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fatty acid metabolism

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73

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6

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1

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8

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2

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16

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3

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1

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3

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Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-128851B

    Endogenous Metabolite Fatty Acid Synthase (FASN) Metabolic Disease Cancer
    Coenzyme A (CoASH) sodium is a ubiquitous and essential cofactor, which is an acyl group carrier and carbonyl-activating group for the citric acid cycle and fatty acid metabolism. Coenzyme A plays a central role in the oxidation of pyruvate in the citric acid cycle and the metabolism of carboxylic acids, including short- and long-chain fatty acids .
    Coenzyme A sodium
  • HY-128851

    Endogenous Metabolite Fatty Acid Synthase (FASN) Metabolic Disease Cancer
    Coenzyme A (CoASH) is a ubiquitous and essential cofactor, which is an acyl group carrier and carbonyl-activating group for the citric acid cycle and fatty acid metabolism. Coenzyme A plays a central role in the oxidation of pyruvate in the citric acid cycle and the metabolism of carboxylic acids, including short- and long-chain fatty acids .
    Coenzyme A
  • HY-128851A

    Endogenous Metabolite Fatty Acid Synthase (FASN) Metabolic Disease Cancer
    Coenzyme A (CoASH) is a ubiquitous and essential cofactor, which is an acyl group carrier and carbonyl-activating group for the citric acid cycle and fatty acid metabolism. Coenzyme A plays a central role in the oxidation of pyruvate in the citric acid cycle and the metabolism of carboxylic acids, including short- and long-chain fatty acids .
    Coenzyme A trilithium
  • HY-147309

    Fluorescent Dye Others
    16-Azidohexadecanoic acid, a synthetic fatty acid, can be used as a modification marker for nucleotides and a molecular probe for fatty acid metabolism . 16-Azidohexadecanoic acid is a click chemistry reagent, it contains an Azide group and can undergo copper-catalyzed azide-alkyne cycloaddition reaction (CuAAc) with molecules containing Alkyne groups. It can also undergo strain-promoted alkyne-azide cycloaddition (SPAAC) reactions with molecules containing DBCO or BCN groups.
    16-Azidohexadecanoic acid
  • HY-B0399
    L-Carnitine
    Maximum Cited Publications
    16 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-147004

    Acetyl-CoA Carboxylase Metabolic Disease
    A-908292 is a potent and selective acetyl-CoA carboxylase 2 (ACC2) inhibitor, with an IC50 of 23 nM for human ACC2. A-908292 can be used for the research of fatty acid metabolism . A-908292 is a click chemistry reagent, it contains an Alkyne group and can undergo copper-catalyzed azide-alkyne cycloaddition (CuAAc) with molecules containing Azide groups.
    A-908292
  • HY-B0399R

    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-113069

    Endogenous Metabolite Metabolic Disease
    Decanoylcarnitine is a fatty ester lipid and an acylcarnitine derivative, which is a metabolite associated with impaired fatty acid metabolism in the elderly population .
    Decanoylcarnitine
  • HY-W783829

    Hex-2-trans-enoyl-CoA

    Endogenous Metabolite Metabolic Disease
    (2E)-Hexenoyl-CoA (Hex-2-trans-enoyl-CoA) is an intermediate in fatty acid metabolism. (2E)-Hexenoyl-CoA is the substrate of the enzymes enoyl-coenzyme A reductase, acyl-CoA oxidase, acyl-CoA dehydrogenase, long-chain-acyl-CoA dehydrogenase and Oxidoreductases .
    (2E)-Hexenoyl-CoA
  • HY-145952

    Lipoxygenase Metabolic Disease
    (2E,9Z)-Octadeca-2,9-dienoic acid, a polyunsaturated fatty acid, can be used for the research of lipoxygenase-dependent metabolism .
    (2E,9Z)-Octadeca-2,9-dienoic acid
  • HY-B2246
    L-Carnitine hydrochloride
    Maximum Cited Publications
    16 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-B2246R

    Endogenous Metabolite Metabolic Disease Cancer
    L-Carnitine (hydrochloride) (Standard) is the analytical standard of L-Carnitine (hydrochloride). This product is intended for research and analytical applications. 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) (Standard)
  • HY-141466

    Endogenous Metabolite Metabolic Disease
    Crotonyl-CoA is an intermediate in the fermentation of butyric acid, and in the metabolism of lysine and tryptophan. Crotonyl-CoA is important in the metabolism of fatty acids and amino acids .
    Crotonyl-CoA
  • HY-145503

    Drug Derivative Metabolic Disease
    Decanoyl-L-carnitine chloride is an ester derivative of L-carnitine, which is an important cofactor of fatty acid metabolism .
    Decanoyl-L-carnitine chloride
  • HY-126912A

    Biochemical Assay Reagents Endogenous Metabolite Others
    Lauroyl coenzyme A lithium salt is an intermediary in fatty acid synthesis or metabolism, formed by combining long-chain fatty acids (or lauric acid) with coenzyme A. Lauroyl coenzyme A lithium salt is involved in lipid biosynthesis and fatty acid transport, in which coenzyme A acts as a transport molecule to help move and target specific compounds.
    Lauroyl coenzyme A lithium
  • 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[1][2].
    L-Carnitine-d9
  • HY-159422

    Acyltransferase Metabolic Disease
    S-309309 is an orally active and selective MGAT2 inhibitor. S-309309 can be used in metabolism-related research .
    S-309309
  • HY-141466A

    Endogenous Metabolite Metabolic Disease
    Crotonyl-CoA tetrasodium is the tetrasodium salt form of Crotonyl-CoA (HY-141466). Crotonyl-CoA tetrasodium is an intermediate in the fermentation of butyric acid, and in the metabolism of lysine and tryptophan. Crotonyl-CoA tetrasodium is important in the metabolism of fatty acids and amino acids .
    Crotonyl-CoA tetrasodium
  • HY-E70256

    Lauroyl coenzyme A triammonium

    Biochemical Assay Reagents Endogenous Metabolite Others
    12:0 Coenzyme A (Lauroyl coenzyme A triammonium) is an intermediary in fatty acid synthesis or metabolism, formed by combining long-chain fatty acids (or lauric acid) with coenzyme A. 12:0 Coenzyme A is involved in lipid biosynthesis and fatty acid transport, in which coenzyme A acts as a transport molecule to help move and target specific compounds .
    12:0 Coenzyme A
  • HY-B0511
    Biotin
    10+ Cited Publications

    Vitamin B7; Vitamin H; D-Biotin

    Endogenous Metabolite Metabolic Disease
    Biotin, vitamin B7 and serves as a coenzyme for five carboxylases in humans, involved in the synthesis of fatty acids, isoleucine, and valine, and in gluconeogenesis. Biotin is necessary for cell growth, the production of fatty acids, and the metabolism of fats and amino acids .
    Biotin
  • HY-128851R

    Fatty Acid Synthase (FASN) Endogenous Metabolite Metabolic Disease Cancer
    Coenzyme A (Standard)
  • HY-Y1422B

    Endogenous Metabolite Metabolic Disease
    Lipase (MS grade) catalyzes the hydrolysis of triacylglycerols to release long-chain fatty acids in a site-specific manner.
    Lipase (MS grade)
  • HY-B0511A

    Vitamin B7 sodium; Vitamin H sodium; D-Biotin sodium

    Endogenous Metabolite Metabolic Disease
    Biotin (Vitamin B7) sodium is a water-soluble B vitamin and serves as a coenzyme for five carboxylases in humans, involved in the synthesis of fatty acids, isoleucine, and valine, and in gluconeogenesis. Biotin sodium is necessary for cell growth, the production of fatty acids, and the metabolism of fats and amino acids .
    Biotin sodium
  • HY-B0511R

    Vitamin B7 (Standard); Vitamin H (Standard); D-Biotin (Standard)

    Endogenous Metabolite Metabolic Disease
    Biotin (Standard) is the analytical standard of Biotin. Biotin, vitamin B7 and serves as a coenzyme for five carboxylases in humans, involved in the synthesis of fatty acids, isoleucine, and valine, and in gluconeogenesis. Biotin is necessary for cell growth, the production of fatty acids, and the metabolism of fats and amino acids .
    Biotin (Standard)
  • HY-D1736

    Fluorescent Dye Others
    BODIPY FL-C16 is a fluorescent probe that combines BODIPY FL dye and a sixteen-carbon fatty acid chain, and it can be used for lipid metabolism-related research .
    BODIPY FL-C16
  • HY-145503S

    Isotope-Labeled Compounds Others Metabolic Disease
    Decanoyl-L-carnitine-d9 (chloride) is deuterium labeled Decanoyl-L-carnitine (chloride). Decanoyl-L-carnitine chloride is an ester derivative of L-carnitine, which is an important cofactor of fatty acid metabolism .
    Decanoyl-L-carnitine-d9 chloride
  • HY-111487

    Endogenous Metabolite Metabolic Disease Cancer
    α-methylacyl-CoA racemase 1 is an enzyme that catalyzes a key chiral inversion step in the metabolism of branched-chain fatty acids, and used as a maker in prostate and other cancer.
    α-Methylacyl-CoA racemase 1
  • HY-153392

    Oxidative Phosphorylation HDAC Cardiovascular Disease
    TYA-018 is an orally active, potent and highly selective HDAC6 inhibitor. TYA-018 can protect heart function in mice. TYA-018 also enhances energetics in mice by increasing expression of targets associated with fatty acid metabolism, protein metabolism, and oxidative phosphorylation .
    TYA-018
  • HY-168375

    Fluorescent Dye Metabolic Disease
    BODIPY-Palmitate is a fluorescently labeled palmitic acid (HY-N0830), with excitation/emission maxima at 488/508 nm. BODIPY-Palmitate can be used to detect fatty acid uptake and metabolism .
    BODIPY-Palmitate
  • HY-E70477

    Cytochrome P450 Metabolic Disease
    Human CYP4A11, Low-Reductase, a recombinant CYP4A11, is a member of the CYP4 enzyme family and is involved in the metabolism of medium- and long-chain fatty acids. Human CYP4A11, Low-Reductase primarily metabolizes endobiotics and catalyzes the ω-hydroxylation of fatty acids in human liver and kidney tissues .
    Human CYP4A11,Low-Reductase
  • HY-E70478

    Cytochrome P450 Metabolic Disease
    Human CYP4A11, High-Reductase, a recombinant CYP4A11, is a member of the CYP4 enzyme family and is involved in the metabolism of medium- and long-chain fatty acids. Human CYP4A11, High-Reductase primarily metabolizes endobiotics and catalyzes the ω-hydroxylation of fatty acids in human liver and kidney tissues .
    Human CYP4A11,High-Reductase
  • HY-161702

    FABP Metabolic Disease
    RO6806051 (compound12) is a potent dual fatty acid binding protein 4 and 5 (FABP4 and FABP5) inhibitor with good selectivity and absorption, distribution, metabolism and excretion (eADME) properties .
    RO6806051
  • HY-148795

    Apical Sodium-Dependent Bile Acid Transporter Cardiovascular Disease Metabolic Disease
    Ritivixibat is an inhibitor of ileal bile acid transporter (IBAT), as well as a bile acid modulator. Ritivixibat can be used for research of cardiovascular diseases, fatty acid metabolism and glucose utilization disorders, gastrointestinal diseases and liver diseases .
    Ritivixibat
  • HY-17640

    Fatty Acid Synthase (FASN) Autophagy Metabolic Disease
    Nicodicosapent is a fatty acid niacin conjugate that is also an inhibitor of the sterol regulatory element binding protein (SREBP), a key regulator of cholesterol metabolism proteins such as PCSK9, HMG-CoA reductase, ATP citrate lyase, and NPC1L1.
    Nicodicosapent
  • HY-126718

    Ketohypoglycin

    Mitochondrial Metabolism Metabolic Disease
    Methylenecyclopropylpyruvate (Ketohypoglycin) is an inhibitor for gluconeogenesis. Methylenecyclopropylpyruvate inhibits ketogenesis and affects the fatty acids metabolism. Methylenecyclopropylpyruvate may interfere with the mitochondrial β-oxidation pathway, affects the contents and composition of coenzyme A, and affects the glucose homeostasis .
    Methylenecyclopropylpyruvate
  • HY-149545

    1,3-Dipalmitoyl-2-docosahexaenoyl glycerol

    Fatty Acid Synthase (FASN) Metabolic Disease
    1,3-Palmitin-2-docosahexaenoin (1,3-Dipalmitoyl-2-docosahexaenoyl glycerol) is the isomer of triacylglycerol (TAG), in which docosahexaenoic acid (DHA) is located at the β position (sn-2) of the glycerol backbone. 1,3-Palmitin-2-docosahexaenoin inhibits fatty acid synthase and cholesterol metabolism enzymes, activates carnitine palmitoyltransferase (CPT) in liver mitochondria and promotes β-oxidation of fatty acids. 1,3-Palmitin-2-docosahexaenoin exhibits lipid metabolism regulating activity .
    1,3-Palmitin-2-docosahexaenoin
  • HY-E70489

    Cytochrome P450 Metabolic Disease
    Human CYP4A11, High-Reductase+b5, a recombinant CYP4A11, is a member of the CYP4 enzyme family and is involved in the metabolism of medium- and long-chain fatty acids. Human CYP4A11, High-Reductase+b5 primarily metabolizes endobiotics and catalyzes the ω-hydroxylation of fatty acids in human liver and kidney tissues .
    Human CYP4A11,High-Reductase+b5
  • HY-136408

    Malonyl coenzyme A lithium

    Mitochondrial Metabolism Metabolic Disease
    Malonyl CoA (Malonyl Coenzyme A) lithium is an inhibitor of carnitine palmitoyl transferase 1 (CPT1). High Malonyl CoA lithium concentrations suppress fatty acid oxidation, while low Malonyl CoA lithium concentrations are permissive for fat oxidation .
    Malonyl CoA lithium
  • HY-15259A
    CP-640186 hydrochloride
    5+ Cited Publications

    Acetyl-CoA Carboxylase Metabolic Disease
    CP-640186 hydrochloride is an orally active and cell-permeable Acetyl-CoA carboxylase (ACC) inhibitor with IC50s of 53 nM and 61 nM for rat liver ACC1 and rat skeletal muscle ACC2 respectively. Acetyl-CoA carboxylase (ACC) is a key enzyme of fatty acid metabolism that enables the synthesis of malonyl-CoA. CP-640186 hydrochloride can also stimulate muscle fatty acid oxidation .
    CP-640186 hydrochloride
  • HY-15259
    CP-640186
    5+ Cited Publications

    Acetyl-CoA Carboxylase Metabolic Disease
    CP-640186 is an orally active and cell-permeable Acetyl-CoA carboxylase (ACC) inhibitor with IC50s of 53 nM and 61 nM for rat liver ACC1 and rat skeletal muscle ACC2 respectively. Acetyl-CoA carboxylase (ACC) is a key enzyme of fatty acid metabolism that enables the synthesis of malonyl-CoA. CP-640186 can also stimulate muscle fatty acid oxidation .
    CP-640186
  • HY-132178

    Endogenous Metabolite Metabolic Disease Cancer
    Cytochrome P450 is a family of monooxygenase enzymes that catalyzes the conversion of fatty acids to terminal alkenes using hydrogen peroxide as a cosubstrate. Cytochrome P450 as membrane-bound hemoproteins, plays important roles in the detoxification of drugs, cellular metabolism, and homeostasis .
    Cytochrome P450
  • HY-116538

    trans-10,cis-12 CLA2

    Endogenous Metabolite PPAR Metabolic Disease Inflammation/Immunology Cancer
    (10E,12Z)-Octadeca-10,12-dienoic acidactivates PPAR α and inhibits adipocyte differentiation . (10E,12Z)-Octadeca-10,12-dienoic acid and its downstream metabolites have various antioxidant and antitumor activities. (10E,12Z)-Octadeca-10,12-dienoic acid is effective orally .
    (10E,12Z)-Octadeca-10,12-dienoic acid
  • HY-116538R

    Endogenous Metabolite PPAR Metabolic Disease Inflammation/Immunology Cancer
    (10E,12Z)-Octadeca-10,12-dienoic acid (Standard) is the analytical standard of (10E,12Z)-Octadeca-10,12-dienoic acid. This product is intended for research and analytical applications. (10E,12Z)-Octadeca-10,12-dienoic acidactivates PPAR α and inhibits adipocyte differentiation . (10E,12Z)-Octadeca-10,12-dienoic acid and its downstream metabolites have various antioxidant and antitumor activities. (10E,12Z)-Octadeca-10,12-dienoic acid is effective orally .
    (10E,12Z)-Octadeca-10,12-dienoic acid (Standard)
  • HY-139577

    IMB-1018972; IMB-101

    Mitochondrial Metabolism Cardiovascular Disease Metabolic Disease
    Ninerafaxstat (IMB-1018972) is a novel orally active cardiac mitochondrial drug that restores myocardial energy homeostasis. Ninerafaxstat competitively inhibits 3-ketoacyl-CoA thiolase (3-KAT) to partially suppress fatty acid oxidation, and shifts cardiac energy metabolism from free fatty acid oxidation to glucose oxidation, regulating myocardial substrate utilization and thereby improving cardiac efficiency. Ninerafaxstat can be used for research on cardiovascular diseases .
    Ninerafaxstat
  • HY-108022A

    MSDC-0602K

    Insulin Receptor PPAR Metabolic Disease
    Azemiglitazone potassium (MSDC-0602K), a PPARγ-sparing thiazolidinedione (Ps-TZD), binds to PPARγ with the IC50 of 18.25 μM . Azemiglitazone potassium modulates the mitochondrial pyruvate carrier (MPC). Azemiglitazone potassium can be used for the research of fatty liver including dysfunctional lipid metabolism, inflammation, and insulin resistance . Azemiglitazone potassium, an insulin sensitizer, improves insulinemia and fatty liver disease in mice, alone and in combination with Liraglutide .
    Azemiglitazone potassium
  • HY-B2246S

    (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[1][2][3].
    L-Carnitine-d9 chloride
  • HY-139577A

    MB-1018972 trihydrochloride; IMB-101 trihydrochloride

    Mitochondrial Metabolism Cardiovascular Disease Metabolic Disease
    Ninerafaxstat trihydrochloride (IMB-1018972 trihydrochloride) is the trihydrochloride salt form of Ninerafaxstat (HY-139577). Ninerafaxstat trihydrochloride is a novel orally active cardiac mitochondrial drug that restores myocardial energy homeostasis. Ninerafaxstat trihydrochloride competitively inhibits 3-ketoacyl-CoA thiolase (3-KAT) to partially suppress fatty acid oxidation, and shifts cardiac energy metabolism from free fatty acid oxidation to glucose oxidation, regulating myocardial substrate utilization and thereby improving cardiac efficiency. Ninerafaxstat trihydrochloride can be used for research on cardiovascular diseases .
    Ninerafaxstat trihydrochloride
  • HY-16100
    BI 99179
    1 Publications Verification

    Fatty Acid Synthase (FASN) Metabolic Disease Cancer
    BI 99179 is a potent and selective type I fatty acid synthase (FAS) inhibitor with an IC50 of 79 nM. BI 99179 is a tool compound suitable for the in vivo validation of FAS as a target for lipid metabolism related diseases. BI 99179 exhibits significant exposure (both peripheral and central) upon oral administration in rats .
    BI 99179
  • HY-B1334

    Mitochondrial Metabolism Apoptosis Cardiovascular Disease Cancer
    Perhexiline is an orally active CPT1 and CPT2 inhibitor that reduces fatty acid metabolism. Perhexiline induces mitochondrial dysfunction and apoptosis in hepatic cells. Perhexiline can cross the blood brain barrier (BBB) and shows anti-tumor activity. Perhexiline can be used in the research of cancers, and cardiovascular disease like angina .
    Perhexiline
  • HY-B1334A
    Perhexiline maleate
    3 Publications Verification

    Mitochondrial Metabolism Apoptosis Cardiovascular Disease Cancer
    Perhexiline maleate is an orally active CPT1 and CPT2 inhibitor that reduces fatty acid metabolism. Perhexiline maleate induces mitochondrial dysfunction and apoptosis in hepatic cells. Perhexiline maleate can cross the blood brain barrier (BBB) and shows anti-tumor activity. Perhexiline maleate can be used in the research of cancers, and cardiovascular disease like angina .
    Perhexiline maleate

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