanoylcarnitine, PC (16:0/0:0), and Asp Arg Pro can be used as a potential biomarker for the diagnosis of Yin-deficiency-heat syndrome .
    Dodecanoylcarnitine
  • HY-B2246
    L-Carnitine hydrochloride
    Maximum Cited Publications
    20 Publications Verification

    (R)-Carnitine hydrochloride; Levocarnitine hydrochloride

    Endogenous Metabolite Metabolic Disease Cancer
    L-Carnitine hydrochloride ((R)-Carnitine hydrochloride), a highly polar, small zwitterion, is an essential co-factor for the mitochondrial β-oxidation pathway. L-Carnitine hydrochloride functions to transport long chain fatty acyl-CoAs into the mitochondria for degradation by β-oxidation. L-Carnitine hydrochloride is an antioxidant. L-Carnitine hydrochloride can ameliorate metabolic imbalances in many inborn errors of metabolism .
    L-Carnitine hydrochloride
  • HY-B0968
    Trimetazidine dihydrochloride
    15+ Cited Publications

    Autophagy Cardiovascular Disease
    Trimetazidine dihydrochloride is a selective long chain 3-ketoyl coenzyme A thiolase inhibitor with an IC50 of 75 nM, which can inhibit β-oxidation of free fatty acid (FFA). Trimetazidine dihydrochloride is an effective antianginal agent and a cytoprotective agent, has anti-oxidant, anti-inflammatory, antinociceptive and gastroprotective properties. Trimetazidine dihydrochloride triggers autophagy. Trimetazidine dihydrochloride is also a 3-hydroxyacyl-CoA dehydrogenase (HADHA) inhibitor .
    Trimetazidine dihydrochloride
  • HY-B2004

    Environmental Pollutants Fungal Mitochondrial Metabolism Infection
    Thifluzamide is a fungicide that inhibits fungal respiration by blocking the ubiquinone-binding site in mitochondrial complex II. Thifluzamide exhibits significant activity against Basidiomycota pathogens (such as Rhizoctonia cerealis, Ustilago and Puccinia genera) and is commonly used in studies on wheat sharp eyespot. Thifluzamide displays a dual mechanism in regulating lipid metabolism: it reduces fatty acid synthase activity to inhibit endogenous fatty acid synthesis, and increases carnitine palmitoyltransferase-I activity to accelerate fatty acid β-oxidation, thereby reducing total cholesterol and triglyceride levels in the liver. Thifluzamide also induces hepatotoxicity in zebrafish models and carries a risk of developmental toxicity. Thifluzamide inhibition of Rhizoctonia cerealis may result in low to moderate levels of drug resistance, leading to the generation of stable drug-resistant mutants .
    Thifluzamide
  • HY-W105518
    L-Carnitine tartrate
    Maximum Cited Publications
    20 Publications Verification

    Endogenous Metabolite Neurological Disease
    L-Carnitine tartrate is a highly polar, small zwitterion. L-Carnitine tartrate is an essential co-factor for the mitochondrial β-oxidation pathway. L-Carnitine tartrate functions to transport long chain fatty acyl-CoAs into the mitochondria for degradation by β-oxidation. L-Carnitine tartrate is an antioxidant. L-Carnitine tartrate can ameliorate metabolic imbalances in many inborn errors of metabolism [3] .
    L-Carnitine tartrate
  • HY-N0396
    Harpagoside
    4 Publications Verification

    COX NO Synthase Inflammation/Immunology Cancer
    Harpagoside can be obtained by Harpagophytum procumbens, which has anti-inflammatory, anti-cancer, protective activity, and efficacy. Harpagoside has an inhibitory effect on COX-1 and COX-2 active, and suppresses NO production. Harpagoside inhibits HepG2 cell lipid polysaccharide, which is a protein that is expressed horizontally and selectively, and has anti-inflammatory and latent pain effects. Harpagoside has the ability to protect the body, and has a degenerative effect on the β-oxidation (Aβ).
    Harpagoside
  • 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-113201

    Endogenous Metabolite Neurological Disease
    Tetradecanoylcarnitine is an acylcarnitine involved in mitochondrial β-oxidation of long-chain saturated fatty acids and fatty acid metabolism. Tetradecanoylcarnitine serves as a biomarker for very long-chain acyl-CoA dehydrogenase deficiency and MPTP (HY-15608)-induced Parkinson's disease. Tetradecanoylcarnitine exhibits a characteristic significant elevation in plasma levels in patients with sarcopenia, including those complicated with hypertension, and this elevation is closely associated with an increased risk of death. Tetradecanoylcarnitine is widely used in research on the pathological mechanisms of diseases such as Parkinson's disease and sarcopenia .
    Tetradecanoylcarnitine
  • HY-B0762S

    O-Acetyl-L-carnitine-d3 hydrochloride

    Isotope-Labeled Compounds Caspase Apoptosis Neurological Disease
    Acetyl-L-carnitine-d3 (O-Acetyl-L-carnitine-d3) hydrochloride is the deuterium labeled Acetyl-L-carnitine hydrochloride (HY-B0762). Acetyl-L-carnitine (O-Acetyl-L-carnitine; ALCAR) hydrochloride is an orally active mitochondrial energy metabolism regulator and neuroprotectant that can penetrate the blood-brain barrier. Acetyl-L-carnitine hydrochloride selectively enters cells and the brain through the organic cation transporter OCTN2. Acetyl-L-carnitine hydrochloride can participate in fatty acid β-oxidation, promote acetylcholine synthesis, regulate mitochondrial function and inhibit oxidative stress as an acetyl donor. Acetyl-L-carnitine hydrochloride exerts its activity by enhancing energy metabolism, protecting neurons and improving synaptic plasticity. Acetyl-L-carnitine hydrochloride is mainly used in the study of neurodegenerative diseases and metabolic disorder-related diseases such as neonatal hypoxic-ischemic brain damage, Alzheimer's disease, and depression .
    Acetyl-L-carnitine-d3 hydrochloride
  • HY-B1453
    (±)-Carnitine chloride
    2 Publications Verification

    DL-Carnitine chloride; DL-Levocarnitine chloride

    Reactive Oxygen Species (ROS) Metabolic Disease
    (±)-Carnitine chloride exists in two isomers, known as D and L. L-carnitine plays an essential role in the β-oxidation of fatty acids and also shows antioxidant, and anti-inflammatory activities.
    (±)-Carnitine chloride
  • HY-113285

    3-Ureidopropionic acid

    Oxidative Phosphorylation Metabolic Disease
    Ureidopropionic acid is a mitochondrial respiratory chain complex V inhibitor that selectively inhibits the activity of mitochondrial respiratory chain complex V, with no effect on respiratory chain complexes I-IV or mitochondrial fatty acid β-oxidation. Ureidopropionic acid induces the production of reactive oxygen species, delayed elevation of intracellular calcium concentration, secondary energy-dependent excitotoxicity and neurodegeneration in neurons. Ureidopropionic acid promotes neuropathological changes by impairing mitochondrial energy metabolism, oxidative stress and excitotoxicity pathways. Ureidopropionic acid can be used in studies related to 3-ureidopropionase deficiency and severe propionic aciduria .
    Ureidopropionic acid
  • HY-F0001R
    NADH disodium salt (Standard)
    1 Publications Verification

    Disodium NADH (Standard)

    Reference Standards Endogenous Metabolite Metabolic Disease
    NADH (disodium salt) (Standard) is the analytical standard of NADH (disodium salt). This product is intended for research and analytical applications. NADH disodium salt (Disodium NADH) is an orally active reduced coenzyme. NADH disodium salt is a donor of ADP-ribose units in ADP-ribosylaton reactions and a precursor of cyclic ADP-ribose. NADH disodium salt plays a role as a regenerative electron donor in cellular energy metabolism, including glycolysis, β-oxidation and the tricarboxylic acid (TCA) cycle .
    NADH disodium salt (Standard)
  • HY-B2246S
    L-Carnitine-d9 chloride
    1 Publications Verification

    (R)-Carnitine-d9 chloride; Levocarnitine-d9 chloride

    Isotope-Labeled Compounds Endogenous Metabolite Metabolic Disease
    L-Carnitine-d9 (chloride)e is the deuterium labeled L-Carnitine chloride. L-Carnitine chloride, a highly polar, small zwitterion, is an essential co-factor for the mitochondrial β-oxidation pathway. L-Carnitine chloride functions to transport long chain fatty acyl-CoAs into the mitochondria for degradation by β-oxidation. L-Carnitine chloride is an antioxidant. L-Carnitine chloride can ameliorate metabolic imbalances in many inborn errors of metabolism .
    L-Carnitine-d9 chloride
  • HY-113158

    Drug Metabolite Metabolic Disease
    4-Hydroxyhippuric acid is a metabolite of polyphenols. 4-Hydroxyhippuric acid is generated via medium-chain acyl-CoA dehydrogenase (MCAD)-dependent β-oxidation of microbially-produced 3-(4-hydroxyphenyl)propionic acid, followed by host glycine conjugation. 4-Hydroxyhippuric acid can be simultaneously detected in urine as a biomarker of dietary polyphenol intake .
    4-Hydroxyhippuric acid
  • HY-B0399S
    L-Carnitine-d9
    1 Publications Verification

    (R)-Carnitine-d9; Levocarnitine-d9

    Isotope-Labeled Compounds Endogenous Metabolite Neurological Disease Metabolic Disease
    L-Carnitine-d9 is the deuterium labeled L-Carnitine. L-Carnitine (Levocarnitine) is an endogenous molecule involved in fatty acid metabolism, biosynthesized within the human body using amino acids: L-lysine and L-methionine, as substrates. L-Carnitine functions to transport long chain fatty acyl-CoAs into the mitochondria for degradation by β-oxidation. L-carnitine can ameliorate metabolic imbalances in many inborn errors of metabolism .
    L-Carnitine-d9
  • HY-B0399R

    (R)-Carnitine (Standard); Levocarnitine (Standard)

    Reference Standards Endogenous Metabolite Neurological Disease Cancer
    L-Carnitine (Standard) is the analytical standard of L-Carnitine. This product is intended for research and analytical applications. L-Carnitine ((R)-Carnitine), a highly polar, small zwitterion, is an essential co-factor for the mitochondrial β-oxidation pathway. L-Carnitine functions to transport long chain fatty acyl-CoAs into the mitochondria for degradation by β-oxidation. L-Carnitine is an antioxidant. L-Carnitine can ameliorate metabolic imbalances in many inborn errors of metabolism .
    L-Carnitine (Standard)
  • HY-E70523

    Valeryl-CoA; Valeryl-coenzyme A; Pentanoyl coenzyme A free acid

    Endogenous Metabolite Metabolic Disease
    Pentanoyl coenzyme A (Valeryl-CoA) is a short-chain fatty acyl-CoA that functions as an intermediate in mitochondrial β-oxidation and related metabolic pathways. Pentanoyl coenzyme A results from the formal condensation of the thiol group of coenzyme A with the carboxy group of pentanoic acid. Pentanoyl coenzyme A's levels can reflect changes in lipid metabolism under different physiological and pathological conditions. Pentanoyl coenzyme A can be used for research on lipid metabolism .
    Pentanoyl coenzyme A
  • HY-108571

    PPAR Cardiovascular Disease Metabolic Disease
    CP-775146 is a selective PPARα agonist (Ki of 24.5 nM) that binds strongly to the PPARα ligand. CP-775146 has no observable affinity for PPARβ and PPARγ.CP-775146 shows hypolipidemic activity. CP-775146 efficiently alleviates obesity-induced liver damage, prevents lipid accumulation by activating the liver fatty acid β-oxidation pathway .
    CP-775146
  • HY-B1453S1

    DL-Carnitine-d9 chloride; DL-Levocarnitine-d9 chloride

    Reactive Oxygen Species (ROS) Metabolic Disease
    (±)-Carnitine-d9 (chloride) is the deuterium labeled (±)-Carnitine chloride. (±)-Carnitine chloride exists in two isomers, known as D and L. L-carnitine plays an essential role in the β-oxidation of fatty acids and also shows antioxidant, and anti-inflammatory activities.
    (±)-Carnitine-d9 chloride
  • HY-W612338

    9-ONA

    Acetyl-CoA Carboxylase Inflammation/Immunology
    9-Oxononanoic acid (9-ONA) is an orally active acetyl-CoA carboxylase inhibitor. 9-Oxononanoic acid inhibits acetyl-CoA carboxylase via accumulation of long-chain acyl-CoA. 9-Oxononanoic acid increases carnitine palmitoyltransferase, isocitrate dehydrogenase and glucose 6-phosphate dehydrogenase activity to elevate β-oxidation and support NADPH (HY-113324) supplyactivity. 9-Oxononanoic acid stimulates phospholipase A2 activity via post-translational, non-transcriptional mechanisms. 9-Oxononanoic acid can be used for the research of atherothrombosis .
    9-Oxononanoic acid
  • HY-N0186A
    Indole-3-butyric acid potassium
    1 Publications Verification

    Indolebutyric acid potassium

    Endogenous Metabolite Others
    Indole-3-butyric acid (Indolebutyric acid) potassium is a plant growth auxin and a good rooting agent. It can promote herbs and woody ornamental plant rooting and used for improving fruit rate. Indole 3-butyric acid potassium is an auxin precursor, and is converted to indole 3-acetic acid (IAA) in a peroxisomal β-oxidation process .
    Indole-3-butyric acid potassium
  • HY-N0186R

    Indolebutyric acid (Standard)

    Reference Standards Endogenous Metabolite Others
    Indole-3-butyric acid (Standard) is the analytical standard of Indole-3-butyric acid. This product is intended for research and analytical applications. Indole-3-butyric acid (3-indolebutyric acid) is a plant growth auxin and a good rooting agent. It can promote herbs and woody ornamental plant rooting and used for improving fruit rate. Indole 3-butyric acid is an auxin precursor, and is converted to indole 3-acetic acid (IAA) in a peroxisomal β-oxidation process .
    Indole-3-butyric acid (Standard)
  • HY-168049

    PPAR Akt Metabolic Disease
    ZLY06 is an orally active dual agonist of peroxisome proliferator-activated receptor (PPAR) δ and γ (PPAR δ: EC50=341 nM; PPAR γ: EC50=237 nM). ZLY06 induces hepatic lipid accumulation by inhibiting the phosphorylation of AKT1, mediating the upregulation of CD36. In addition, ZLY06 significantly improves glucose and lipid metabolism without increasing body weight, and alleviates fatty liver by promoting β-oxidation of fatty acids and inhibiting hepatic lipogenesis .
    ZLY06
  • HY-B0762S1

    O-Acetyl-L-carnitine-d3-1 hydrochloride

    Isotope-Labeled Compounds Caspase Apoptosis Neurological Disease
    Acetyl-L-carnitine-d3-1 (O-Acetyl-L-carnitine-d3-1) hydrochloride is the deuterium labeled Acetyl-L-carnitine hydrochloride (HY-B0762). Acetyl-L-carnitine (O-Acetyl-L-carnitine; ALCAR) hydrochloride is an orally active mitochondrial energy metabolism regulator and neuroprotectant that can penetrate the blood-brain barrier. Acetyl-L-carnitine hydrochloride selectively enters cells and the brain through the organic cation transporter OCTN2. Acetyl-L-carnitine hydrochloride can participate in fatty acid β-oxidation, promote acetylcholine synthesis, regulate mitochondrial function and inhibit oxidative stress as an acetyl donor. Acetyl-L-carnitine hydrochloride exerts its activity by enhancing energy metabolism, protecting neurons and improving synaptic plasticity. Acetyl-L-carnitine hydrochloride is mainly used in the study of neurodegenerative diseases and metabolic disorder-related diseases such as neonatal hypoxic-ischemic brain damage, Alzheimer's disease, and depression .
    Acetyl-L-carnitine-d3-1 hydrochloride
  • HY-113304

    Endogenous Metabolite Metabolic Disease
    (S)-3,4-Dihydroxybutyric acid, a normal human urinary metabolite, is a β-oxidation metabolite of γ-hydroxybutyrate. (S)-3,4-Dihydroxybutyric acid can be used for research on succinic semialdehyde dehydrogenase deficiency .
    (S)-3,4-Dihydroxybutyric acid
  • HY-113304A

    Endogenous Metabolite Metabolic Disease
    (S)-3,4-Dihydroxybutyric acid lithium hydrate, a normal human urinary metabolite, is a β-oxidation metabolite of γ-hydroxybutyrate. (S)-3,4-Dihydroxybutyric acid lithium hydrate can be used for research on succinic semialdehyde dehydrogenase deficiency .
    (S)-3,4-Dihydroxybutyric acid lithium hydrate
  • HY-175673

    Carnitine Palmitoyltransferase (CPT) Apoptosis Oxidative Phosphorylation Mitochondrial Metabolism Reactive Oxygen Species (ROS) Cancer
    LCB-2151 (Compound 2), a nucleoside analogue, is an anticancer agent. LCB-2151 disrupts the two primary sources of ATP production (glycolysis and mitochondrial oxidative phosphorylation), reducing the bioenergetic capacity of KRAS-mutated pancreatic cancer cells and inducing ROS formation. LCB-2151 effectively inhibits key enzymes (such as CACT and CPT2) in glycolysis, the TCA cycle and fatty acid β-oxidation. LCB-2151 has significant cytotoxicity and induces cells apoptosis. LCB-2151 can be used for radiation therapy of cancers research .
    LCB-2151
  • HY-W420033

    Acyltransferase Carnitine Palmitoyltransferase (CPT) Others
    (S)-(+)-Etomoxir is the S enantiomer of Etomoxir (HY-50202). Etomoxir is an irreversible inhibitor of carnitine palmitoyltransferase 1a (CPT-1a), inhibits fatty acid oxidation (FAO) through CPT-1a and inhibits palmitate β-oxidation in human, rat and guinea pig .
    (S)-(+)-Etomoxir
  • HY-B0968R
    Trimetazidine dihydrochloride (Standard)
    4 Publications Verification

    Reference Standards Autophagy Cardiovascular Disease
    Trimetazidine (dihydrochloride) (Standard) is the analytical standard of Trimetazidine (dihydrochloride). This product is intended for research and analytical applications. Trimetazidine dihydrochloride is a selective long chain 3-ketoyl coenzyme A thiolase inhibitor with an IC50 of 75 nM, which can inhibit β-oxidation of free fatty acid (FFA). Trimetazidine dihydrochloride is an effective antianginal agent and a cytoprotective agent, has anti-oxidant, anti-inflammatory, antinociceptive and gastroprotective properties. Trimetazidine dihydrochloride triggers autophagy. Trimetazidine dihydrochloride is also a 3-hydroxyacyl-CoA dehydrogenase (HADHA) inhibitor .
    Trimetazidine dihydrochloride (Standard)
  • HY-N0186B

    IBA

    Biochemical Assay Reagents Others
    Indole-3-butyric acid,suitable for plant cell culture (IBA) is a plant auxin and a good rooting agent. Indole-3-butyric acid,suitable for plant cell culture can promote rooting of herbaceous and woody ornamental plants and is used to increase fruiting rate. Indole-3-butyric acid is an auxin precursor that is converted into indole 3-acetic acid (IAA) during peroxisomal β-oxidation. Indole-3-butyric acid,suitable for plant cell culture can be used for cell culture .
    Indole-3-butyric acid,suitable for plant cell culture
  • HY-124404

    Aryl Hydrocarbon Receptor Na+/K+ ATPase Prostaglandin Receptor Inflammation/Immunology
    12(R)-HETE is a CYP-dependent arachidonic acid metabolite that acts as a proinflammatory lipid mediator. 12 (R)-HETE widely exists in various tissues including the eye, skin and liver. In the cornea, 12(R)-HETE is metabolized via pathways such as β-oxidation into the precursor of 12(R)-HETrE. Without direct receptor binding, 12(R)-HETE indirectly activates AHR-mediated target gene transcription, while inhibiting the enzymatic activity of Na+,K+-ATPase and the intracellular calcium elevation induced by TP agonists. 12(R)-HETE also possesses multiple physiological effects such as chemotaxis, proangiogenesis, vasodilation, natriuresis, diuresis and intraocular pressure reduction, and can be widely used in studies related to psoriasis, inflammatory skin diseases and ocular inflammation .
    12(R)-HETE
  • HY-W015924R

    Reference Standards Endogenous Metabolite Metabolic Disease
    2-Hydroxyisobutyric acid (Standard) is the analytical standard of 2-Hydroxyisobutyric acid. This product is intended for research and analytical applications. 2-Hydroxyisobutyric acid (2-HIBA) is a selective modulator of the Insulin/IGF-1 pathway and the p38 MAPK pathway, which reduces reactive oxygen species (ROS) and fat accumulation in Caenorhabditis elegans. 2-Hydroxyisobutyric acid promotes β-oxidation and inhibits fatty acid synthesis by upregulating SKN-1/NRF2 and downregulating SREBP-1c transcription factors. 2-Hydroxyisobutyric acid has anti-aging and lipid-lowering effects, and can be used to study metabolic diseases such as obesity and diabetes. 2-Hydroxyisobutyric acid is also a renewable precursor of methacrylate through 2-HIB-CoA mutase-mediated biosynthesis[1][2].
    2-Hydroxyisobutyric acid (Standard)
  • HY-N11262

    Phosphodiesterase (PDE) Sirtuin PGC-1α p38 MAPK HSP TNF Receptor NO Synthase Apoptosis Metabolic Disease Inflammation/Immunology
    Sudachitin is an orally active compound that potently inhibits mouse PDE1C and human PDE4B, with IC50 values of 5.0 μM and 15.0 μM, respectively. Sudachitin upregulates Sirt1 and PGC‑1α expression in skeletal muscle to regulate energy metabolism and promote mitochondrial biogenesis. Sudachitin improves lipid metabolism, glucose tolerance, insulin sensitivity, energy expenditure, and fatty acid β‑oxidation. Sudachitin activates p38MAPK signaling, induces HSP27 phosphorylation and caspase‑dependent apoptosis, and blocks EGF‑driven keratinocyte migration and proliferation. Sudachitin suppresses LPS‑induced TNF‑α, NO, and iNOS expression in macrophages and shows potent anti‑inflammatory activity. Sudachitin can be used for the research of metabolic syndrome, type 2 diabetes, and psoriasis. .
    Sudachitin
  • HY-113201R

    Reference Standards Endogenous Metabolite Metabolic Disease
    Tetradecanoylcarnitine (Standard) is the analytical standard of Tetradecanoylcarnitine. This product is intended for research and analytical applications. Tetradecanoylcarnitine is a human carnitine involved in β-oxidation of long-chain fatty acids.
    Tetradecanoylcarnitine (Standard)
  • 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-137782

    Biochemical Assay Reagents Others
    Palmitoleoyl-CoA can be activated and transported into the mitochondria for metabolism, specifically for β-oxidation. Palmitoleoyl-CoA induces the cardiac mitochondrial membrane permeability transition, which causes mitochondrial dysfunction. Palmitoleoyl-CoA regulates metabolism via allosteric control of AMPK β1-isoforms .
    Palmitoleoyl-CoA

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