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benzoic acid, 3((ethylamino)carbonyl)

" in TargetMol Product Catalog
  • Inhibitors & Agonists
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Benzoic acid, 3-((ethylamino)carbonyl)-
T30378126926-33-8
Benzoic acid, 3-((ethylamino)carbonyl)- is a bioactive chemical.
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(6Z)-7-Phenyl-7-(3-Pyridinyl)-6-Heptenoic Acid
T7754889667-39-0In house
(6Z)-7-Phenyl-7-(3-Pyridinyl)-6-Heptenoic Acid is a derivative of 7-Phenyl-7-(3-Pyridyl) -6-Heptenoic Acid that can be used in biological research.
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4-(Aminomethyl)benzoic acid
T125256-91-7
4-(Aminomethyl)benzoic acid (PAMBA), an antifibrinolytic, is an unnatural amino acid derivative.
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2,3,4-Trifluoro-5-Nitro-Benzoic Acid
T9438197520-71-1
2,3,4-Trifluoro-5-Nitro-Benzoic Acid is a useful intermediate in organic synthesis. It has been used to study the effect of fluorine substitution on the reactivity of organic molecules. It has also been used to study the effect of nitro substitution on the reactivity of organic molecules.
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3-Chlorophenylboronic acid
T7751463503-60-6
3-Chlorophenylboronic acid, a phenylboronic acid derivative, is an important intermediate in the synthesis of prolyl hydroxylase inhibitors, and can be used to synthesize a variety of compounds.The IC50 of 3-Chlorophenylboronic acid for lysophospholipase LYPLA2 was 0.418 µM.
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3-Methyl-2-oxobutanoic acid
T5232759-05-7
3-Methyl-2-oxobutanoic acid (2-Oxoisovaleric acid) is an abnormal metabolite that arises from the incomplete breakdown of branched-chain amino acids. 3-Methyl-2-oxobutanoic acid is a neurotoxin, an acidogen, and a metabotoxin. A neurotoxin causes damage to nerve cells and nerve tissues. 3-Methyl-2-oxobutanoic acid is a keto-acid, which is a subclass of organic acids. Abnormally high levels of organic acids in the blood (organic acidemia), urine (organic aciduria), the brain, and other tissues lead to general metabolic acidosis.
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3-Ethoxy-3-oxopropanoic acid
T47731071-46-1
3-Ethoxy-3-oxopropanoic acid (Monoethyl malonic acid) belongs to the class of organic compounds known as dicarboxylic acids and derivatives. These are organic compounds containing exactly two carboxylic acid groups. 3-Ethoxy-3-oxopropanoic acid exists as a solid, soluble (in water), and a weakly acidic compound (based on its pKa). 3-Ethoxy-3-oxopropanoic acid has been primarily detected in blood. Within the cell, monoethyl malonic acid is primarily located in the cytoplasm.
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3-O-Ethyl-L-ascorbic acid
T796686404-04-8
3-O-Ethyl-L-ascorbic acid is a cosmetic tyrosinase inhibitor with whitening ability and is a stabilized vitamin C derivative. It also has antioxidant properties.
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4-Chloro-3-nitrobenzoic acid
T944296-99-1
4-Chloro-3-nitrobenzoic acid is a nitric oxide scavenger and has been used to study the effects of nitric oxide on the cardiovascular system and the effects of nitric oxide on the immune system.
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3-Methylbut-2-enoic acid
T5305541-47-9
3-Methylbut-2-enoic acid (Senecioic acid) appears in the urine of patients with 3-Methylcrotonic aciduria, which is a disorder characterized by urine that contains increased amounts of 3-methylcrotonic acid.
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trans-3-Indoleacrylic acid
T526229953-71-7
trans-3-Indoleacrylic acid is one of the endogenous metabolites that inhibits RSL3-induced ferroptosis and can be used to study colorectal cancer.
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(S)-2-Hydroxy-3-phenylpropanoic acid
T529020312-36-1
(S)-2-Hydroxy-3-phenylpropanoic acid (L-(−)-3-Phenyllactic acid) is a chiral aromatic compound involved in phenylalanine metabolism. It is likely produced from phenylpyruvate via lactate dehydrogenase. The D-form is derived from bacterial sources, while the L-form is endogenous. Phenyllactate levels are normally very low in blood or urine, but high levels indicate phenylketonuria (PKU) and hyperphenylalaninemia (HPA). PKU is due to a deficiency of phenylalanine hydroxylase (PAH), causing phenylalanine to convert to phenylpyruvic acid rather than tyrosine.
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3-Methylglutaric acid
T4766626-51-7
Methylglutaric acid is a leucine metabolite. A large amount of methylglutaric acid is identified in urine of patients with deficiency of 3-methylglutaconyl coenzyme A hydratase (PMID 6181239 ). Methylglutaric acid is also found to be associated with 3-hyd
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3-Indolepropionic acid
T5297830-96-6
3-Indolepropionic acid (Indolepropionic acid) is shown to be a powerful antioxidant with potential in the treatment for Alzheimer’s disease.
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(E)-3-(4-Methoxyphenyl)acrylic acid
T41095943-89-5
(E)-3-(4-Methoxyphenyl)acrylic acid is a small molecule compound isolated from the rhizome of Etlingera pavieana (Pierre ex Gagnep.) R. M. Sm. It is a novel α-glucosidase inhibitor with hepatoprotective, antiamnesic, and cognitive enhancement activities, and it can be used to lower blood pressure sugar.
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7-10 days
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(R)-3-Hydroxybutanoic acid
T5248625-72-9
3-hydroxybutyric acid is involved in the synthesis and degradation of ketone bodies. Like the other ketone bodies (acetoacetate and acetone), levels of beta-hydroxybutyrate are raised in the blood and urine in ketosis. Beta-hydroxybutyrate is a typical pa
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3-Methylsalicylic acid
T142383-40-9
3-Methylsalicylic acid (o-Cresotic acid) is a long-acting salicylate derivative with antilipidemic properties. Hydroxytoluic acid has been shown to lower plasma free fatty acid and cholesterol levels.
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3-(Methylthio)propionic acid
T5285646-01-5
3-(Methylthio)propionic acid (4-Thiapentanoic acid) is one of the metabolites of methionine (especially of D-methionine). Cultures of Streptomyces lincolnensis accumulated 3-methylthioacrylic acid in amounts directly related to the concentration of methionine in the medium. The first intermediate in the pathway may be the keto acid, which is then oxidatively decarboxylated to 3-methylthiopropionic acid.
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3-Indoleacrylic acid
T677101204-06-4
3-Indoleacrylic acid is a metabolite of tryptophan produced by Peptostreptococcus species. 3-Indoleacrylic acid has a beneficial effect on intestinal epithelial barrier function and mitigates inflammatory responses by immune cells.
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2-Amino-3-(2-chlorophenyl)propanoic acid
T983814091-11-3
2-Amino-3-(2-chlorophenyl)propanoic acid (2-Chloro-DL-Phenylalanine) is a phenylalanine derivative involved in biometabolism.
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7-10 days
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3-Methoxybenzoic acid
T5982586-38-9
3-Methoxybenzoic acid (NSC 27014) is a food additive,and has antibacterial activity.
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3-Furanoic acid
T5277488-93-7
3-Furanoic acid (3-Carboxyfuran) is an organic acid regularly occurring in the urine of healthy individuals. 3-Furanoic acid (3-Carboxyfuran) is also a compound found in honey and honeydew samples.
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5-Methoxyindole-3-acetic acid
T135133471-31-6
5-Methoxyindole-3-acetic acid (5-Methoxyindoleacetic acid) is a metabolite of Melatonin and is isolated from pineal tissue.
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2-chloro-5-(16,18-dioxo-17-azapentacyclo[6.6.5.0~2,7~.0~9,14~.0~15,19~]nonadeca-2,4,6,9,11,13-hexaen-17-yl)benzoic acid
T8833327033-56-7
2-chloro-5-(16,18-dioxo-17-azapentacyclo[6.6.5.0~2,7~.0~9,14~.0~15,19~]nonadeca-2,4,6,9,11,13-hexaen-17-yl)benzoic acid can be used to synthesize a variety of organic compounds.
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2-Methyl-2H-indazole-3-carboxylic acid
Fr2126534252-44-3
2-Methyl-2H-indazole-3-carboxylic acid is a useful organic compound for research related to life sciences. The catalog number is Fr21265 and the CAS number is 34252-44-3.
    7-10 days
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    3-Amino-4-hydroxybenzoic acid
    T47701571-72-8
    3-Amino-4-hydroxybenzoic acid (3-amino-4-hydroxybenzenecarboxylic acid) is a useful research chemical.
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    3-Methyl-2-nitrobenzoic acid
    T93655437-38-7
    3-Methyl-2-nitrobenzoic acid is in agricultural chemicals such asWithPreparation in be used as intermediate.
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    3-Indoleacetic acid sodium
    T50886505-45-9
    3-Indoleacetic acid sodium (Heteroauxin sodium salt) is a naturally occurring plant hormone of the auxin class. It can stimulate cell elongation and division, promoting plant growth and development. However, at high concentrations, it exhibits growth inhibiting effects, including epinasty and prevention of shoot and root growth. This latter effect formed the basis for which synthetic auxins were developed as herbicides and bioregulators in agriculture.
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    3-(3,4-Dimethoxyphenyl)propanoic acid
    T16922107-70-2
    3-(3,4-Dimethoxyphenyl)propanoic acid (3,4-Dimethoxyhydrocinnamic acid) is an orally active short-chain fatty acid (SCFAs) that promotes γ-globin gene expression and erythropoiesis in vivo, making it useful in treating beta hemoglobinopathies and other anemias.
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    Indole-3-carboxylic acid
    T5984771-50-6
    Indole-3-carboxylic acid (3-Indoleformic acid) is a normal urinary indolic tryptophan metabolite .
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    3-Hydroxybutyric acid
    T4947300-85-6
    3-Hydroxybutyric acid (Butanoic acid) (or beta-hydroxybutyrate) is a ketone body. Like the other ketone bodies (acetoacetate and acetone), levels of 3-hydroxybutyrate in blood and urine are raised in ketosis. In humans, 3-hydroxybutyrate is synthesized in the liver from acetyl-CoA and can be used as an energy source by the brain when blood glucose is low. Blood levels of 3-hydroxybutyric acid levels may be monitored in diabetic patients to look for diabetic ketoacidosis. Persistent mild hyperketonemia is a common finding in newborns. Ketone bodies serve as an indispensable source of energy for extrahepatic tissues, especially the brain and lung of developing mammals. Another important function of ketone bodies is to provide acetoacetyl-CoA and acetyl-CoA for the synthesis of cholesterol, fatty acids, and complex lipids. During the early postnatal period, acetoacetate (AcAc) and beta-hydroxybutyrate are preferred over glucose as substrates for synthesis of phospholipids and sphingolipids in accord with requirements for brain growth and myelination. Thus, during the first 2 weeks of postnatal development, when the accumulation of cholesterol and phospholipids accelerates, the proportion of ketone bodies incorporated into these lipids increases. On the other hand, an increased proportion of ketone bodies is utilized for cerebroside synthesis during the period of active myelination. In the lung, AcAc serves better than glucose as a precursor for the synthesis of lung phospholipids. The synthesized lipids, particularly dipalmitoylphosphatidylcholine, are incorporated into surfactant, and thus have a potential role in supplying adequate surfactant lipids to maintain lung function during the early days of life (PMID: 3884391 ). 3-Hydroxybutyric acid is found to be associated with fumarase deficiency and medium-chain acyl-CoA dehydrogenase deficiency, which are inborn errors of metabolism.
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    (R)-3-Hydroxybutanoic acid sodium
    T6700213613-65-5
    (R)-3-Hydroxybutanoic acid sodium ((R)-3-Hydroxybutyric acid) is a chiral precursor that can be used to synthesize biodegradable PHB and its copolyesters. (R)-3-Hydroxybutanoic acid sodium can be used as a nutrient in plants.
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    7-10 days
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    3-Mercaptopropionic acid
    T66905107-96-0
    3-Mercaptopropionic acid (3-Sulfanylpropanoic acid) is an intermediate in the metabolism of organosulfur in the natural environment and is commonly used in nanoparticles.
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    7-10 days
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    3-Hydroxybutyric acid sodium
    T65133150-83-4
    3-Hydroxybutyric acid sodium (β-Hydroxybutyric acid sodium) is a metabolite found in type I diabetic patients that regulates membrane lipids.
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    7-10 days
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    3-Hydroxyisovaleric acid
    T0613625-08-1
    3-Hydroxyisovaleric acid (Beta-Hydroxyisovaleric acid) is an endogenous metabolite excreted in the urine and can serve as an early and sensitive indicator of biotin deficiency.
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    5,6-DIAMINOPYRIDINE-3-CARBOXYLIC ACID METHYL ESTER
    T9829104685-76-9In house
    5,6-DIAMINOPYRIDINE-3-CARBOXYLIC ACID METHYL ESTER is a useful organic compound for research related to life sciences. The catalog number is T9829 and the CAS number is 104685-76-9.
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    3-Hydroxyphenylacetic acid
    T4829621-37-4
    3-Hydroxyphenylacetic acid is a rutin metabolite and an antioxidant. It has a protective biological activity in human. It is a substrate of enzyme 4-hydroxyphenylacetate 3-monooxygenase [EC 1.14.13.3] in the pathway tyrosine metabolism. 3-Hydroxyphenylace
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    3-Bromobenzoic acid
    TN7162585-76-2
    3-Bromobenzoic acid (m-Bromobenzoic acid) is a marine derived natural products found in Tubastraea micranthus.
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    3-Phenylbutyric acid
    T191254593-90-2
    3-Phenylbutyric acid undergoes metabolism through initial oxidation processes involving both its benzene ring and side chain. It serves as an effective agent for the isolation of Rhodococcus rhodochrous PB1 from compost soil.
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    4-6 weeks
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    4-(METHYLAMINO)-3-NITROBENZOIC ACID
    T933741263-74-5
    4-(METHYLAMINO)-3-NITROBENZOIC ACID (4-Methylamino-3-nitrobenzoic acid) is an intermediate that is a yellow solid. It is mainly used in the synthesis of dabigatranate intermediates.
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    3-Methylvaleric Acid
    T19122105-43-1
    3-Methylvaleric Acid is an edible grade flavor present in tobacco.3-Methylvaleric Acid enhances intracellular cAMP accumulation and CRE-luciferase activity in CHO-K1 cells and HEK293 cells.
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    7-10 days
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    3-Bromopyruvic acid
    T58821113-59-3
    3-Bromopyruvic acid (Hexokinase II Inhibitor II, 3-BP) is a hexokinase II inhibitor with Ki of 2.4 mM for glycolysis hexokinase inhibition. It is inhibitor of tumour cell energy metabolism and chemopotentiator of platinum drugs.
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    (S)-3-Hydroxybutanoic acid
    T139796168-83-8
    (S)-3-Hydroxybutanoic acid (L-(+)-3-Hydroxybutyric acid) is a normal human metabolite that has been found elevated in geriatric patients remitting from depression. (S)-3-Hydroxybutanoic acid is synthesized in the liver from acetyl-CoA in humans, and can be used as an energy source by the brain when blood glucose is low.
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    Coumarin-3-carboxylic acid
    TJS0339531-81-7
    The combination of Valproic acid with Coumarin-3-carboxylic acid (3-Carboxycoumarin) suppresses the proliferation and migration of lung cancer cells via EGFR VEGFR2 c-Met-Akt-NF-κB signaling pathways; this combination may have a wide therapeutic and or adjuvant therapeutic application in the treatment of lung cancer.
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    3-Indoleacetic acid
    T2O279187-51-4
    3-Indoleacetic acid (indolylacetic acid) (IAA) is the most common plant hormone of the auxin class and it regulates various aspects of plant growth and development.
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    3-(3-Methoxyphenyl)propionic acid
    T527210516-71-9
    3-(3-Methoxyphenyl)propionic acid (3-Methoxyhydrocinnamic acid) is a naturally occurring human metabolite, It is an organic acid and excreted in human urine.
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    3-Hydroxybenzoic acid
    T484099-06-9
    Produced in the gut microflora as one of the three main metabolites formed from the catechin diet. Its use in the production of glycol benzoates for the application of plasticizer in adhesive formulations is increasing. It is also used in the manufacture
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    5-HYDROXYINDOLE-3-ACETIC ACID
    T474454-16-0
    5-Hydroxyindole-3-acetic acid (5-HIAA) is a breakdown product of serotonin that is excreted in the urine. Serotonin and 5HIAA are produced in excess amounts by carcinoid tumors, and levels of these substances may be measured in the urine to test for carcinoid tumors (NCI).
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