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Results for "

(s)2amino3(4hydroxy3,5diiodophenyl)propanoic acid dihydrate

" in TargetMol Product Catalog
  • Inhibitors & Agonists
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(S)-2-Amino-3-(4-hydroxy-3,5-diiodophenyl)propanoic acid dihydrate
T276018835-59-1
(S)-2-Amino-3-(4-hydroxy-3,5-diiodophenyl)propanoic acid dihydrate (jodgorgon) results from the iodination of MONOIODOTYROSINE. During thyroid hormone biosynthesis, diiodotyrosine residues couple with either monoiodotyrosine or diiodotyrosine residues to form T3 or T4 thyroid hormones.
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2',3'-cGAMP sodium
T10065L2734858-36-5In house
2',3'-cGAMP sodium (2'-3'-cyclic GMP-AMP sodium) is a second messenger in cellular innate immunity, catalyzed by cGAMP synthase (cGAS) under DNA binding conditions. It binds to STING to form a dimer, inducing the production and expression of interferon-β and other cytokines.
  • $298
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2-Hydroxy-1-methoxyanthraquinone
TN12096170-06-5
2-Hydroxy-1-methoxyanthraquinone (Alizarin 1-methyl ether) is a natural product isolated from Morinda lucida Benth. (Rubiaceae) with antibacterial activity.
  • $113
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3,5-Dibromo-4-methoxybenzoic acid
TN72234073-35-2
3,5-Dibromo-4-methoxybenzoic acid was isolated from the Malagasy sponge Amphimedon sp.
  • $50
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3-Hydroxy-4-methoxyacetophenone
T101126100-74-9
3-Hydroxy-4-methoxyacetophenone (Acetoisovanillone) is an active P. spinosa extract. It possesses anti-inflammatory activity and prevented injuries due to administration of acetic acid in the colon.
  • $31
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4-Methylcinnamic acid
PDK01011866-39-3
4-Methylcinnamic acid is a cinnamic acid analog that can be used as an intervention catalyst to overcome antifungal tolerance. 4-Methylcinnamic acid can improve the potency of cell wall-disrupting agents.
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2-Hydroxycinnamic acid
T7991614-60-8
2-Hydroxycinnamic acid is a natural product isolated from Angraecum fragrans, has photooxidant activity.
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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.
  • $38
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2-Hydroxy-6-methoxybenzoic acid
T59173147-64-6
2-Hydroxy-6-methoxybenzoic acid (6-Methoxysalicylic acid) may be employed as internal standard for the determination of acetylsalicylic acid (aspirin, ASA) and its major metabolite, salicylic acid (SA),and exhibits significant analgesic effects
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(E)-Oct-2-enoic acid
T52611871-67-6
(E)-Oct-2-enoic acid (2-Octenoate) is an organic acid produced by hepatic microsomal oxidation of aliphatic aldehydes and is a metabolite naturally present in urine and plasma.
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2-Methoxycinnamic acid
T2S09736099-03-2
1. 2-Methoxycinnamic acid (o-Methoxycinnamic acid) can enhance inhibition of tyrosinase activity.
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2-METHYLVALERIC ACID
T568597-61-0
2-METHYLVALERIC ACID is a natural product.
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2-Methyltetrahydrofuran-3-one
T80503188-00-9
2-Methyltetrahydrofuran-3-one, also known as fema 3373 or tetrahydro-2-methyl-3-furanone, belongs to the class of organic compounds known as furanones.
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(S)-Leucic acid
T529413748-90-8
(S)-Leucic acid is an amino acid metabolite used as a muscle builder.
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2-Hydroxycaprylic acid
T7481617-73-2
2-Hydroxyoctanoic acid is a medium-chain acyl-coenzyme A synthetase inhibitor (Ki:500 μM). 3-Hydroxymandelic acid is a protein hydrolysis product of larger proteins.
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1-Hydroxy-2-naphthoic acid
T478986-48-6
1-Hydroxy-2-naphthoic acid (ALPHA-HYDROXYNAPHTHOIC ACID) is a Metabolite from phenanthrene degradation.
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2'-Hydroxy-4'-methylacetophenone
Fr142986921-64-8
2'-Hydroxy-4'-methylacetophenone, a phenolic compound isolated from Angelicae koreana roots, possesses acaricidal properties and can be used in the preparation of 4'-methyl-2'-[(p-tolylsulfonyl)oxy]acetophenone.
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ANTHRAQUINONE-2-CARBOXYLIC ACID
T7035117-78-2
Anthraquinone-2-carboxylic acid acts as a potent anti-inflammatory and antinociceptive component in vivo, thus contributing to the immune regulatory role of fruits and herbs.
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2-(4-Methoxyphenyl)acetic acid
T5590104-01-8
2-(4-Methoxyphenyl)acetic acid, a plasma metabolite, is highly sensitive and specific and can be used as a bioindicator to differentiate non-small cell carcinoma patients from healthy controls.
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2-Amino-2-dichlorobenzophenone
T79182958-36-3
2-Amino-2-dichlorobenzophenone is an aromatic natural compound that has been used to study the effects of various compounds on cell metabolism, protein synthesis and enzyme activity. It has also been used in the synthesis of drugs, such as antitumor drugs and anti-inflammatory agents.
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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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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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2-Hydroxyisobutyric acid
T4787594-61-6
2-Hydroxyisobutyric acid (α-Hydroxyisobutyric acid) is a metabolite of methyl tert-butyl ether (MTBE). MTBE may be obtained through environmental exposure. MTBE is rapidly eliminated from the body, mainly through expired air as the unchanged compound. MTBE is to some extent metabolised to t-butyl alcohol (TBA) and formaldehyde and oxidised to 2-methyl-1,2-propanediol and a-hydroxy isobuturic acid. 2-Hydroxyisobutyric acid has been used as an arial bactericide.
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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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2-Furoic acid
T554488-14-2
2-Furoic acid (Furan-2-carboxylic acid) reduces serum cholesterol and triglyceride levels and exhibits anti-lipidemic effects.
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cis-4-Hydroxy-L-proline
T37512618-27-9
cis-L-Hydroxyproline inhibits the synthesis and extracellular deposition of collagen. The growth inhibition of pancreatic cancer cells induced by the Hyp isomer could be due to endoplasmatic reticulum stress.
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Pyrrole-2-carboxylic acid
T4716634-97-9
Pyrrole-2-carboxylic acid (Minaline) was first identified as a degradation product of sialic acids, then as a derivative of the oxidation of the D-hydroxyproline isomers by mammalian D-amino acid oxidase. The latter relationship results from the lability of the direct oxidation product, A'-pyrroline-4-hydroxy-2-carboxylic acid, which loses water spontaneously to form the pyrrole. A similar reaction is catalyzed by the more specific allohydroxy-D-proline oxidase of Pseudomonas. In whole animal observations, pyrrole-2-carboxylate (PCA) ' was identified in rat or human urine after administration of the D-isomers of hydroxyproline, a finding ascribable to the action of D-amino acid oxidase. Urinary excretion of N-(pyrrole-2-carboxyl) glycine has been reported in a 5-year-old affected with type II hyperprolinemia; The child has mild developmental delay, recurrent seizures of the grand mal type and EEG alterations.
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4-Hydroxy-5-methyl-3-furanone
TN713319322-27-1
4-Hydroxy-5-methyl-3-furanone (4-Hydroxy-5-methylfuran-3(2H)-one) is a natural product isolated from Eurycotis floridana.
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Methyl 2-(1H-indol-3-yl)acetate
T47141912-33-0
Methyl 2-(1H-indol-3-yl)acetate (Methyl indole-3-acetate) is found in apple and isolated from immature seeds of beach pea (Lathyrus maritimus), Vicia amurensis, wild soybean (Glycine soja), lobiya (Vigna catiang var. sinensis), and hyacinth bean (Dolichos lablab).
  • $29
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4-aminobenzoic acid
T1311150-13-0
4-aminobenzoic acid is an organic acid with UV-absorbing and antifibrotic properties. When exposed to light, 4-aminobenzoic acid absorbs UV light and releases excess energy through a photochemical reaction, which may cause DNA damage.4-aminobenzoic acid also increases oxygen uptake at the tissue level and may enhance monoamine oxidase (MAO) activity to promote serotonin degradation, which in excess may lead to fibrotic Changes.
  • $45
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3-Aminopropionitrile fumarate (2:1)
T27692079-89-2
3-Aminopropionitrile fumarate (2:1) [β-Aminopropionitrile fumarate] is an organic compound and antirheumatic agent utilized in veterinary medicine.
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7-Amino-4-(trifluoromethyl)coumarin
TJS034153518-15-3
7-Amino-4-(trifluoromethyl)coumarin (Coumarin 151) is a 5-Hydroxytryptamine Receptor Subtype 1E (HTR1E) antagonist, a Galanin Receptor 2 (GALR2) antagonist, and a hydroxysteroid (17-beta) dehydrogenase 4 (HSD17B4) inhibitor with an activity value of 21 µM.
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2-Hydroxystearic acid
T35684629-22-1
2-Hydroxystearic acid is a hydroxy fatty acid found in humans and U. armoricana. It reduces the growth of Ehrlich ascites tumor (EAT) cells in vitro when used at a concentration of 100 μM.
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2-Hydroxy-4-methoxybenzoic acid
T2A24282237-36-7
2-Hydroxy-4-methoxybenzoic acid (2-Hydroxy-p-anisic Acid) is a predicted metabolite generated by BioTransformer1 that is produced by the metabolism of 3-(2-hydroxy-4-methoxyphenyl)propanoic acid. It is generated by unspecified-gutmicro enzyme via a beta-oxidation-of-carbxoylic-acid reaction. This beta-oxidation-of-carbxoylic-acid occurs in human gut microbiota.
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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.
  • $42
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16-hydroxy Hexadecanoic Acid
T37994506-13-8
16-hydroxy Hexadecanoic Acid (Juniperic acid) is a compound isolated from the leaves and stems of Arabidopsis thaliana and can be used to prevent, alleviate, or treat metabolic diseases.
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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
  • $39
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2-Phenylbutanoic acid
T063190-27-7
2-Phenylbutanoic acid (2-Phenylbutyric acid) is used as an industrial intermediate.
  • $30
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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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Bis(2-methyl-3-furyl)disulfide
T805128588-75-2
Itaconic acid is a precursor for the synthesis of polymers, chemicals, and fuels, and has anti-inflammatory activity.Itaconic acid can be synthesized by fungi. It is also a macrophage-specific metabolite. It mediates crosstalk between macrophage metabolism and peritoneal tumors.
  • $41
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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.
  • $29
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L-Azetidine-2-carboxylic acid
TN69282133-34-8
L-Azetidine-2-carboxylic acid ((2S)-azetidine-2-carboxylic acid) is a toxic proline analogue produced by members of the Liliaceae and Agavaciae families.
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Oxalic acid dihydrate
T50646153-56-6
Oxalic acid dihydrate (Ethanedioic acid dihydrate) is a strong dicarboxylic acid occurring in many plants and vegetables. It is produced in the body by metabolism of glyoxylic acid or ascorbic acid. It is not metabolized but excreted in the urine. It is used as an analytical reagent and general reducing agent.
  • $39
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2-Ethylhexyl trans-4-methoxycinnamate
TN666083834-59-7
2-Ethylhexyl trans-4-methoxycinnamate is a sunscreen agent.
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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-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.
  • $41
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2-Hydroxy-2-methylbutanoic acid
T55503739-30-8
2-Hydroxy-2-methylbutyric acid is an unusual metabolite found in the urine of patients with 2-hydroxyglutaric aciduria and maple syrup urine disease.
  • $42
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(S)-Malic acid
T483897-67-6
(S)-Malic acid ((S)-2-Hydroxysuccinic acid) is a tart-tasting organic dicarboxylic acid found in many sour foods, such as apples, and contributes to the sourness of green apples and tartness of wine, although its concentration decreases with fruit ripeness (wikipedia). In its ionized form, it is called malate, an intermediate in the TCA cycle alongside fumarate, and can be formed from pyruvate through anaplerotic reactions. In humans, malic acid is derived from food sources and synthesized in the body via the citric acid cycle in mitochondria, playing a crucial role in energy production under both aerobic and anaerobic conditions. Under aerobic conditions, malate is oxidized to oxaloacetate, providing reducing equivalents via the malate-aspartate redox shuttle, while during anaerobic conditions, its simultaneous reduction to succinate and oxidation to oxaloacetate removes excess reducing equivalents, reversing hypoxia’s inhibition of glycolysis and energy production. Studies on rats have shown that tissue malate depletes following exhaustive physical activity, suggesting that malic acid deficiency may cause physical exhaustion. Administering malic acid to rats has been shown to elevate mitochondrial malate, increasing mitochondrial respiration and energy production.
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2-Hydroxyhexanoic acid
T52246064-63-7
2-Hydroxyhexanoic acid (2-Hydroxycaproic acid) is a branched-chain alpha-keto acid that has been reported in normal human blood and in normal amniotic fluid. It has been found that 2-Hydroxyhexanoic acid is the most significant metabolite found in the CSF of patients infected with Nocardia.
  • $37
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2-Methoxy-4-vinylphenol
T81977786-61-0
2-Methoxy-4-vinylphenol (2-Methoxy-4-vinylphenol) is a natural product.
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